A Distributed Energy Trading Framework with secure and effective Consensus Protocol

Jincai Ye, Jiahua Liang, Xiaohuan Li, Qianzhong Chen
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Abstract

With the rapid increase of DER(distributed energy resources), it has become a global trend to establish a distributed energy trading markets to coordinate these DERs. However, the construction of distributed energy trading market faces various challenges, in which trusted transaction among market participants is crisis. Since the existing solutions need numerical calculation and communication resource that lead to large delay, this paper proposes a distributed energy trading framework with secure and effective consensus protocol. Different from the traditional PBFT(Practical Byzantine Fault Tolerance) that is the notable debasement on interaction flow between processes, a threshold signature mechanism is introduced and the consensus process of trading is reconstructed. Theoretical analysis shows that the communication complexity of the proposed framework is optimized from $O(n^{2})$ to $O(n)$, and the computation complexity of the participants is also reduced from $O(n)$ to $O(1)$. Our simulation results also show that the task delay of our consensus protocol begins to be lower than PBFT when the number of participants exceeds a certain threshold. In particular, the trusted transaction delay using our consensus protocol is reduced by 12.14% when the number of participants increases to 100.
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基于安全有效共识协议的分布式能源交易框架
随着分布式能源的快速增长,建立分布式能源交易市场来协调这些分布式能源已成为全球趋势。然而,分布式能源交易市场的建设面临着各种挑战,其中市场参与者之间的信任交易存在危机。针对现有解决方案需要数值计算和通信资源,导致延迟较大的问题,本文提出了一种具有安全有效共识协议的分布式能源交易框架。不同于传统的PBFT(Practical Byzantine Fault Tolerance,实用拜占庭容错)对过程间交互流程的显著贬低,引入阈值签名机制,重构交易的共识过程。理论分析表明,该框架的通信复杂度从$O(n^{2})$优化到$O(n)$,参与者的计算复杂度也从$O(n)$降低到$O(1)$。仿真结果还表明,当参与者数量超过一定阈值时,共识协议的任务延迟开始低于PBFT。特别是,当参与者数量增加到100人时,使用我们的共识协议的可信事务延迟减少了12.14%。
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