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Distributed Resilient Finite-Time Secondary Control for Heterogeneous Battery Energy Storage Systems Under Denial-of-Service Attacks

机译:在拒绝服务攻击下的异质电池储能系统的分布式弹性有限时间次级控制

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摘要

This article addresses the problem of distributed resilient finite-time control of multiple heterogeneous battery energy storage systems (BESSs) in a microgrid subject to denial-of-service (DoS) attacks. Note that DoS attacks may block information transmission among BESSs by preventing the BESS from sending data, compromising the devices and jamming a communication network. A distributed secure control framework is presented, where an acknowledgment (ACK)-based attack detection strategy and a communication recovery mechanism are introduced to mitigate the impact of DoS attacks by repairing the paralyzed topology graphs caused by DoS attacks back into the initial connected graph. Under this framework, a distributed resilient finite-time secondary control scheme is proposed such that frequency regulation, active power sharing, and energy level balancing of BESSs can be achieved simultaneously in a finite time; meanwhile, operational constraints can be satisfied at any control transient time. Moreover, based on theoretical analysis, the impact of the duration time of DoS attacks on the convergence time of the control algorithm can be explicitly revealed. Finally, validity and effectiveness of the proposed control scheme are demonstrated by case studies on a modified IEEE 57-bus testing system.
机译:本文解决了在微电网中的多个异构电池储能系统(BESSS)的分布式弹性有限时间控制的问题,以进行拒绝服务(DOS)攻击。注意,DOS攻击可以通过防止BESS发送数据,从而损害设备并卡住通信网络来阻止BESS之间的信息传输。提出了一种分布式安全控制框架,其中引入了基于确认(ACK)的攻击检测策略和通信恢复机制来减轻DOS攻击的影响,通过修复由DOS攻击引起的初始连接图引起的瘫痪拓扑图。在该框架下,提出了一种分布式弹性有限时间二次控制方案,使得可以在有限时间内同时实现频率调节,电力共享和能量水平平衡;同时,在任何控制瞬态时间都可以满足运行约束。此外,基于理论分析,可以明确揭示DOS攻击对DOS攻击持续时间对控制算法的收敛时间的影响。最后,通过关于改进的IEEE 57总线测试系统的情况研究,证明了所提出的控制方案的有效性和有效性。

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