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首页> 外文期刊>IEEE sensors journal >Fuzzy Analytic Hierarchy Process-Based Balanced Topology Control of Wireless Sensor Networks for Machine Vibration Monitoring
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Fuzzy Analytic Hierarchy Process-Based Balanced Topology Control of Wireless Sensor Networks for Machine Vibration Monitoring

机译:基于模糊的分析层次基于过程的无线传感器网络的平衡拓扑控制,用于机器振动监测

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摘要

Detection of vibration by wireless sensor networks (WSNs) is an effective approach for monitoring mechanical equipment. Particularly for large-scale mechanical equipment, multi-hop topology is necessary. However, link blocking by an unbalanced topology can significantly reduce the communication quality and the network lifetime. Motivated by the aforementioned problems, a balanced network topology control method based on the fuzzy analytic hierarchy process (FAHP) is proposed. Four criteria, including residual energy, node degree, node depth, and transmission power, are considered to construct the network topology. A fuzzy judgment matrix is constructed to calculate the weight vector composed of the weight of each criterion. For each node, the optimal associating decision factors are calculated using the weight vector to construct the network topology. The experiments demonstrate that the proposed method can ensure robust link quality, improve data throughput effectively, and reduce power consumption by at least 400 mJ during each monitoring cycle, which can extend the network lifetime effectively.
机译:通过无线传感器网络(WSN)检测振动是监控机械设备的有效方法。特别是对于大型机械设备,需要多跳拓扑。但是,通过不平衡拓扑的链路阻止可以显着降低通信质量和网络生命周期。通过上述问题,提出了一种基于模糊分析层次处理(FAHP)的平衡网络拓扑控制方法。四个标准,包括剩余能量,节点度,节点深度和传输功率,被认为构建网络拓扑。构造模糊判断矩阵以计算由每个标准的重量组成的权重向量。对于每个节点,使用权重向量来计算最佳关联判定因子来构建网络拓扑。实验表明,该方法可以确保鲁棒链路质量,有效地提高数据吞吐量,并在每个监测周期期间将功耗降低至少400 MJ,这可以有效地延长网络寿命。

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