The Future of Interaction: NLink’s Multiverse and Spatial Technology

1.Introduction

1.1 Background

1.1.1 The Singularity Approaches

With the widespread adoption and application of artificial intelligence (AI), the pace of technological advancement has accelerated significantly, giving rise to new singularities in multiple frontier technological fields. AI not only drives its own rapid evolution but also facilitates the integration and breakthroughs of technologies such as Web3 and spatial computing. The synergistic development of these technologies is forming a new major singularity, profoundly reshaping societal structures and human lifestyles.

1.1.2 The Full-Blown AI Revolution

The comprehensive explosion of AI technology has brought about unprecedented social transformations. On one hand, AI’s applications across industries have significantly boosted productivity; on the other hand, it has also sparked numerous social challenges, such as changes in employment structures, privacy concerns, and ethical dilemmas. As general artificial intelligence (AGI) gradually becomes a reality, the visions and concerns about coexistence between humans and intelligent machines are increasingly capturing public attention, driving widespread discussions about the future trajectory of AI development.

1.1.3 Web3 Enters the Phase of Mass Adoption, NFTs Face a “Winter”

After an initial surge of enthusiasm, Web3 technology has gradually entered the phase of mass adoption, striving to build a more decentralized, transparent, and user-sovereign internet ecosystem. However, as the market matures, NFT (non-fungible token) assets have undergone price corrections and market cooling, entering what is referred to as a “winter.” Against this backdrop, achieving consumerization of Web3 and practical applications for NFT assets has become a critical challenge that demands urgent solutions.

1.1.4 The Explosion of Wearable Smart Hardware and the Rise of the Sensor Layer

In recent years, wearable smart hardware has seen rapid advancements, particularly with the popularization of AI and augmented reality (AR) glasses, elevating the sensor layer as a core component of digital interaction. These smart devices not only enhance user experiences but also provide essential hardware support for the deeper integration of spatial computing and virtual reality. The ability to enable direct interaction at the sensor layer has become a key driver for further advancements in smart hardware technology.

1.1.5 Silicon Valley’s Focus on Philosophers, Poets, and Artists—Recording the “Cambrian Explosion” of Digital Civilization

Amid rapid technological progress, Silicon Valley has increasingly prioritized the inclusion of interdisciplinary talents, particularly philosophers, poets, and artists. This trend reflects a deepening integration of technology and the humanities, aiming to provide diverse methods of documentation and expression for the “Cambrian explosion” of digital civilization. Through such cross-disciplinary collaboration, digital civilization is not only achieving breakthroughs in the realm of technology but also fostering holistic development in culture and the arts.

1.2 Industry Challenges

1.2.1 AI Agents Remain in the Process of Digital Conceptualization and Virtual Representation

Currently, AI Agent technology largely remains at the level of digital ontology and conceptualization, lacking substantial application scenarios and concrete development. To drive widespread adoption and foster innovation, AI Agents require more diversified points of entry to enhance their integration into various industries.

1.2.2 One Year After VisionPro’s Launch: A Lack of Applications and Content

Despite technological breakthroughs achieved by devices such as VisionPro, the ecosystem still faces a significant shortage of applications and content as its one-year anniversary approaches. This scarcity limits market adoption and user experience, highlighting an urgent need for a rich content ecosystem and practical application scenarios to enhance the device’s value and appeal.

1.2.3 Disconnection Between Virtual and Physical Realities

A significant gap exists between the virtual and physical worlds. Whether viewing digital versions of physical works on screens or examining physical reproductions of digital content, these experiences remain superficial. The deeper issue lies in the lack of seamless interaction and alignment between virtual and physical content, such as advertisements, books, and smartphone displays, which constrains true integration of the two realms.

1.2.4 Inefficient Utilization of NFT Collectibles

Currently, around 90% of NFT collectibles remain idle in wallets, lacking effective cultural transmission or practical applications. While ticketing and utility-based NFTs have seen some development, the overall market still suffers from inefficiencies in leveraging the cultural and legacy potential of these assets.

1.2.5 Unlimited Supply of Digital Assets

With the widespread adoption of NFTs and AI-generated content, the supply of digital assets is growing at an exponential rate. This abundance has introduced a critical challenge: how to define and filter valuable assets in this new era of productivity, and how to establish innovative allocation models to address the oversaturation of digital assets.

1.3 Digital Nativism

1.3.1 Full Lifecycle Digital Uniformity

Digital nativism emphasizes maintaining digital uniformity throughout the entire lifecycle, from creation to final application. NLink requires a digitally native, super 4D canvas that enables panoramic digital creation and presentation through meticulous code design. This uniformity not only enhances the synergy and flexibility of digital products but also lays the foundation for deeply aligning technology with user needs.

1.3.2 Efficiency in Digital Presentation

Traditional digital art exhibitions and content distribution often involve high costs, lengthy timelines, and complex control mechanisms, resulting in inefficiencies. NLink addresses these challenges by optimizing technological processes, simplifying content distribution workflows, and improving the efficiency of digital content presentation from the perspectives of cost, time, and control. This enhances user interaction and engagement, providing a more seamless experience.

