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On computing conditional fault-tolerance measures for k-covered wireless sensor networks

机译:k覆盖无线传感器网络的条件容错措施的计算

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Traditional connectivity is a graph-theoretic concept that has been widely used as a measure of the fault tolerance in wireless sensor networks. The classical connectivity, however, assumes that any subset of nodes can potentially fail at the same time, including the entire neighbor set of any node. In this paper, we propose a new measure of fault tolerance, called conditional fault-tolerance, for a class of wireless sensor networks, named k-covered wireless sensor networks (kcwsn), using the concept of forbidden faulty set. Our forbidden faulty set analysis of conditional fault-tolerance prohibits having a simultaneous failure of all the neighbors of any node. We characterize kcwsn with either homogeneous or non-homogeneous sensors based on the assumptions of random uniform distribution of the sensors and circular model of their transmission and sensing ranges. In particular, we compute the minimum node degree of kcwsn. We also prove that in general, the relationship between transmission and sensing ranges (R≥2r) does not always imply network connectivity even if sensing coverage is guaranteed. Moreover, we propose two conditional fault-tolerance measures for kcwsn: one based on the concept of conditional connectivity, the other using a new concept that is called conditional coverage. Our results prove that kcwsn can sustain a large number of sensor failures provided that the faulty set does not include the forbidden faulty set.
机译:传统的连通性是一种图论概念,已被广泛用作无线传感器网络中的容错度量。但是,经典的连接性假设节点的任何子集都可能同时发生故障,包括任何节点的整个邻居集。在本文中,我们为一类称为 k-covered无线传感器网络(< I> k cwsn),使用禁止的错误集的概念。我们对条件容错的禁止故障集分析禁止任何节点的所有邻居同时发生故障。我们基于均质或非均质传感器的假设来表征 k cwsn,这些假设基于传感器的随机均匀分布以及其传输和传感范围的圆形模型。特别是,我们计算 k cwsn的最小节点度。我们还证明,通常,即使保证了感应范围,传输范围和感应范围( R ≥2 r )之间的关系也并不总是暗示网络连接。此外,我们针对 k cwsn提出了两种条件容错措施:一种基于条件连通性的概念,另一种采用称为条件的新概念。覆盖范围。我们的结果证明 k cwsn可以承受大量的传感器故障,只要故障集不包括禁止的故障集即可。

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