A Hybrid Blockchain-Edge Architecture for Electronic Health Record Management With Attribute-Based Cryptographic Mechanisms
Гибридная блокчейн–пограничная архитектура для управления электронными медицинскими картами с использованием криптографических механизмов на основе атрибутов
2022-06-24
SCID: 54.1/ts2ue4yf
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Paillier homomorphic encryptionattribute-based encryptionattribute-based signature aggregationblockchain-edge architectureelectronic health records
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Abstract (AI)
This paper presents a hybrid blockchain-edge architecture for managing Electronic Health Records (EHRs) with attribute-based cryptographic mechanisms. The architecture introduces a novel attribute-based signature aggregation (ABSA) scheme and multi-authority attribute-based encryption (MA-ABE) integrated with Paillier homomorphic encryption (HE) to protect patients’ anonymity and safeguard their EHRs. All the EHR activities and access control events are recorded permanently as blockchain transactions. We develop the ABSA module on Hyperledger Ursa cryptography library, MA-ABE module on OpenABE toolset, and blockchain network on Hyperledger Fabric. We measure the execution time of ABSA’s signing and verification functions, MA-ABE with different access policies and homomorphic encryption schemes, and compare the results with other existing blockchain-based EHR systems. We validate the access activities and authentication events recorded in blockchain transactions and evaluate the transaction throughput and latency using Hyperledger Caliper. The results show that the performance meets real-world scenarios’ requirements while safeguarding EHR and is robust against unauthorized retrievals.
Key Findings
1
A hybrid blockchain-edge architecture combines attribute-based signature aggregation, multi-authority attribute-based encryption, and Paillier homomorphic encryption for secure EHR management.
2
EHR activities, access-control events, authentication, and access validation are permanently recorded as transactions on a Hyperledger Fabric blockchain.
3
Experiments measure cryptographic execution times, access-policy and homomorphic-encryption performance, transaction throughput, and latency against existing blockchain-based EHR systems.
4
The cryptographic design aims to preserve patient anonymity, protect EHR confidentiality, and support access control across multiple authorities.
5
The evaluated system meets real-world performance requirements while safeguarding EHRs and resisting unauthorized retrievals.
Research Object
electronic health record (EHR) management in a hybrid blockchain-edge system
Research Subject
privacy-preserving access control, authentication, and performance of attribute-based cryptographic mechanisms for EHR protection
Publication Details
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2022-06-24
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