1.4 System Deficiencies

1.4.1 Reselection, Optimization, and Valuation of Attention

In the era of information overload, user attention has become a scarce resource. Existing systems struggle to effectively allocate and optimize attention, resulting in inefficiencies. NLink addresses this by employing intelligent algorithms and personalized recommendations to reselect and optimize attention distribution. This enhances the efficiency and quality of information acquisition, ultimately realizing the value of attention as a resource.

1.4.2 Human Adaptation and Balance in a Silicon-Based Civilization

As silicon-based civilization advances rapidly, humans face challenges in adapting to new systems within an encoded world. Finding a balance between humans and technology in this tech-driven environment is an urgent issue. NLink aims to assist users in navigating and thriving within these new systems through human-centric design and intelligent interactions, ensuring that humanity maintains its agency in the digital world.

1.5 On the Eve of the Spatial Computing Revolution

Spatial computing, as a significant frontier in the spatial technology sector, encompasses multidimensional data processing and applications, emerging as a key industry focus. Incorporating technologies such as spatial intelligence and extended reality/mixed reality (XR/MR), spatial computing is poised to become the dominant systems wave over the next 20 years. Positioned at the forefront of this revolution, NLink leverages the latest technological advancements to drive the deep integration of virtual and physical realities, creating a new digital ecosystem and shaping the future development of spatial computing.

2. A New Dimension of Data

With the advancement of technology, the dimensions and complexity of data continue to expand. NLink is committed to breaking through the limitations of traditional data dimensions, pioneering a new era of multidimensional data. This chapter explores NLink’s innovations and applications in redefining data dimensions.

2.1 Beyond Latitude and Longitude

Traditional data localization primarily relies on geographic coordinates (latitude and longitude) and time dimensions. However, NLink recognizes that these two layers alone are insufficient to meet the demands of modern applications. To address this, two new data dimensions are introduced:

2.1.1 Incorporating Altitude and Temporal Layers

Building upon the existing latitude, longitude, and time dimensions, NLink adds an altitude layer to provide more precise three-dimensional spatial positioning. Additionally, the inclusion of a temporal layer ensures that data is not only spatially anchored but also dynamically evolves over time. This expansion addresses current hardware limitations in processing altitude and temporal data, offering a richer foundation for spatial computing and multidimensional data analysis.

2.1.2 Deriving Additional Dimensions from Multisource Data

NLink goes beyond physical coordinates by integrating multiple data sources, such as emotion, behavior, and social relationships, to derive additional data dimensions. These new dimensions offer a more comprehensive reflection of users’ diverse needs and behavioral patterns, enhancing the depth and breadth of data analysis and providing more accurate support for intelligent decision-making.

2.2 Temporal Eventfulness

Temporal eventfulness is more than just a timestamp; it reflects the dynamic evolution of data along the time dimension. NLink leverages 4D spatial data for digital assets to create a “4D Rewind” feature akin to the time museum depicted in Ready Player One.

2.2.1 Rewind.ai and the 4D Time Museum

Rewind.ai technology enables users to record and revisit their behaviors and events, forming a 4D temporal-spatial archive. NLink integrates this technology to build a spatial version of Rewind, offering comprehensive recording and playback of digital assets across the time dimension. This enhances data traceability and transparency while providing users with an immersive historical review experience, akin to the time museum in Ready Player One.

2.3 Attention Transfer Recording

In the physical world, there is currently no comprehensive system for recording users’ attention when receiving information. NLink establishes an attention transfer recording system by tracking and analyzing how human attention is distributed and shifted.

2.3.1 Recording Attention Transfer Behaviors

Through intelligent algorithms, NLink monitors and records users’ attention allocation and transfer behaviors in the physical world. These records not only reveal users’ interests and preferences but also correlate with financial liquidity, unlocking greater data value. By deeply analyzing attention transfer, NLink optimizes content recommendations and advertising strategies, enhancing user experiences and platform profitability.

2.4 Enhancing the Technical Carrier Significance of NFTs

NFTs (non-fungible tokens) are not merely representatives of digital art but serve as a fusion of technology, finance, and culture. NLink strengthens the technical attributes of NFTs to enhance their value in digital asset management and transactions.

2.4.1 The Integration of Technology, Finance, and Culture in NFTs

NFTs inherently combine elements of technology, finance, and culture. For instance, fully on-chain art and NFTs embedded with transfer metadata are exemplary technical NFTs. NLink’s NFT solutions offer an optimal choice for managing and trading non-standard digital assets, ensuring both security and liquidity.

2.4.2 Innovative Applications in Relational Layers

At the relational level, NLink integrates concepts from projects like Pak’s Merge, Gas Station’s data API stored within NFTs, and John Gerrard’s National Flag project. These applications demonstrate how algorithm-defined data structures can convey complex concepts and relationships through NFTs. For example, the National Flag NFT links geographic locations of countries with specific time zones’ sunrise and sunset scenes, creating an innovative form of data interaction that enhances the cultural and technical significance of NFTs.

2.4.3 Hosting and Quantifying High-Quality Content

Within spatial scenarios, NLink uses multidimensional token quantification to redefine and revalue high-quality content. This quantification not only elevates the standards for content valuation but also establishes new benchmarks for defining “good content,” ensuring users gain access to superior digital experiences.

