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Binary time domain reflectometry: a simpler and more efficient way of diagnosing defects in wired networks

机译:二进制时域反射测量仪:一种更简单且更有效的诊断有线网络缺陷的方式

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Today, the most efficient methods for wired networks diagnosis are based on reflectometry: they can detect hard (i.e. open/short circuits) and soft defects (i.e. insulation damage, hot spots or rust), either permanent or intermittent, and provide their location. This is an important information for maintenance operators who can focus repair in a shorter time. The possibility of monitoring the wires health using specifically designed reflectometry methods offers interesting opportunities for preventive maintenance. Electronic implementations of such methods are mostly based on the use of programmable logic digital systems, such as FPGA or microcontrollers, both for probe signals generation and measured signals analysis. But the cables have a pure analog behavior, therefore these systems are connected to additional costly devices such as digital to analog and analog to digital converters. These components have a direct impact on the systems performances: a higher sampling rate means a better defects location accuracy, but implies a higher cost. A higher resolution enables to detect lower signature defects but requires more memory and computing power for data processing. This paper presents a new purely binary reflectometry method using a simpler electronic architecture and quicker signal analysis, and showing better performances than standard methods (in terms of defect location accuracy, processing speed and memory requirement) at a lower cost. Equivalent detection performances are shown, and the new simplified electronic architecture enables to take advantage of all the digital resources, such as a higher clock frequency than that of most available converters, thus naturally improving the location accuracy. As the conversion components are not required anymore, the consumption and cost of the system is drastically reduced. Performance comparison is presented and an innovative process for the reflectogram computation is introduced, which enables a drastic reduction of the computing power needs and a quicker reflectogram update.
机译:今天,有线网络诊断的最有效方法基于反射测量:它们可以检测硬(即开放/短路)和软缺陷(即绝缘损坏,热点或锈蚀),永久性或间歇性,并提供其位置。这是维护运营商的重要信息,他们可以在较短的时间内关注维修。使用专门设计的反射方法监控电线健康的可能性为预防性维护提供了有趣的机会。这种方法的电子实现主要基于使用可编程逻辑数字系统,例如FPGA或微控制器,用于探测信号产生和测量信号分析。但电缆具有纯模拟行为,因此这些系统连接到额外的昂贵设备,例如数字到模拟和模拟与数字转换器。这些组件对系统性能的直接影响:更高的采样率意味着更好的缺陷位置精度,但意味着更高的成本。更高的分辨率使能够检测较低的签名缺陷,但需要更多的存储器和计算能力进行数据处理。本文介绍了一种新的纯粹二进制反射测量方法,使用更简单的电子架构和更快的信号分析,并且比标准方法(在缺陷位置精度,处理速度和内存要求方面)以较低的成本显示更好的性能。示出了等效的检测性能,并且新的简化电子架构能够利用所有数字资源,例如更高的时钟频率比大多数可用转换器更高的数字资源,从而自然地提高了位置精度。由于不需要转换组件,系统的消耗和成本急剧减少。提出了性能比较,引入了对反射图计算的创新过程,这使得计算功率需求和更快的反射图更新。

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