RNL用于验证定位模型在实际wdn中的效率

Chaima Chabira, H. Bakhti, M. Bentoumi, Sabir Meftah
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引用次数: 0

摘要

配水系统(wdn)存在泄漏问题。后者可对基础设施造成破坏,而且一旦出现压力下降,水媒疾病的微生物就会通过泄漏孔传播,从而对公共卫生产生影响。为此,网络管理人员总是寻找最佳设备,以便在网络异常出现时及时发现并定位。为实现漏电检测与定位系统,设计了带压力传感器的原型电路和基于数字信号处理器(DSP)的采集系统。对特定距离进行了压力测量。采用数字滤波器进行去噪。将泄漏前后的压力值对应用于数学模型进行局部化。我们选择使用非线性回归(RNL)来确定基于预定位泄漏位置的不可测量物理参数。进行了验证测试以证明模型的有效性。在我们的研究中,发现了所用模型的分歧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RNL used for the verification of the efficiency of a localization model in a real WDNs
Water distribution systems (WDNs) suffer from leakage problems. The latter can cause damage to infrastructure and also act on public health by the penetration of microbes of waterborne diseases transmissible through the orifices of leaks as soon as a drop in pressure occurs. For this purpose, the network managers always look for the best devices to detect and locate in time the anomaly of the networks as soon as it appears. To realize a system of detection and location of leakage a prototype circuit was realized equipped with pressure sensors and a system of acquisition based on a Digital Signal Processor (DSP). Pressure measurements for specific distances were carried out. A digital filter was applied for denoising. Pairs of pressure values before and after leakage are applied to a mathematical model for localization. We opted to use nonlinear regression (RNL) for the determination of non-measurable physical parameters based on pre-localized leak positions. Validation tests are performed to demonstrate the effectiveness of the model. In our study, a divergence of the model used was found.
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