2.4.4 Optimizing Storage Structures and Applying IPFS

NLink leverages IPFS to optimize storage structures, avoiding reliance on traditional bulky data recording methods. Instead, it reproduces identical content within spatial structures, achieving efficient storage and access. Despite IPFS’s potential for probabilistic data loss, NLink ensures data integrity through fully on-chain code storage, providing a reliable solution for long-term storage.

2.5 A Revolution in Attention Economy Driven by Visual Zones

People spend the majority of their time relying on mobile devices such as smartphones, leading to highly fragmented and inefficient attention. NLink redefines the attention economy by reorganizing visual zones and addressing dynamic needs.

2.5.1 Transition from Smartphones to Wearable Devices

In the future, users’ dynamic needs will gradually integrate into new spatial systems, reducing dependence on smartphones and similar devices. Through the deployment of wearable devices and seamless integration with asset data, NLink enables more efficient attention allocation and retrieval. This transition not only improves the efficiency of user attention but also increases the unit value of attention, driving the transformation of new systems.

2.5.2 Optimizing Attention Efficiency and Unit Value

By deploying optimized asset data in wearable devices, NLink establishes a high-efficiency attention management system. Utilizing intelligent algorithms and multidimensional data analysis, NLink precisely allocates and captures user attention resources, enhancing the efficiency and value of information acquisition. This innovation not only improves user experience but also generates greater economic benefits for the platform.

3. Polarization and Diversification

With continuous technological advancement and rapid societal evolution, the liquidity of assets and culture is exhibiting new trends of polarization and diversification. NLink is dedicated to fostering deep integration between cultural and asset liquidity through an innovative digital ecosystem, creating novel quantified liquidity mechanisms to meet diverse societal demands. This chapter delves into NLink’s strategies and applications in addressing polarization and diversification.

3.1 Integration of Cultural and Asset Liquidity

3.1.1 Quantification of Cultural and Asset Liquidity

Cultural and asset liquidity are becoming increasingly intertwined, giving rise to new quantified liquidity mechanisms. By embedding cultural elements into asset liquidity, NLink achieves parity between cultural value and economic value. This integration not only enhances the market value of cultural assets but also enriches users’ cultural experiences, promoting the bidirectional development of culture and economy.

3.1.2 Quantitative Applications of Attention Weight

In the NLink ecosystem, attention weight serves as a key metric for evaluating cultural and asset liquidity. By quantifying users’ attention allocation, NLink can precisely match cultural content with asset demands, optimizing resource distribution and improving overall platform efficiency and user satisfaction.

3.2 Polarization of Non-Standard Assets

3.2.1 AI-Generated Infinite Assets and Everyday Content Consumption

Advancements in AI technology have made it possible to generate an infinite supply of non-standard assets, primarily catering to the everyday consumption of effective content. By leveraging AI-generated content, NLink provides a diverse range of digital products to meet users’ multifaceted needs in entertainment, education, and social interactions, driving the popularization of content consumption.

3.2.2 Scarcity of High-Quality Innovation and Historically Valuable Assets

At the same time, NLink is committed to recording and managing high-quality innovations and assets with historical value. These assets are stored on the most scarce NFT chains, ensuring their uniqueness and immutability. This approach achieves a polarized distribution of assets, simultaneously addressing the demand for mass content consumption while preserving high-value historical assets, thus creating a new model of allocation.

3.3 Pathways for Fully On-Chain Assets

3.3.1 Seamless Cross-Chain Asset Display and Interaction

Currently, assets are often constrained by chain-specific silos. For example, Opensea cannot display assets from the Solana chain, and interoperability between consortium chains and public chains is lacking. This isolation limits the visualization and free exchange of information. NLink provides pathways for fully on-chain asset applications, breaking down barriers between chains to ensure that assets from all chains can be displayed and interacted with on a unified platform. This ensures users’ rights to display their assets are not restricted by chain limitations.

3.3.2 Unified Management and Display of Multi-Chain Assets

NLink has built a unified asset management and display platform that supports seamless integration of multi-chain assets. Regardless of the chain an asset originates from, users can conveniently manage, display, and trade assets on the NLink platform, significantly enhancing asset liquidity and accessibility.

3.4 Sensory Switching Across Multiverses

3.4.1 Multiple Digital Assets Displayed Within a Single Physical Scene

In a given physical scene, NLink enables the simultaneous presentation of multiple digital assets, tightly coupled with digital algorithmic relationships. This allows a single physical space to host digital assets from multiple metaverses. Users can simply switch between these metaverses within the NLink ecosystem, experiencing different sensory dimensions seamlessly.

3.4.2 Optimizing Sensory Experiences Across Multiverses

Through NLink’s multiverse switching functionality, each metaverse is defined by its unique foundational sensory experience composed of distinct digital visuals and interactions. Users can freely switch between different metaverses, enjoying diverse visual and interactive experiences, thereby enhancing immersion and overall user satisfaction.

