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A Consortium Blockchain-Enabled Secure and Privacy-Preserving Optimized Charging and Discharging Trading Scheme for Electric Vehicles

机译:联盟板块支持的安全和隐私保留优化的电动车充电和放电交易方案

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This article utilizes consortium blockchain to design a decentralized, secure, and privacy-preserving scheme for bidirectional power trading between electric vehicles (EVs) and the power grid. To reduce adverse effects induced by disordered charging of massive EVs to the power grid, we minimize the total load deviation through optimizing the charging and discharging time period of EVs. Our optimization scheduling is a large-scale mixed-integer programming problem of which the number of variables and constraints are enormous. Hence, we propose to adopt the heuristic algorithm, an improved krill herd (KH) algorithm to solve it. Simulation results indicate that our model can effectively smooth the load fluctuations, and improved KH can improve the rate and accuracy of solving this model effectively. Implementation of Hyperledger Fabric evaluates the performance and scalability of our scheme. Qualitative security and privacy analysis demonstrate that our scheme helps to improve the security and privacy of power trading.
机译:本文利用联盟区块链设计了电动车辆(EVS)和电网之间的双向动力交易的分散,安全和隐私保留方案。为了减少通过对电网进行大规模EV的混乱充电引起的不利影响,通过优化EV的充电和放电时间来最小化总负荷偏差。我们的优化调度是一个大规模的混合整数编程问题,其中变量和约束的数量是巨大的。因此,我们建议采用启发式算法,改进的克里尔群(KH)算法来解决它。仿真结果表明,我们的模型可以有效地平滑负荷波动,并且改善的KH可以有效地提高解决该模型的速率和准确性。超载杂志面料的实现评估了我们计划的性能和可扩展性。定性安全和隐私分析表明,我们的计划有助于提高电力交易的安全和隐私。

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