智能电网保护系统中基于区块链的安全数据交换机制

Dimitrios Sikeridis, A. Bidram, M. Devetsikiotis, M. Reno
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引用次数: 20

摘要

配电和输电保护系统被认为是现代智能电网生态系统的重要组成部分,因为它们能够隔离故障段并保持关键负载的运行。当前的保护方案越来越多地利用认知方法,根据电力系统的极端变化主动修改其行为。然而,这些信息驱动的解决方案的有效性和健壮性完全依赖于在底层中继通信网络上交换的数据和控制信号的完整性、真实性和保密性。在本文中,我们概述了一种可扩展的配电系统自适应保护平台,并引入了一种新的基于区块链的分布式网络架构,以增强智能电网保护继电器之间的数据交换安全性。提出的机制利用分层区块链架构来应对当前的技术限制,提供低延迟和更好的可扩展性。分散的特性消除了单点故障或污染,实现了智能电网继电器之间的直接安全通信。我们还提供了一个安全分析,展示了拟议的框架如何禁止对区块链分类账进行任何更改,从而提供交换数据的完整性和真实性(例如,实时测量/中继设置)。最后,通过在区块链基准测试框架上的模拟来评估所提出方法的性能,结果显示了安全智能电网保护系统通信的有前途的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A blockchain-based mechanism for secure data exchange in smart grid protection systems
Distribution and transmission protection systems are considered vital parts of modern smart grid ecosystems due to their ability to isolate faulted segments and preserve the operation of critical loads. Current protection schemes increasingly utilize cognitive methods to proactively modify their actions according to extreme power system changes. However, the effectiveness and robustness of these information-driven solutions rely entirely on the integrity, authenticity, and confidentiality of the data and control signals exchanged on the underlying relay communication networks. In this paper, we outline a scalable adaptive protection platform for distribution systems, and introduce a novel blockchain-based distributed network architecture to enhance data exchange security among the smart grid protection relays. The proposed mechanism utilizes a tiered blockchain architecture to counter the current technology limitations providing low latency with better scalability. The decentralized nature removes singular points of failure or contamination, enabling direct secure communication between smart grid relays. We also present a security analysis that demonstrates how the proposed framework prohibits any alterations on the blockchain ledger providing integrity and authenticity of the exchanged data (e.g., realtime measurements/relay settings). Finally, the performance of the proposed approach is evaluated through simulation on a blockchain benchmarking framework with the results demonstrating a promising solution for secure smart grid protection system communication.
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