3.5 Recording Asset Nodes Across Multiverses

3.5.1 The Fundamental Advantages of Data Tracking and Recording

NLink ensures precise tracking and recording of every digital asset’s presence and behavior across multiverses. This tracking extends beyond asset displays and interactions in various metaverses to include users’ attention distribution and behavioral trajectories. Similar to flight-tracking applications, NLink records user activities within different virtual environments, providing a robust data foundation for dynamic asset management and value enhancement.

3.5.2 Asset Applications and Value Expansion in Multiverses

NLink enables digital assets to appear and transition dynamically across multiple metaverses and gaming environments. By associating assets with user attention, NLink’s data tracking ensures their fluidity and value across diverse application scenarios. For instance, assets can seamlessly move between platforms such as Minecraft, Voxel, and virtual reality environments, with their presence at different locations and times meticulously recorded. This not only increases asset usability but also supports financial applications such as leasing and lending, extending their practical and economic value.

3.5.3 Innovative Applications in Leasing and Lending

With NLink’s asset node recording capabilities, users can employ their digital assets for leasing and lending activities. Ownership and usage rights of assets can be flexibly transferred across multiple metaverses to meet the needs of various users and scenarios. Additionally, the historical records and dynamic data of assets provide a reliable credit foundation for lending activities, enhancing the security and credibility of financial services.

3.6 Unified Demand Ecosystem

3.6.1 Unified Satisfaction of Diverse Needs

Although non-standard assets exhibit polarized distribution, NLink ensures that users with varying needs can find suitable digital assets and applications through a unified demand ecosystem. This unification not only fosters overall synergy within the ecosystem but also enhances user engagement and platform activity.

3.6.2 Demand-Driven Ecosystem Design

NLink’s ecosystem design is driven by user needs, integrating diverse cultural and asset flows to build an inclusive and fully functional digital platform. By addressing the varied requirements of society, NLink achieves diversified development within the ecosystem while maintaining overall unity and coherence, ensuring the platform’s sustainable growth.

4. What We Need

In an era of rapidly evolving technology, NLink recognizes the importance of establishing a truly spatial computing-based middleware ecosystem. This ecosystem serves not only as the foundation for spatial computing infrastructure but also as a navigation platform for integrating cutting-edge technologies such as artificial intelligence (AI) and Web3 interfaces. NLink’s goal is to create a fully digital-native environment that drives the comprehensive application and development of spatial computing.

4.1 Building a Middleware Ecosystem for Spatial Computing

4.1.1 The Strategic Significance of Spatial Computing

As Apple CEO Tim Cook has stated, spatial computing will be a dominant industry trend and system over the next 20 years. Spatial computing not only transforms how people interact with the digital world but also reshapes the foundational infrastructure of multiple industries. NLink aims to lead this transformation by building a middleware ecosystem that connects and optimizes the applications and development of cutting-edge technologies such as AI and Web3.

4.1.2 Constructing a Digital-Native Environment

NLink’s ecosystem is designed to create a fully digital-native environment, where every stage from design to implementation is centered on digital technologies. By integrating AI and Web3 interfaces, NLink provides a unified platform that enables seamless collaboration among various technologies, addressing evolving user needs and technological trends. This environment not only enhances technological synergy and flexibility but also delivers a smoother and more efficient digital experience for users.

4.2 Aligning Technology Stack with User Habits

4.2.1 Keeping the Technology Stack Up to Date

With rapid technological advancements, NLink must continuously update and optimize its technology stack to adapt to emerging technologies and user demands. By adopting first-principles thinking, NLink regularly refines and enhances its technological architecture, ensuring the platform remains at the cutting edge. This ongoing iteration and innovation enable NLink to flexibly address future technological challenges while maintaining a competitive advantage.

4.2.2 Integrating User Habits with Emerging Ideas

User habits and emerging concepts are key drivers of technology adoption. NLink is committed to understanding and integrating user behavior patterns and needs through human-centric design and intelligent interactions, enhancing user experience. At the same time, NLink recognizes the influential role of emerging concept communities, steering the platform toward greater openness, inclusivity, and diversity to meet the diverse needs of different user groups.

4.3 Integration of New Hardware Matrix and IoT

4.3.1 Building the New Hardware Matrix

In the era of spatial computing, the new hardware matrix and the Internet of Things (IoT) form a foundational infrastructure. Hardware devices, such as wearable equipment and sensors, serve as the critical layer for human-data interaction, playing a vital role in data collection and exchange. By integrating these new hardware components, NLink establishes an efficient and reliable data transfer layer to support the various applications within the spatial computing ecosystem.

4.3.2 IoT Applications in Spatial Systems

IoT devices in spatial systems not only facilitate data collection but also enable deep interaction between humans and machines. NLink’s public spatial computing ecosystem ensures that IoT devices work collaboratively and efficiently, providing stable data support and interaction experiences. With the increasing adoption of wearable hardware and cyborg culture, NLink will drive the transformation of user behavior, making everyday data interactions more natural and efficient.

4.4 Enhancing and Redistributing Attention Efficiency

4.4.1 Transition from Smartphones to Wearable Devices

In the past, a significant portion of users’ attention was dominated by smartphones and other mobile devices, leading to fragmented focus and inefficiency. NLink promotes the widespread adoption of wearable devices, enabling users’ attention to reintegrate into a more efficient spatial system. Wearable devices not only enhance the convenience of data interaction but also optimize attention allocation, allowing users to concentrate more effectively on important tasks in their daily lives and work.

