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The Rise of DePIN: Building the Future Blueprint for Decentralization of Physical Infrastructure Networks
The Rise of Decentralized Physical Infrastructure Networks: Exploring the Current Status and Prospects of DePIN
Introduction
The internet, as a symbol of globalization, actually originated from the products of the Cold War era.
In 1969, the U.S. military needed a network that could avoid single points of failure and autonomously recover to respond to potential nuclear strikes. Thus, the precursor to the Internet, "ARPAnet" (, was born, employing a decentralized distributed architecture design.
However, over the past 55 years, from Web1 to Web2, with the rapid development of the internet, a centralized architecture has emerged amid the waves of commercialization and globalization. Web2 giants have monopolized the discourse and value distribution in the online world.
In recent years, the Web3 wave has emerged, emphasizing Decentralization and de-platforming. However, mere application-layer Decentralization is difficult to solve fundamental problems; the solution lies in how to transform the internet from the underlying technology stack.
In this context, DePIN offers a new solution worth paying attention to: building an efficient P2P physical resource network through the financial attributes and incentive mechanisms of Web3, creating a "Decentralization physical network infrastructure," and granting programmable capabilities to the network, achieving an upgrade of "DePIN+" and constructing a new Internet architecture.
At the same time, the explosion of AI in Web3 has witnessed the expansion of blockchain applications from on-chain to the real world, such as RWA, AI, DePIN, etc.
The rise of DePIN signifies that the boundaries between the physical world and the blockchain world are becoming blurred. Next, let's explore the current status and future of DePIN together.
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) Part One DePIN Overview: Definition and Significance
Definition of DePIN
DePIN### Decentralization Physical Infrastructure Network( is a model that combines physical infrastructure resources with blockchain technology, coordinating global resource collaboration through distributed ledgers, token incentives, and smart contracts.
In short, DePIN creates a "resource sharing + economic incentives" bilateral market by combining hardware with blockchain. This community-driven model is more flexible than traditional centralized resource management and also has greater scalability and robustness.
A complete DePIN network consists of project parties, off-chain physical devices, suppliers, and demanders. The basic operating mode includes the following steps:
Proof: The data generated by physical devices must be uploaded to the blockchain ledger to provide auditable records, known as Physical Work Proof ) PoPW (.
Identity Verification: Verify the on-chain address of the device owner, usually using public and private keys.
Reward Distribution: Distribute the token rewards obtained from the device to the corresponding chain address.
Demand Matching: Achieving resource exchange and matching between supply and demand sides on the DePIN market platform.
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)# Why do we need DePIN?
Traditional physical infrastructure networks have the following issues:
The core value of DePIN is:
Current Status of DePIN Development
Track: The DePIN field has extended to multiple directions such as computing power, data, wireless, sensors, and energy. AI has become a key term in recent DePIN developments, leading to the emergence of a number of AI DePIN projects.
Market Size: According to DePIN Ninja data, there are 1,561 DePIN projects launched, with a total market value of approximately $22 billion. Messari predicts that the DePIN market size may exceed $3.5 trillion by 2028.
Main Chain: The current DePIN projects are mainly deployed on public chains such as Solana, IoTex, and Peaq, while Polygon and Arbitrum are gradually emerging as new stars.
Development direction: First, focus on the DePIN middle layer; second, focus on expanding the DePIN demand side.
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) Second Part DePIN Middleware
The large-scale access of DePIN-related IoT devices to the blockchain faces technical challenges and liquidity pressures. Therefore, the DePIN track has derived middleware that connects devices and networks, involving connectivity and bidirectional services, aimed at helping projects quickly launch DePIN applications.
DePIN Infrastructure
Liquidity Plan
Part Three DePIN Application Layer
There are numerous DePIN application layer projects, mainly divided into four major sectors: cloud networks, wireless networks, sensors, and energy.
Cloud Network
Storage:
Hashrate:
Wireless Network
)# Sensor
Energy
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) Part Four: Future Trends of DePIN
Integration with Web2 application scenarios: The potential of DePIN lies in its extensive applications in the Web2 industry.
Lower hardware threshold: DePIN devices transition to consumer-grade products, such as smartphones, watches, etc.
Financialization: The tokenization of physical hardware creates an imaginative space for on-chain finance.
DePIN and AI Mutual Support: DePIN provides computing power, data, and other resources for AI, while AI enhances the intelligence level of DePIN.
The challenges of scaling DePIN
Part Five Key Factors for Evaluating DePIN Projects
Hardware
Token Economics Design
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) Summary
DePIN builds a distributed bilateral market through Web3 and token economics, integrating global idle resources to address the issues of resource monopoly and inefficiency under centralized models. Despite facing challenges such as technology, market, and regulation, DePIN still demonstrates immense potential.
DePIN relies on the flywheel effect, requiring long-term accumulation and development. In the future, with the improvement of blockchain performance, the maturity of token economic models, and the enhancement of market conditions, DePIN is expected to usher in opportunities for large-scale applications.
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