Resilience of multi-object density fusion against cyber-attacks

Lin Gao, G. Battistelli, L. Chisci
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Abstract

Recently, it has been proposed to deal with fusion of multi-object densities exploiting the minimum information loss (MIL) rule, which has shown its superiority over generalized covariance intersection (GCI) fusion whenever sensor nodes have low detection probability. On the contrary, GCI shows better performance than MIL when dense clutter is involved in the measurements. In this paper, we are going to study the behavior of multi-object fusion with MIL and, respectively, GCI rules in the situation wherein the sensor network is exposed to cyber-attacks. Both theoretical and numerical analyses demonstrate that MIL is more robust than GCI fusion when the multi-sensor system is subject to a packet substitution attack.
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多目标密度融合抵御网络攻击的弹性
近年来,人们提出了利用最小信息损失(MIL)规则处理多目标密度融合的方法,在传感器节点检测概率较低的情况下,该方法比广义协方差交集(GCI)融合更有优越性。相反,当杂波密集时,GCI比MIL表现出更好的性能。在本文中,我们将分别研究在传感器网络受到网络攻击的情况下,使用MIL和GCI规则进行多目标融合的行为。理论和数值分析均表明,当多传感器系统受到包替换攻击时,MIL比GCI融合具有更强的鲁棒性。
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