4.4.2 Redistributing Attention Acquisition Mechanisms

Within the new spatial system, NLink leverages intelligent algorithms and multidimensional data analysis to optimize users’ attention acquisition mechanisms. Attention is no longer solely reliant on smartphones but is instead distributed through wearable devices and spatial computing systems, achieving more efficient and precise allocation. This redistribution mechanism not only improves the efficiency of information acquisition but also increases the unit value of attention, providing users with a superior digital experience.

4.5 Building a Public Spatial Computing Ecosystem

4.5.1 Openness and Collaboration in Public Spaces

NLink’s public spatial computing ecosystem serves as an open platform that fosters communication and collaboration between users and developers. By offering a wealth of development tools and resources, NLink encourages innovation and diversified application development, driving the widespread adoption and continuous advancement of spatial computing technology.

4.5.2 Supporting Behavioral Changes Across Multiple Entities

With the increasing prevalence of wearable hardware and cyborg culture, the behavioral habits of humans and machines in daily life will undergo significant changes. NLink’s ecosystem supports these shifts in behavioral patterns, ensuring the platform can adapt to new interaction models and use cases. Whether for individual users or robotic entities, NLink provides flexible and efficient solutions to meet the needs of various participants.

5. Introduction to NLink

5.1 Name Interpretation

The “n” in NLink carries multiple layers of meaning:
Node: Symbolizing the connection of all nodes in the network, emphasizing the importance and uniqueness of each node within the system.

Non-Fungible: Highlighting the individuality of every entity and soul in the universe, underscoring the existential significance of uniqueness.

Algebraic Symbol for Any: In mathematics, “n” represents any number, symbolizing NLink’s boundless possibilities and flexibility.

Neural: Reflecting the interconnected structure of neural networks, showcasing the high degree of interconnectivity and collaboration between nodes within the NLink ecosystem.

5.2 Vision

NLink’s vision is:
“To lead the transition to the multiverse by unleashing creativity in spatial computing.”

We are dedicated to unlocking collective creativity to rapidly and efficiently enable seamless multiverse traversal. This means NLink is not just a technological platform but an ecosystem that facilitates global users in co-creating and exploring the multiverse. By integrating cutting-edge technologies such as AI, Web3, and spatial computing, NLink provides a seamless bridge connecting virtual and physical realities, as well as different metaverses.

Our goal is to break down technological barriers, empower every user to create and realize their dreams, and accelerate the popularization and development of the multiverse. Through innovation and collaboration, NLink is shaping a future where multiverse exploration and experiences become more accessible and efficient for everyone.

5.3 Architecture

NLink’s architecture is built on a combination of distributed and centralized systems, employing modular and composable design principles to ensure flexibility and scalability. The specific architecture includes:

Data Layer: Responsible for data collection, storage, and processing, utilizing distributed technologies to ensure data security and scalability.

Application Layer: The core of NLink, providing a variety of intelligent applications and services, enabling users to create and manage data autonomously on the platform.

User Layer: Through a user-friendly interface, users interact with the system, build and establish various supply-demand relationships within the application layer, and actively participate in ecosystem activities.

NLink’s architecture emphasizes modularity, allowing each module to be developed and upgraded independently. Its composable nature enables flexible combinations of modules based on specific needs, catering to diverse application scenarios. NLink is not merely an application layer but an open ecosystem platform that encourages users and developers to create and manage data autonomously, driving diversified ecosystem development.

5.4 Path to Realizing the Vision

To achieve its vision, NLink will adopt the following strategies:

1. Technological Integration and Innovation: Continuously explore and integrate cutting-edge technologies such as AI, Web3, and spatial computing to ensure the platform remains at the forefront of technology.

2. User-Driven Development: Focus on user needs, providing flexible and efficient tools and resources to support user creativity and innovation.

3. Open Ecosystem: Through open APIs and development tools, encourage third-party developers to participate in building a diverse range of applications and services.

4. Global Expansion: Expand the ecosystem globally, connecting users from different regions and cultures to drive the worldwide adoption of the multiverse.

6. Application Scenarios

NLink is dedicated to providing native, real-world connected use cases for all types of NFT assets, including static, dynamic, generative art, and interactive code in flat web architectures. Whether for creators, collectors, or institutions, NLink offers an ecosystem that liberates 90% of digital native assets from merely sitting idle in wallets. The NLink system does not rely on single blockchain tokens like ETH, SOL, or stablecoins such as USDT. Instead, it establishes fair and equivalent evaluation standards based on multidimensional criteria such as historical display records, distribution status, display weight, and attention metrics, forming the foundation for reference and transactions.

6.1 NFT Display and Interaction

NLink provides diverse methods for displaying and interacting with various types of NFT assets:

Static and Dynamic Displays:Whether static digital artworks or dynamically generated content, the NLink platform supports multiple display formats in real-world settings. Using augmented reality (AR) and virtual reality (VR) devices, users can visually explore and interact with their NFT assets in various scenarios.

