时间反转在复杂布线系统多载波反射在线诊断中的应用

Wafa Ben Hassen, M. Kafal, E. Cabanillas
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引用次数: 4

摘要

在布线网络中,在线诊断的目的是在带电电缆正常运行的同时,对其故障进行检测和定位。在这种情况下,基于反射法的多载波反射法(Multi-carrier Reftectometry, MCR)不仅成功地完成了这项任务,而且还允许控制信号带宽,从而避免误报。然而,由于布线系统的衰减、耦合和网络拓扑的复杂性,该系统存在信号丢失的问题。另一方面,时间反转(TR)信号处理最近被证明可以有效地用于线诊断,随着网络响应复杂性的增加和更高的检测增益,它可以提高性能。本文提出了一种TR多载波反射法(TRMCR)中TR和MCR的融合方法,旨在最大限度地提高在线诊断的覆盖率。仿真和实验结果表明,与标准MCR相比,TRMCR允许在被测网络(NUT)中检测到的阻抗不连续处增加峰值的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time Reversal Applied to Multi-Carrier Reflectometry for On-line Diagnosis in Complex Wiring Systems
In wiring networks, on-line diagnosis aims at detecting and locating faults in live cables concurrently to their normal operation. Within this context, Multi-carrier Reftectometry (MCR), a reftectometry based method, not only succeeded in this mission but also permitted controlling the signal bandwidth and thus avoiding false alarms. However, it has shown to suffer from signal loss related to wiring system's attenuation, coupling and network-topology complexity. On the other hand, Time Reversal (TR) signal processing recently adapted with efficiency to wire diagnosis, has proven to boost the performance with an increased network response's complexity accompanied with a higher detection gain. In this paper, we propose a fusion between TR and MCR in a TR Multi-Carrier Reflectometry (TRMCR) method aiming at maximizing the coverage of the online diagnosis. Simulation and experimental results demonstrate that TRMCR permits to increase the peak's signature at detected impedance discontinuities in a network under test (NUT) when compared to what the standard MCR produce.
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