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In-depth analysis of the five major AI Layer 1 projects: the new frontier of the integration of Blockchain and artificial intelligence.
In-depth Analysis of AI Layer 1 Projects: The Cutting Edge of Blockchain and Artificial Intelligence Integration
With the rapid development of AI technology, traditional Blockchain architectures have struggled to meet the high-performance computing and complex data processing demands of AI applications. This has led to the rise of Layer 1 Blockchain platforms specifically optimized for AI, which exhibit diverse characteristics in terms of technological architecture, application scenarios, and business models.
This article provides an in-depth analysis of five leading AI Layer 1 projects: Bittensor, Vana, Kite AI, Nillion, and Sahara.
1. 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 down the centralized barriers in traditional AI research and development, allowing more participants to contribute and benefit together.
Bittensor's technical architecture adopts a dual-layer structure design:
This design allows Bittensor to simultaneously balance the overall stability of the network and the expertise in various fields, providing a flexible infrastructure for the development of decentralized AI.
Ecological Development Progress
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 allocation mechanism of the TAO token, shifting from a resource allocation method that relies on the subjective judgment of validators to a more market-oriented allocation mechanism, allowing resources to flow more precisely to those subnetworks that are truly competitive.
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, driving resource allocation through users' actual needs. Its core innovation is the subnet token (Alpha token) mechanism:
The currently most active subnets include:
2. Vana: Data Sovereignty and Value Reconstruction Platform
The Vana project focuses on addressing a core issue in today's digital economy: the ownership of personal data and value distribution. The innovation of Vana lies in creating an ecosystem where users truly own and control their own data while being able to derive economic benefits from it.
As an EVM-compatible Layer 1 Blockchain network, Vana's technical architecture includes five core components:
Data Liquidity Layer: This is the core of the Vana network, achieving the incentivization, aggregation, and verification of data assets through the Data Liquidity Pool (DLP).
Data Portability Layer: Ensure that user data can be easily transferred between different applications and AI models, enhancing the flexibility of data usage.
General Connection Group: Track the real-time data flow throughout the entire ecosystem, forming a data ecology map to ensure the transparency of the system.
Non-custodial data storage: Users' original data will not be placed on the blockchain but will be stored in a location chosen by the users themselves, ensuring complete control over their own data.
Application Ecosystem: Developers can leverage the data accumulated by DLP to build various innovative applications, including AI applications, while data contributors can receive dividend rewards from these applications.
Latest developments
3. Kite AI: Technical Breakthrough of AI-Native Blockchain
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 handling AI assets, particularly how to achieve transparency in rights and incentives for AI data, models, and agent contributions. Kite AI proposes four core technological innovations:
PoAI consensus mechanism: A system of on-chain verifiable contribution records that precisely tracks the value contributions of data, models, and AI agents.
Composable AI Subnet: Supports developers to build industry-specific AI collaboration ecosystems as needed.
AI Native Execution Layer: Specifically handles AI computation tasks such as inference, embedding, and fine-tuning/training.
Decentralized Data Engine: Ensures that data creators receive fair compensation in the AI workflow.
Development status
4. Nillion: Frontier Exploration of Privacy Computing
Nillion is redefining the way sensitive data is processed through its unique "blind computation" technology, paving new avenues for digital privacy protection in the future.
Nillion's core advantage lies in its "blind computation" capability - a process that allows data to remain encrypted throughout its storage, transmission, and processing lifecycle. Its technical architecture integrates various cutting-edge privacy protection technologies:
The network architecture of Nillion consists of three main layers: the processing layer, the coordination layer, and the connection layer.
Latest development process
5. Sahara AI: A platform for building a new economy of AI assets
The core concept of Sahara AI is to build a "Human-AI Collaboration Network" that allows ordinary users, developers, and enterprises to participate in the creation, deployment, and monetization of AI assets.
The technical architecture of the platform consists of three key components:
Latest development progress
Sahara AI has announced its roadmap for the 2024-2025 fiscal year, which includes several key milestones. On March 1, 2025, Sahara AI will launch an incubator program aimed at discovering and supporting the most promising AI x Web3 innovative projects globally.
Summary
AI Layer 1 is currently in a critical stage of rapid evolution. This emerging track is reconstructing the underlying architecture of AI technology through decentralized infrastructure. From data rights confirmation to computing resource allocation, from model training to application deployment, these platforms are breaking through the limitations of traditional centralized AI systems, building a more open, transparent, and efficient technological ecosystem. In the future, this track will continue to drive technological innovation, advancing artificial intelligence towards a more decentralized and collaborative development direction.