Generative Art and Interactive Code:NLink supports the direct deployment of generative art and interactive code NFTs, allowing creators to seamlessly mint their generated content on-chain or deploy it via APIs to specific spatial coordinates. This enables functional applications such as monetization, advertising, and artistic displays.

6.2 Native Real-World Connected Use Cases

NLink provides creators, collectors, and institutions with native use cases that connect NFTs to the real world, enhancing their utility and interactivity in everyday life:

Liberating Digital Assets from Wallets:Through the NLink platform, 90% of digital native assets can be liberated from wallets and integrated into real-world applications such as home decor, public displays, and interactive experiences.

Multidimensional Standards for Cross-Chain Assets:NLink does not rely on single blockchain tokens like ETH, SOL, or USDT. Instead, it introduces multidimensional standards, including historical display records, distribution status, display weight, and attention metrics, to provide a fair and equivalent evaluation for digital assets. This supports equitable cross-chain asset trading and applications.

6.3 Interactive Relationships for Structural and Game-Oriented Creators

NLink provides tools and platforms for structural and game-oriented creators to establish interactive relationships within spatial computing:

API Interaction with Geographic Environments:Creators can use APIs to set up interactions with geographic environments, time, or specific intents within spatial computing, creating unique user experiences.

Hypotheses and Interaction Control:Within the public spatial system, creators can flexibly configure and adjust the behavior of NFT assets based on different hypotheses and interaction needs, enhancing content interactivity and immersion.

6.4 AI Content Generation and Functional Applications

NLink serves as a one-stop presentation platform for AI-generated content by integrating various AI tools:

Content On-Chain and API Deployment:Generated videos and content can be directly minted on-chain or deployed via APIs to specific spatial coordinate systems. These applications include monetization, advertising, and artistic displays.

Support for Diverse AI Tools:NLink supports a variety of AI generation tools, ensuring creators can flexibly utilize different AI technologies to meet diverse creative needs.

6.5 Visual Representation of AI Agents

NLink provides visual representation and access points for the AI Agents of every project or entity:

Dedicated Visualization Spaces:NLink offers dedicated spaces for AI Agents to visually present themselves on the platform, enhancing user interaction experiences.

Real-World Access Points:NLink provides AI Agents with more access points and opportunities to engage in real-world scenarios, increasing visibility, traffic, and user growth.

6.6 Bridging XR, AR, and VR Content Creation with the Real World

NLink acts as a bridge for XR (Extended Reality), AR (Augmented Reality), and VR (Virtual Reality) content creation institutions, enabling their creations to connect and coexist with the real world:

Connecting Content with the Real World:NLink ensures that content created within spatial computing can publicly connect and coexist with the real world, enhancing interactivity and practicality.

Recording and Tracking:NLink provides comprehensive content recording and tracking functionalities, ensuring that the display and interaction processes of created content in the real world are fully recorded and managed.

6.7 Information Flow Tracking of Multiverse Assets

NLink provides information flow tracking for assets across multiple metaverse worlds:

Tracking Assets Across Multiverses:NLink records the presence and movement of each digital asset across different metaverses, ensuring the uniqueness and traceability of assets in various virtual spaces.

Dynamic Data Management:Through NLink’s multidimensional data standards, dynamic data such as historical records, distribution status, and attention metrics are systematically managed, enhancing the overall value and liquidity of assets.

6.8 Driving Traffic and Monetization for Real-World Landmark Buildings

NLink opens up opportunities for real-world landmark buildings to drive traffic, create premium value, and enable monetization:

Landmark Applications of Digital Assets:Landmark buildings can showcase and interact with digital assets through the NLink platform, attracting the attention of visitors and users while increasing the digital value of the landmark.

Monetization and Value-Added Opportunities:The digital asset displays of landmark buildings can be monetized through sales, rentals, or other business models, increasing the economic returns of the building itself.

6.9 Comprehensive Spatial Functionality for Conferences, Sports Events, and Activities

NLink provides comprehensive and guided spatial functionality services for various types of conferences and events:

Intelligent Guidance and Management:Leveraging spatial computing technology, NLink offers intelligent guidance and management services to optimize the organization and execution efficiency of conferences and events.

Interactive Experience and Recording:Using augmented reality (AR) and virtual reality (VR) technologies, NLink enhances the interactivity of conferences and events while recording key data and dynamics for subsequent analysis and optimization.

6.10 Integrated Applications and Future Expansion

NLink’s application scenarios span a wide range, from individual users to institutional applications. Through continuous technological innovation and ecosystem optimization, NLink is committed to advancing the comprehensive application and value enhancement of NFT assets in the real world:

Leasing and Lending:NLink supports the leasing and lending of NFT assets, enabling users to utilize their digital assets in various commercial activities to generate additional income or liquidity.

Advertising and Marketing:By embedding NFT assets into advertising and marketing campaigns, NLink helps businesses reach target audiences with precision and enhance brand promotion.

Art and Culture:NLink provides a professional platform for artists and cultural institutions to showcase and trade NFTs, fostering the dissemination and development of digital art and cultural assets.

