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EPPRD: An Efficient Privacy-Preserving Power Requirement and Distribution Aggregation Scheme for a Smart Grid

机译:EPPRD:一种用于智能电网的高效保护隐私的电力需求和分配聚合方案

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摘要

A Smart Grid (SG) facilitates bidirectional demand-response communication between individual users and power providers with high computation and communication performance but also brings about the risk of leaking users’ private information. Therefore, improving the individual power requirement and distribution efficiency to ensure communication reliability while preserving user privacy is a new challenge for SG. Based on this issue, we propose an efficient and privacy-preserving power requirement and distribution aggregation scheme (EPPRD) based on a hierarchical communication architecture. In the proposed scheme, an efficient encryption and authentication mechanism is proposed for better fit to each individual demand-response situation. Through extensive analysis and experiment, we demonstrate how the EPPRD resists various security threats and preserves user privacy while satisfying the individual requirement in a semi-honest model; it involves less communication overhead and computation time than the existing competing schemes.
机译:智能电网(SG)促进了单个用户与电力供应商之间的双向需求响应通信,具有较高的计算和通信性能,但也存在泄露用户私人信息的风险。因此,提高单个电源需求和分配效率以确保通信可靠性并同时保护用户隐私是SG的新挑战。基于此问题,我们提出了一种基于分层通信体系结构的高效且隐私保护的功率需求和分布聚合方案(EPPRD)。在提出的方案中,提出了一种有效的加密和认证机制,以更好地适合每个单独的需求响应情况。通过广泛的分析和实验,我们证明了EPRRD如何抵御各种安全威胁并保护用户隐私,同时满足半诚实模型中的个性化需求。与现有的竞争方案相比,它节省了通信开销和计算时间。

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