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首页> 外文期刊>Journal of Hydraulic Engineering >Cramer-Rao Lower Bound for Performance Analysis of Leak Detection
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Cramer-Rao Lower Bound for Performance Analysis of Leak Detection

机译:Cramer-Rao下界用于泄漏检测的性能分析

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Due to random noise in real measurements, leak detection (estimation of leak size and location) is subject to a degree of uncertainty. This paper provides a framework to investigate the lower bound of the variance of a leak's variable estimation and delineates the parameters upon which this lower bound depend. This is accomplished by applying the Cramer-Rao lower bound (CRLB) principle to the leak detection problem. For a given data set, CRLB gives the minimum mean square error of any unbiased estimator. The CRLB is evaluated using the Fisher information, which is evaluated from direct differentiation of the water-hammer characteristics equations. The results show that the CRLB of the leak-size estimate increases with time of closure and noise level but reduces with the duration of the measured signal. It is also shown that the CRLB is instrumental in the systematic design of efficient transient tests for leak detection. The error of leak-size estimates rises remarkably with setting distances between consecutive potential leaks of less than half the minimum wavelength of the probing signal. More conclusions are drawn on appropriate mesh-size for inverse transient analysis (ITA), maximum possible accuracy in successful localization, and its probability subject to the physical situation's parameters.
机译:由于实际测量中的随机噪声,泄漏检测(泄漏大小和位置的估计)存在一定程度的不确定性。本文提供了一个框架来研究泄漏变量估计的方差的下限,并描绘出该下限所依赖的参数。这是通过将Cramer-Rao下限(CRLB)原理应用于泄漏检测问题来实现的。对于给定的数据集,CRLB给出任何无偏估计量的最小均方误差。 CRLB是使用Fisher信息评估的,该信息是根据水锤特性方程式的直接微分来评估的。结果表明,泄漏量估计值的CRLB随闭合时间和噪声水平的增加而增加,但随被测信号的持续时间而减小。还表明,CRLB在用于泄漏检测的有效瞬态测试的系统设计中发挥了作用。泄漏大小估计的误差随着连续的潜在泄漏之间的设置距离小于探测信号最小波长的一半而显着增加。对于逆向瞬态分析(ITA)的适当网格大小,成功定位的最大可能精度以及其受物理情况参数影响的可能性,可以得出更多结论。

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