Education and Training:NLink supports the digitization of educational resources and training materials into NFTs, offering personalized and interactive learning experiences that drive innovation in digital education.

7. Ecosystem Design

NLink’s ecosystem design aims to build a highly interconnected, flexible, and sustainable digital platform. By integrating decentralized autonomous organizations (DAO), centralized rewards pools, and innovative growth mechanisms, NLink drives the comprehensive development of spatial computing and digital asset management. This section outlines the core components and operational mechanisms of the NLink ecosystem.

7.1 Economic Model

7.1.1 SpatialDAO

SpatialDAO is the core governance body of the NLink ecosystem, uniting global experts in spatial computing to enhance the influence of industry organizations. As one of the earliest DAOs in the spatial computing sector, SpatialDAO holds a pioneering position in the field and achieves its goals through the following:

Organization and Management:SpatialDAO is responsible for setting the ecosystem’s development strategy and governance rules, ensuring fair distribution of benefits among all participants.

Founder and Project Exposure:By leveraging DAO resources and community support, SpatialDAO enhances the visibility of founders and projects, fostering the incubation and growth of high-quality initiatives.

Industry Influence:SpatialDAO strengthens NLink’s leadership in the industry by organizing global spatial computing competitions and collaborative projects.

7.1.2 Centralized Rewards Pool

To incentivize active participation in the ecosystem, NLink has designed a centralized rewards pool as part of its initial incentive mechanism:

Node Incentives:Actions such as early node deployment, asset placement, asset interaction, and API interaction will earn users reward points, encouraging active engagement in data activities.

Reward Distribution Rules:The distribution of rewards is dynamically adjusted based on multidimensional weighted parameters to ensure fairness and adaptability.

Future Mapping and Airdrops:In the later stages, when the token economic model is introduced, points accumulated in the centralized rewards pool will be converted into NLink tokens and distributed to users through airdrops and other mechanisms, enhancing user retention and participation.

Gamified Experience:Through the design of the points system, NLink offers a gamified experience for users, increasing engagement and platform stickiness.

7.2 Growth Strategy

NLink’s growth strategy is based on two primary approaches, aiming to achieve rapid platform expansion and sustained user base growth through innovation and user-driven mechanisms.

7.2.1 NLink as a PR Tool

NLink positions itself as a public relations (PR) tool for other projects, companies, and individuals, achieving this goal through the following:

Self-Propagation Mechanism:NLink’s platform design enables users to organically spread information about the platform during usage, creating a virtuous cycle that enhances visibility and grows the user base.

Project Exposure:NLink provides channels for showcasing and promoting collaborative projects and companies, boosting their market influence while energizing NLink’s ecosystem.

Marketing Tool Integration:By aligning NLink’s functionalities with marketing needs, the platform offers customized marketing solutions, helping users and partners achieve brand promotion and user acquisition.

7.2.2 Content Breakthroughs and Attention Aggregation

By creating multidimensional, hyper-realistic content conflicts within the spatial system, NLink generates content breakthroughs that draw user attention and amplify reach:

Hyper-Realistic Conflict:Utilizing spatial computing technology, NLink combines digital content across dimensions to craft visual and interactive conflicts that captivate user attention.

Imagination-Driven Design:Through innovative and imaginative content creation, NLink sparks users’ curiosity and interest, enhancing the impact of content dissemination and user engagement.

Attention Aggregation:Content breakthroughs concentrate user attention, increasing platform traffic and user retention, driving the healthy growth of the ecosystem.

7.3 Incentive Mechanism

NLink has designed a comprehensive incentive mechanism to reward early node deployment, asset placement, asset interaction, and API interaction. This mechanism aims to drive active participation and sustained growth within the ecosystem.

7.3.1 Incentives for Early Node Deployment

Early participants who deploy nodes and place assets are rewarded with points and other incentives. These rewards not only recognize the contributions of early users but also provide foundational support for the stable operation of the ecosystem.

7.3.2 Rewards for Asset and API Interactions

Users engaging in asset interactions and API interactions on the platform are awarded points based on the frequency and quality of their activities. This reward system encourages users to actively participate in platform activities, enhancing ecosystem engagement and interactivity.

7.3.3 Mapping Points to Tokens

As NLink’s token economy model is introduced, points accumulated in the centralized rewards pool will be mapped to NLink tokens. By holding and using these tokens, users can participate further in platform governance and decision-making, gaining additional rights and benefits.

7.3.4 Multidimensional Incentive Parameters

The distribution of points is dynamically adjusted based on multidimensional parameters, including user activity, contribution level, and interaction quality. This ensures fairness and effectiveness in the incentive mechanism. Additionally, NLink will continuously optimize and adjust its incentive strategies in response to the ecosystem’s evolving needs, ensuring sustainable platform growth.

8. Key Technologies

8.1 Public Spaces

8.1.1 Technical Overview

One of NLink’s core technologies is Spatial Anchor Persistence, enabling the stable display and interaction of digital assets in public spaces. Utilizing AI and SLAM (Simultaneous Localization and Mapping) technology, digital assets can be anchored to physical coordinates in real time and maintain long-term presence. This technology offers groundbreaking possibilities for merging the virtual and real worlds, allowing digital assets to be perceived and interacted with as if they were tangible objects in the physical world.

