首页> 外文期刊>International journal of electrical power and energy systems >Bi-level mixed-integer linear programming algorithm for evaluating the impact of load-redistribution attacks on Volt-VAR optimization in high- and medium-voltage distribution systems
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Bi-level mixed-integer linear programming algorithm for evaluating the impact of load-redistribution attacks on Volt-VAR optimization in high- and medium-voltage distribution systems

机译:用于评估负载再分配攻击对高压和中压配电系统伏瓦优化的影响的双级混合整数线性规划算法

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The increasing integration of distributed generators into distribution systems (DSs) poses significant challenges to the stable operation and cyber-physical security of integrated highand medium-voltage distribution system (HMVDS), leaving Volt-VAR optimization (VVO) vulnerable to load-redistribution attacks. This study focused on VVO in an HMVDS subject to the load-redistribution attack. The VVO under load-redistribution attack was formulated as a single-leader-multi-follower bi-level mixed-integer linear programming (BMILP) model that captured the interaction between the attacker and DS operators. The attacker in the upper level aimed to maximize voltage deviations and load curtailment through load-redistribution attack, while the DS operators aimed to minimize the voltage deviations in the lower levels. A relaxation-based bi-level reformulation and decomposition algorithm was designed to solve the BMILP model through replacing each mixed-integer linear programming lower-level problem with multiple linear programming lower-level problems, and using nonnegative relaxation variables and penalty functions to ensure equivalence. Finally, case studies on a constructed HMVDS and a real-world HMVDS were conducted to illustrate the impact of load-redistribution attacks on VVO and verify the effectiveness of the proposed methods.
机译:分布式发电机进入分配系统(DSS)的越来越多的集成对集成高于中型中压分配系统(HMVDS)的稳定运行和网络物理安全性构成了重大挑战,使Volt-VAR优化(VVO)易受负载再分配攻击的攻击。这项研究专注于VVO,以伴随着负载再分配攻击。负载 - 再分配攻击下的VVO被制定为单个领导者 - 多跟随器双级混合整数线性编程(BMILP)模型,捕获攻击者和DS运算符之间的交互。攻击者在上层旨在通过负载再分配攻击最大化电压偏差和负载缩减,而DS运算符旨在最小化较低级别的电压偏差。基于放松的双层重构和分解算法旨在通过用多个线性规划下级问题替换每个混合整数线性编程的下级问题来解决BMILP模型,并使用非负松弛变量和惩罚功能来确保等价。最后,进行了关于构建的HMVDS和实际HMVDS的案例研究,以说明负载再分配攻击对VVO的影响,并验证所提出的方法的有效性。

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