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Design and Evaluation of Algorithms for Energy Efficient and Complete Determination of Critical Nodes for Wireless Sensor Network Reliability

机译:高能效和完整确定无线传感器网络可靠性关键节点的算法的设计和评估

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A critical node (cut vertex or articulation point) in wireless sensor networks, is a node which its failure breaks the connectivity of the network. Therefore, it is crucial that critical nodes be detected and treated with caution. This paper provides two localized distributed algorithms for determining the states of nodes (critical or noncritical). The first proposed algorithm identifies most of the critical and noncritical dominator nodes from two-hop local subgraph and connected dominating set (CDS) information that limits the computational complexity to O(Delta(2)) and bit complexity to O(clog(2) n) where Delta is the maximum node degree, c is the critical node count, and n is the node count. The testbed experiments and simulation results show that this algorithm detects up to 93% of critical nodes and achieves up to 91% of state determination with low energy consumption. The second proposed algorithm, which is based on the first one, finds the states of all nodes by running a limited distributed depth-first search algorithm in unrecognized parts of the network without traversing the whole network. Comprehensive testbed experiments and simulation results reveal that, in the presence of a CDS, this algorithm finds all critical nodes with lower energy consumption than all existing algorithms.
机译:无线传感器网络中的关键节点(切点或关节点)是其故障会破坏网络连接的节点。因此,关键节点的检测和谨慎处理至关重要。本文提供了两种用于确定节点状态(关键或非关键)的局部分布式算法。首先提出的算法从两跳局部子图和连接的支配集(CDS)信息中识别出大多数关键和非关键支配者节点,这些信息将计算复杂度限制为O(Delta(2)),将比特复杂度限制为O(clog(2)) n)其中Delta是最大节点度,c是关键节点数,n是节点数。测试平台的实验和仿真结果表明,该算法可检测高达93%的关键节点,并以低能耗实现高达91%的状态确定。第二种算法是基于第一种算法的,它通过在网络的无法识别部分中运行有限的分布式深度优先搜索算法来查找所有节点的状态,而无需遍历整个网络。全面的试验台实验和仿真结果表明,在存在CDS的情况下,该算法发现所有关键节点的能耗均低于所有现有算法。

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