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Efficient Coverage Hole Detection Algorithm Based on the Simplified Rips Complex in Wireless Sensor Networks

机译:基于无线传感器网络中简化斜面复合体的高效覆盖空穴检测算法

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The appearance of coverage holes in the network leads to transmission links being disconnected, thereby resulting in decreasing the accuracy of data. Timely detection of the coverage holes can effectively improve the quality of network service. Compared with other coverage hole detection algorithms, the algorithms based on the Rips complex have advantages of high detection accuracy without node location information, but with high complexity. This paper proposes an efficient coverage hole detection algorithm based on the simplified Rips complex to solve the problem of high complexity. First, Turan’s theorem is combined with the concept of the degree and clustering coefficient in a complex network to classify the nodes; furthermore, redundant node determination rules are designed to sleep redundant nodes. Second, according to the concept of the complete graph, redundant edge deletion rules are designed to delete redundant edges. On the basis of the above two steps, the Rips complex is simplified efficiently. Finally, from the perspective of the loop, boundary loop filtering and reduction rules are designed to achieve coverage hole detection in wireless sensor networks. Compared with the HBA and tree-based coverage hole detection algorithm, simulation results show that the proposed hole detection algorithm has lower complexity and higher accuracy and the detection accuracy of the hole area is up to 99.03%.
机译:网络中的覆盖孔的外观导致断开的传输链路,从而导致降低数据的准确性。及时检测覆盖孔可以有效地提高网络服务的质量。与其他覆盖空穴检测算法相比,基于裂口复合物的算法具有高检测精度的优点,无需节点位置信息,但具有高复杂性。本文提出了一种基于简化裂口复合物的高效覆盖空穴检测算法,以解决高复杂性的问题。首先,Turan的定理与复杂网络中的程度和聚类系数的概念相结合,以对节点进行分类;此外,冗余节点确定规则被设计为睡眠冗余节点。其次,根据完整图的概念,冗余边缘删除规则旨在删除冗余边缘。在上述两个步骤的基础上,有效简化裂口复合物。最后,从循环的角度来看,旨在在无线传感器网络中实现覆盖空穴检测的边界环路滤波和减少规则。与基于HBA和基于树的覆盖空穴检测算法相比,仿真结果表明,所提出的孔检测算法具有较低的复杂性和更高的精度,孔面积的检测精度高达99.03%。

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