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Attack-Resistant Sensor Localization under Realistic Wireless Signal Fading

机译:逼真的无线信号衰落下的抗攻击传感器定位

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In a decentralized sensor network, localization process relies on the integrity of participating sensors. Existence of malicious beacon nodes in the vicinity of non-beacon nodes affects this process. This paper presents a trilateration-based secure localization technique, which is capable of estimating the location of a sensor with high accuracy so long four neighbouring beacon nodes are benign, irrespective of the number of neighbouring liars and without assuming any trust model. In realistic scenarios of wireless environment where transmitted signals attenuate randomly due to fading, the liar-tolerance level of this attack-resistant technique has to be relaxed accordingly. Superiority of this technique against the state-of-the-art has been established with extensive simulation results in terms of location estimation accuracy and liar-filtering probability.
机译:在分散的传感器网络中,定位过程依赖于参与传感器的完整性。非信标节点附近存在恶意信标节点会影响此过程。本文提出了一种基于三边测量的安全定位技术,只要相邻的四个信标节点处于良性状态,而与相邻的骗子数量无关,并且无需假设任何信任模型,该技术就可以以高精度估算传感器的位置。在实际的无线环境中,由于衰落,传输的信号会随机衰减,因此必须适当放松这种抗攻击技术的说谎者容忍度。在位置估计精度和骗子过滤概率方面,已通过广泛的仿真结果证明了该技术相对于最新技术的优越性。

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