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A novel multi-scale adaptive sampling-based approach for energy saving in leak detection for WSN-based water pipelines

机译:基于WSN的水管道泄漏检测泄漏检测的新型多尺度自适应采样方法

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In this paper, we propose a novel monitoring strategy for a wireless sensor networks (WSNs)-based water pipeline network. Our strategy uses a multi-pronged approach to reduce energy consumption based on the use of two types of vibration sensors and pressure sensors, all having different energy levels, and a hierarchical adaptive sampling mechanism to determine the sampling frequency. The sampling rate of the sensors is adjusted according to the bandwidth of the vibration signal being monitored by using a wavelet-based adaptive thresholding scheme that calculates the new sampling frequency for the following cycle. In this multimodal sensing scheme, the duty-cycling approach is used for all sensors to reduce the sampling instances, such that the high-energy, high-precision (HE-HP) vibration sensors have low duty cycles, and the low-energy, low-precision (LE-LP) vibration sensors have high duty cycles. The low duty-cycling (HE-HP) vibration sensor adjusts the sampling frequency of the high duty-cycling (LE-LP) vibration sensor. The simulated test bed considered here consists of a water pipeline network which uses pressure and vibration sensors, with the latter having different energy consumptions and precision levels, at various locations in the network. This is all the more useful for energy conservation for extended monitoring. It is shown that by using the novel features of our proposed scheme, a significant reduction in energy consumption is achieved and the leak is effectively detected by the sensor node that is closest to it. Finally, both the total energy consumed by monitoring as well as the time to detect the leak by a WSN node are computed, and show the superiority of our proposed hierarchical adaptive sampling algorithm over a non-adaptive sampling approach.
机译:在本文中,我们提出了一种用于基于无线传感器网络(WSNS)的水管网络网络的新颖监视策略。我们的策略采用多管齐下的方法,根据使用两种类型的振动传感器和压力传感器,所有具有不同的能量水平,以及用于确定采样频率的分层自适应采样机制的使用。根据使用基于小波的自适应阈值控制方案来调整传感器的采样率根据通过计算以下循环计算新的采样频率的基于小波的自适应阈值方案来调整振动信号的带宽。在这种多模式传感方案中,占空比方法用于所有传感器以减少采样实例,使得高能量,高精度(HE-HP)振动传感器具有低占空比,以及低能量,低精度(LE-LP)振动传感器具有高占空比。低循环(HE-HP)振动传感器调整高循环(LE-LP)振动传感器的采样频率。这里考虑的模拟试验床由水管网络组成,该水管网络使用压力和振动传感器,后者在网络中的各个位置具有不同的能量消耗和精密电平。这对于扩展监测的节能更有用。结果表明,通过使用所提出的方案的新颖特征,实现了能量消耗的显着降低,并且最接近它的传感器节点有效地检测到泄漏。最后,计算通过监控的总能量以及通过WSN节点检测泄漏的时间,并通过非自适应采样方法显示我们所提出的分层自适应采样算法的优越性。

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