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Radio Communications Interdiction Problem under deterministic and probabilistic jamming

机译:确定性和概率性干扰下的无线电通信拦截问题

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The Radio Communications Interdiction Problem (RCIP) seeks to identify the locations of transmitters on the battlefield that will lead to a robust radio communications network by anticipating the effects of intentional radio jamming attacks used by an adversary during electronic warfare. RCIP is a sequential game defined between two opponents that target each other's military units in a conventional warfare. First, a defender locates a limited number of transmitters on the defender's side of the battlefield to optimize the relay of information among its units. After observing the locations of radio transmitters, an attacker locates a limited number of radio jammers on the attacker's side to disrupt the communication network of the defender. We formulate RCIP as a binary bilevel (max-min) programming problem, present the equivalent single level formulation, and propose an exact solution method using a decomposition scheme. We enhance the performance of the algorithm by utilizing dominance relations, preprocessing, and initial starting heuristics. To reflect a more realistic jamming representation, we also introduce the probabilistic version of RCIP where a jamming probability is associated at each receiver site as a function of the prevalent jamming to signal ratios leading to an expected coverage of receivers as an objective function. We approximate the nonlinearity in the jamming probability function using a piecewise linear convex function and solve this version by adapting the decomposition algorithm constructed for RCIP. Our extensive computational results on realistic scenarios show the efficacy of the solution approaches and provide valuable tactical insights. (C) 2019 Elsevier Ltd. All rights reserved.
机译:无线电通信拦截问题(RCIP)旨在通过预测敌方在电子战期间使用的故意无线电干扰攻击的影响,确定战场上将导致强大的无线电通信网络的发射器位置。 RCIP是在常规战争中以对方军事单位为目标的两个对手之间定义的顺序游戏。首先,防御者在战场的防御者一侧放置有限数量的发射器,以优化其单位之间的信息中继。攻击者观察到无线电发射器的位置后,会在攻击者一侧找到数量有限的无线电干扰器,以破坏防御者的通信网络。我们将RCIP公式化为二进制双级(最大-最小)编程问题,提出了等效的单级公式,并提出了使用分解方案的精确求解方法。通过利用优势关系,预处理和初始启动启发式算法,我们提高了算法的性能。为了反映更现实的干扰表示,我们还介绍了RCIP的概率版本,其中,每个接收器站点的干扰概率与普遍的干扰信号比之比成函数关系,从而导致预期的目标接收器覆盖率。我们使用分段线性凸函数来近似干扰概率函数中的非线性,并通过调整为RCIP构造的分解算法来解决该版本。我们在现实情况下的大量计算结果表明了解决方案方法的有效性,并提供了宝贵的战术见解。 (C)2019 Elsevier Ltd.保留所有权利。

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