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An optimization model for power grid fortification to maximize attack immunity

机译:电网设防优化模型以最大程度地提高攻击抵抗力

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This paper studies the problem of allocating fortification resources in an electric power grid with the aim of maximizing its immunity against malicious attacks. An attacker of the grid allocates his attack resource budget to destroy targeted transmission lines in the network. The attacker is successful if the power load shed after attack exceeds a specified permissible level. On the other hand, the grid defender allocates his fortification budget to the lines in a manner to deter as many such attacks as possible, in particular to maximize the budget required by the attacker to be successful This is termed as the attack inutrunity in our work. We formulate this as a two-stage optimization problem that generalizes several of other network fortification problems and propose an exact algorithm for its solution. Numerical studies are performed using test instances from the literature. A graphical representation of the results is also proposed as a tool for analyzing the immunity of power grids under malicious attacks.
机译:本文研究了在电网中分配防御资源的问题,目的是最大限度地提高其防御恶意攻击的能力。网格的攻击者分配其攻击资源预算以销毁网络中的目标传输线。如果攻击后释放的功率超过指定的允许水平,则攻击者成功。另一方面,网格防御者将防御工事预算分配给各行,以阻止尽可能多的此类攻击,特别是使攻击者成功获得成功所需的预算最大化。这被称为我们工作中的攻击失误。我们将此公式化为两阶段优化问题,该问题概括了其他一些网络防御问题,并提出了一种精确的算法来解决该问题。使用文献中的测试实例进行数值研究。还提出了结果的图形表示,作为分析恶意攻击下电网抗扰性的工具。

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