Analysis of a Power Distribution Network Multi-Area State Estimator with Secure Blockchain-Based Data Exchange

Cesar Cazal, M. Pau, Juan Martín Del Río Chacón, F. Ponci, A. Monti
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Abstract

Distribution System State Estimation (DSSE) is an important monitoring tool for decision-making process. The need for data exchange between different actors imposes new requirements of data integrity and security, which can be fulfilled by Blockchain technology thanks to its distributed nature, transparency and immutability In this paper we quantify the time consumption and data exchange requirements between areas. Furthermore, we analyze the implication of Blockchain adoption as a secure data transfer technology, by testing a 2-step MASE algorithm communicated through the Blockchain, and comparing its performance with iterative data exchange methods already present in the literature. Finally, the results are analyzed in terms of storage capacity required for periodic state estimation, and the time required to get a final state-estimate considering the time constraints imposed by Blockchain Technology. Tests and results show different data publication methods for Blockchain adoption and bring quantitative results for the feasibility analysis, depending on the MASE algorithm adopted in the monitoring system.
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基于安全区块链数据交换的配电网多区域状态估计器分析
配电系统状态估计(DSSE)是配电系统决策过程的重要监控工具。不同参与者之间的数据交换需求对数据完整性和安全性提出了新的要求,由于区块链技术的分布式、透明性和不可变性,可以满足这些要求。本文量化了区域之间的时间消耗和数据交换需求。此外,我们通过测试通过区块链通信的两步MASE算法,并将其性能与文献中已有的迭代数据交换方法进行比较,分析了采用区块链作为安全数据传输技术的含义。最后,分析了周期状态估计所需的存储容量,以及考虑到区块链技术施加的时间限制,获得最终状态估计所需的时间。根据监测系统中采用的MASE算法的不同,测试和结果显示了区块链采用的不同数据发布方法,并为可行性分析带来了定量结果。
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