8.1.2 Application Scenarios

Augmented Reality Public Art:Integrating dynamic digital art into urban environments to create immersive public art experiences.

Commercial Content Display:Supporting precise and long-term placement of virtual advertisements and brand displays in public spaces.

Cross-Device Scene Sharing:Enabling real-time sharing and interaction across multiple devices, such as collaborative AR games or real-time navigation experiences.

8.2 4D Spatial Data Network

8.2.1 Data Computation and Synchronization

NLink integrates LiDAR and RTK technologies to provide high-precision 3D coordinate analysis for digital assets, including altitude calculations and dynamic scene adjustments.

Real-Time Coordinate Computation:Adapts dynamically to both indoor and outdoor environments using environmental data, ensuring accurate digital asset anchoring.

Blockchain-Based Spatial Ledger:Employs blockchain technology to build a globally shared spatial ledger, recording 3D coordinates, historical changes, and ownership information.

8.2.2 Data Consistency

NLink’s global data network supports seamless synchronization across multiple users and devices, ensuring spatial data consistency across different locations and platforms.

Real-Time Cross-Region Synchronization:Achieves instantaneous data updates for multiple users in diverse geographical locations through low-latency transmission technology.

Historical Data Tracking:Tracks the interaction and display history of digital assets, providing users with complete historical provenance.

8.3 System Architecture

8.3.1 Overview of System Architecture

NLink’s system architecture is divided into three layers, covering everything from data capture to user interaction:

1. Perception Layer:
• Utilizes LiDAR and SLAM to capture physical spatial data and generate high-precision 3D maps.

2. Processing Layer:
• Employs AI-based context-aware anchoring algorithms to provide dynamically optimized coordinate templates for various scenarios.
• Distributed computing frameworks optimize resource allocation to enhance data processing efficiency.

3. Interaction Layer:
• Implements WebSocket and GraphQL technologies for low-latency real-time data transmission.
• Cross-device interfaces support collaborative operations across AR, mobile devices, and AI assistants.

8.3.2 Modular Design

The modular design of the system ensures efficient operation and scalability, with each layer functioning as an independent module to support technological upgrades and feature expansion:

Dynamic Adjustment Capability:Real-time data optimization adapts seamlessly between indoor and outdoor environments.

Cross-Platform Compatibility:Supports multiple devices, ensuring a consistent user experience across diverse interaction scenarios.
This layered architecture delivers seamless integration from data perception to user interaction, creating a comprehensive and flexible system ecosystem.

8.4 Data Interaction

8.4.1 Real-Time Data Transmission

NLink leverages WebSocket and GraphQL technologies to achieve real-time, low-latency data synchronization, ensuring smooth interactions between users and digital assets:

Low-Latency Synchronization:Millisecond-level data updates enable real-time multi-user interaction.

Intelligent Scheduling Optimization:A distributed scheduling system dynamically allocates bandwidth based on user demand, enhancing interaction efficiency in multi-user environments.

8.4.2 Expanding Data Interaction

NLink’s data interaction module supports multi-device and cross-platform applications, allowing users to seamlessly operate and manage digital assets:

Multi-User Collaboration:Enables simultaneous operation of the same digital asset by multiple users, enhancing collaborative experiences.

Data Consistency:Ensures complete consistency in display and operation results across platforms and devices.

Copyright Notice

© 2025 NLink. All rights reserved. Unauthorized reproduction or use of any part of this white paper is strictly prohibited.

Disclaimer

This white paper is for informational purposes only and does not constitute any form of investment advice. NLink does not guarantee the completeness or timeliness of the information contained in this white paper and is not liable for any losses arising from reliance on its content. Investments involve risks; please proceed with caution.

Contact Us

If you have any questions or suggestions about NLink, please feel free to reach out to us through the following channels:

Official Website: www.nlink.ai

Email: support@nlink.ai

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Thank you for your attention and support!

Appendix

A. Glossary of Technical Terms
AI (Artificial Intelligence): Computing systems designed to simulate human intelligence, capable of performing tasks such as learning, reasoning, and self-correction.
AR (Augmented Reality): Technology that overlays virtual information onto the real world, enhancing sensory experiences.
Web3: The next generation of the internet, emphasizing decentralization, user ownership, and blockchain technology.
NFT (Non-Fungible Token): Unique digital assets based on blockchain technology, characterized by their non-replaceable and singular nature.
IPFS (InterPlanetary File System): A distributed file storage system aimed at decentralizing file storage and access.
DAO (Decentralized Autonomous Organization): Autonomous organizations governed and operated through blockchain-based smart contracts.
SpatialDAO: A decentralized autonomous organization designed by NLink to govern and make decisions within its ecosystem.

B. Team Introduction

NLink is led by a team of experts from the fields of artificial intelligence, augmented reality, blockchain, and digital art. With extensive industry experience and technical expertise, the team is dedicated to driving innovation and growth in the digital ecosystem.

Thank you for reading the NLink White Paper. We look forward to co-creating the digital future with you!

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© 2024 Nlink.ai  All rights reserved.