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Efficient Algorithms for p-Self-Protection Problem in Static Wireless Sensor Networks

机译:静态无线传感器网络中p自保护问题的高效算法

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摘要

Wireless sensor networks have been widely used in many surveillance applications. Due to the importance of sensor nodes in such applications, certain level of protection need to be provided to them. We study the self protection problem for static wireless sensor networks in this paper. Self protection problem focuses on using sensor nodes to provide protection to themselves instead of the target objects or certain target area, so that the sensor nodes can resist the attacks targeting on them directly. A wireless sensor network is p-self-protected, if at any moment, for any wireless sensor (active or non-active), there are at least p active sensors that can monitor it. The problem finding minimum p-self-protection is NP-complete and no efficient self protection algorithms have been proposed. In this paper, we provide efficient centralized and distributed algorithms with constant approximation ratio for minimum p-self-protection problem in sensor networks with either homogeneous or heterogeneous sensing radius. In addition, we design efficient distributed algorithms to not only achieve p-self-protection but also maintain the connectivity of all active sensors. Our simulation confirms the performances of proposed algorithms.
机译:无线传感器网络已广泛用于许多监视应用中。由于传感器节点在此类应用中的重要性,因此需要为其提供一定程度的保护。本文研究静态无线传感器网络的自我保护问题。自我保护问题的重点是使用传感器节点而不是目标对象或某些目标区域为自身提供保护,以便传感器节点可以直接抵抗针对它们的攻击。无线传感器网络是p自我保护的,如果在任何时候,对于任何无线传感器(活动或非活动),至少有p个活动传感器可以对其进行监视。发现最小的p-自我保护的问题是NP完全的,并且没有提出有效的自我保护算法。在本文中,我们提供了有效的集中式和分布式算法,该算法具有恒定的近似比率,以解决具有相同或不同感应半径的传感器网络中的最小p自保护问题。此外,我们设计了高效的分布式算法,不仅可以实现p自我保护,还可以保持所有有源传感器的连通性。我们的仿真证实了所提出算法的性能。

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