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基于区块链且可验证的智能电网多维数据聚合与分享方案

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针对如何支持轻量级多维数据聚合,实现系统整体过程中多维数据的双端完整性验证,以及处理云服务器集中化等问题,提出了一种基于区块链且可验证的智能电网多维数据聚合与分享方案.首先,为了满足智能电网对电量数据细粒度分析的需求,利用掩蔽值和霍纳法则实现了隐私保护多维数据聚合.在此基础上,针对现有数据聚合方案在云存储数据与第三方分享方面存在的数据完整性验证问题,借用基于 RSA 的乘法同态承诺方案和同态哈希函数的同态性设计了一种新的签名算法,使云服务器不仅可以验证聚合数据的完整性,还可以验证数据分享阶段的完整性,即实现了云存储数据的双端可验证性,并且可以抵抗内部攻击.同时,提出了一种基于联盟链多链的聚合数据分享体系结构,有效地避免单机处理瓶颈和易受攻击等集中化问题.理论分析证明了所提方案的安全性.性能实验表明,所提方案比已有方案具有更低的计算和通信成本.
Blockchain-based and verifiable multidimensional data aggregation and sharing scheme for smart grid
Aiming at the problem that how to support lightweight multi-dimensional data aggregation,achieve dou-ble-end integrity verification of multi-dimensional data in the overall process of the system,and deal with the centraliza-tion of cloud servers,a blockchain-based and verifiable multidimensional data aggregation and sharing scheme for smart grid was proposed.Firstly,in order to meet the demand for fine-grained analysis of power data in smart grid,priva-cy-preserving multidimensional data aggregation was achieved by using masked values and Horner's rule.On this basis,for the data integrity verification problem of the existing data aggregation scheme in the sharing of cloud storage data with the third party,a new signature algorithm was designed by borrowing the RSA-based multiplicative homomorphic commitment scheme and homomorphic hash function homomorphism,which enabled the cloud server to verify the integ-rity of aggregated data and be used for integrity verification in the data sharing phase,i.e.,it achieved double-end verifia-bility of cloud storage data and was resistant to internal attacks.Meanwhile,an aggregated data sharing architecture based on federated chain multichain was proposed to effectively avoid centralisation problems such as single-machine pro-cessing bottleneck and vulnerability to attacks.The theoretical analysis proves the security of the scheme.Performance experiments show that the proposed scheme has lower computation and communication costs compared with existing schemes.

smart gridverifiablecloud storagedata integrityblockchain

陈建伟、王姝妤、张美平、张桢萍

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福建师范大学计算机与网络空间安全学院,福建 福州 350117

福建省网络安全与密码技术重点实验室,福建 福州 350117

智能电网 可验证 云存储 数据完整性 区块链

中央引导地方科技发展资金资助项目福建省自然科学基金资助项目国家自然科学基金资助项目福建省科技厅高校产学合作计划基金资助项目

2021L30322023J01296U19052112022H6025

2024

通信学报
中国通信学会

通信学报

CSTPCD北大核心
影响因子:1.265
ISSN:1000-436X
年,卷(期):2024.45(1)
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