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AI Layer 1 Technology Innovations: In-depth Analysis of Five Top Projects
AI Layer 1 Technology Innovation: In-Depth Analysis of Five Major Projects
With the rapid development of artificial intelligence technology, traditional blockchain architectures have struggled to meet the high-performance computing and complex data processing requirements needed for AI applications. This has driven the rise of Layer 1 blockchain platforms specifically optimized for AI, which exhibit diverse characteristics in terms of technical architecture, application scenarios, and business models.
This article provides an in-depth analysis of five leading AI Layer1 projects: Bittensor, Vana, Kite AI, Nillion, and Sahara.
Bittensor: Decentralized AI Network Infrastructure
Bittensor, as an early explorer in the blockchain AI field, is committed to building an open decentralized artificial intelligence collaboration network. Its goal is to break the centralized barriers in traditional AI research and development, allowing more participants to contribute and benefit together.
Unlike traditional centralized AI systems, Bittensor has created an open peer-to-peer ecosystem where participants can earn corresponding rewards based on their contributions to the network.
The technical architecture of Bittensor adopts a dual-layer structural design:
This design allows Bittensor to simultaneously balance the overall stability of the network with the specialization in various fields, providing a flexible infrastructure for the development of decentralized AI.
Ecological Development Progress
The data indicates that Bittensor is gaining recognition from an increasing number of market participants, and its ecosystem is entering a positive development track.
The recent dTAO (Dynamic TAO) system upgrade completed by Bittensor is an important innovation in its economic model. The core of this upgrade lies in optimizing the distribution mechanism of the TAO token, shifting from a resource allocation method that relies on the subjective judgment of validators to a more market-oriented distribution mechanism, allowing resources to flow more precisely to those subnetworks that truly have competitive advantages.
To address these issues, the dTAO upgrade has introduced a dynamic resource allocation system based on market mechanisms.
This system transforms each subnet into an independent economic unit, driven by the actual needs of users to allocate resources. Its core innovation is the subnet token (Alpha token) mechanism:
This mechanism significantly improves the efficiency and fairness of resource allocation, strengthens the value of TAO tokens, and provides more avenues for ordinary users to participate in network governance.
The currently most active subnets include:
Vana: Data Sovereignty and Value Reconstruction Platform
The Vana project focuses on solving a core issue in today's digital economy: the ownership of personal data and the distribution of its value. In the current internet ecosystem, users' data is mostly monopolized and controlled by large tech companies, while the users who actually create this data rarely benefit from it. Vana's innovation lies in establishing an ecosystem where users truly own and control their own data, while also being able to gain economic returns from it.
As an EVM-compatible Layer 1 blockchain network, Vana's technical architecture consists of five core components:
This design enables Vana to create a fairer data value distribution mechanism while protecting user data privacy, providing an important data foundation for the development of decentralized AI.
Latest Development Trends
Vana's financing and cooperation expansion continues to advance:
These developments indicate that Vana is actively building a complete ecosystem around data ownership and value realization, and its growth momentum is worth paying attention to.
Kite AI: Technical Breakthrough of AI Native Public Chain
Kite AI is a native Layer 1 blockchain project focused on the AI field, built on the Avalanche framework. It aims to address various challenges faced by traditional blockchains when dealing with AI assets, particularly how to achieve clear rights and incentives for AI data, models, and agent contributions. Kite AI has proposed four core technological innovations:
PoAI Consensus Mechanism: Proof of Attributed Intelligence is a consensus mechanism pioneered by Kite AI, which accurately tracks the value contributions of data, models, and AI agents through an on-chain verifiable contribution record system. The project has designed a dynamic reward pool mechanism that allocates earnings based on contribution ratios, effectively addressing issues such as "data black box" and "model plagiarism" in the traditional AI economy.
Composable AI Subnet: Kite AI adopts a modular architecture that allows developers to build industry-specific AI collaboration ecosystems as needed. For example, in the healthcare subnet, patient data can be encrypted and selectively authorized to pharmaceutical companies for AI model development, with profits distributed among the data subjects, model developers, and subnet maintainers according to a certain ratio, creating a win-win ecosystem for all parties.
AI Native Execution Layer: Kite AI is building an on-chain AI native execution layer specifically designed to handle AI computing tasks such as inference, embedding, and fine-tuning/training. Users can authorize smart contract wallets to execute inference calls and interact with models through this layer. This execution layer not only supports blockchain transactions and state changes but also integrates a confidential computing environment (such as Trusted Execution Environment TEE), ensuring data security and privacy protection during the computing process.
Decentralized Data Engine: Kite AI ensures that data creators receive fair compensation in the AI workflow. The platform is equipped with compliance modules that meet regulations such as GDPR/CCPA, addressing data privacy requirements worldwide and reducing compliance costs for developers.
These technological innovations enable Kite AI to create a fairer and more transparent value distribution environment for AI developers and data providers, promoting the decentralized development of AI technology.
Development Status
Kite AI launched the incentive testnet on February 6, 2025, which is the first AI-native Layer 1 sovereign blockchain testnet. The testnet has performed impressively since going live:
Less than 70 hours after the test went online, the number of connected wallets surpassed 100,000. As of now, a total of 1.95 million wallets have joined the incentive test network V1, of which over 1 million wallets have interacted with AI agents, with a total call count exceeding 115 million.
The project has a strong background, built by an experienced team from Silicon Valley. The co-founders have extensive technical leadership experience in the field of artificial intelligence and have worked at several top technology companies. Core team members come from multiple industry-leading companies and possess academic backgrounds from top universities.
In terms of capital support, the project has secured investments from multiple top institutions and has established technical partnerships with several well-known projects.
As a selection committee member for Avalanche in a certain program, Kite AI plays an active role in promoting the development of the Avalanche artificial intelligence ecosystem. This collaboration aims to make Avalanche a leading blockchain for AI applications.
With the global data economy expected to exceed $70 billion by 2025, Kite AI is poised to become an important infrastructure for data rights confirmation and monetization, and its development potential is worth looking forward to.
Nillion: Frontier Exploration of Privacy Computing
Nillion is redefining the processing of sensitive data with its unique "blind computation" technology, paving the way for future digital privacy protection.
Nillion is a decentralized public network based on an innovative cryptographic primitive called Nil Message Compute (NMC), allowing network nodes to operate in a non-traditional blockchain manner. This project was established in November 2021, aiming to create a system that can securely process high-value data without exposing sensitive details.
Nillion's core advantage lies in its "blind computation" capability—a process that allows data to remain encrypted throughout its lifecycle of storage, transmission, and processing. Its technical architecture integrates various cutting-edge privacy protection technologies: