Advancing Blockchain-based Federated Learning through Verifiable Off-chain Computations

June 23, 2022 Β· Declared Dead Β· πŸ› International Congress on Blockchain and Applications

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Authors Jonathan Heiss, Elias GrΓΌnewald, Nikolas Haimerl, Stefan Schulte, Stefan Tai arXiv ID 2206.11641 Category cs.CR: Cryptography & Security Cross-listed cs.DC Citations 37 Venue International Congress on Blockchain and Applications Last Checked 6 months ago
Abstract
Federated learning may be subject to both global aggregation attacks and distributed poisoning attacks. Blockchain technology along with incentive and penalty mechanisms have been suggested to counter these. In this paper, we explore verifiable off-chain computations using zero-knowledge proofs as an alternative to incentive and penalty mechanisms in blockchain-based federated learning. In our solution, learning nodes, in addition to their computational duties, act as off-chain provers submitting proofs to attest computational correctness of parameters that can be verified on the blockchain. We demonstrate and evaluate our solution through a health monitoring use case and proof-of-concept implementation leveraging the ZoKrates language and tools for smart contract-based on-chain model management. Our research introduces verifiability of correctness of learning processes, thus advancing blockchain-based federated learning.
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