Blockchain and Smart Contract-Based Framework for Crowdsourcing Computation in Web 3.0
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The increasing complexity of computational problems across many scientific and technological domains often challenges traditional centralized computing resources. As the internet evolves toward Web 3.0, blockchain technology is emerging as a foundational infrastructure for decentralization, transparency, and distributed collaboration. Applications like the metaverse, which demand real-time responsiveness and high computational throughput, further underscore the need for scalable and resilient computing frameworks. In this regard, we propose a novel framework for crowdsourcing computationally intensive tasks using blockchain and smart contracts. Operating atop existing blockchain networks, a Master (or Requester) node defines a computational problem, decomposes it into subtasks, and deploys a smart contract to manage task distribution. Worker nodes perform the computations off-chain using local resources and submit their results via on-chain transactions. The smart contract aggregates these results and finally, the Master validates them and automatically distributes rewards in cryptocurrency. A proof-of-concept simulation using Ganache, Solidity, and off-chain scripts demonstrates the feasibility of this approach, showcasing key features such as task decomposition, off-chain computation, and automated result handling. These findings underscore blockchain’s potential to enable transparent, automated, and scalable coordination of distributed computing tasks.
Publication details
- DOI
- 10.1109/metacom65502.2025.00069
- OpenAlex
- W4415034403
- Document type
- conference-paper
- Language
- EN
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