Blockchain-based Federated Learning with Secure Aggregation in Trusted Execution Environment for Internet-of-Things
April 25, 2023 Β· Declared Dead Β· π IEEE Transactions on Industrial Informatics
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Authors
Aditya Pribadi Kalapaaking, Ibrahim Khalil, Mohammad Saidur Rahman, Mohammed Atiquzzaman, Xun Yi, Mahathir Almashor
arXiv ID
2304.12889
Category
cs.CR: Cryptography & Security
Cross-listed
cs.AI
Citations
105
Venue
IEEE Transactions on Industrial Informatics
Last Checked
4 months ago
Abstract
This paper proposes a blockchain-based Federated Learning (FL) framework with Intel Software Guard Extension (SGX)-based Trusted Execution Environment (TEE) to securely aggregate local models in Industrial Internet-of-Things (IIoTs). In FL, local models can be tampered with by attackers. Hence, a global model generated from the tampered local models can be erroneous. Therefore, the proposed framework leverages a blockchain network for secure model aggregation. Each blockchain node hosts an SGX-enabled processor that securely performs the FL-based aggregation tasks to generate a global model. Blockchain nodes can verify the authenticity of the aggregated model, run a blockchain consensus mechanism to ensure the integrity of the model, and add it to the distributed ledger for tamper-proof storage. Each cluster can obtain the aggregated model from the blockchain and verify its integrity before using it. We conducted several experiments with different CNN models and datasets to evaluate the performance of the proposed framework.
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