首页> 外文会议>ICONE18;International conference on nuclear engineering >SPREAD SPECTRUM TIME DOMAIN REFLECTROMETRY APPLIED TO ELECTRICAL SYSTEMS IN NUCLEAR POWER PLANTS
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SPREAD SPECTRUM TIME DOMAIN REFLECTROMETRY APPLIED TO ELECTRICAL SYSTEMS IN NUCLEAR POWER PLANTS

机译:扩频时域反射光谱法在核电厂电气系统中的应用

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A recently developed technique "Spread Spectrum Time Domain Reflectometry" (SSTDR), and supporting test devices will be adapted and tested to monitor and diagnose nuclear plant electrical systems. Current time domain reflectometry methods cannot detect or locate small faults after arc fault events, because their impedance discontinuity is too small and transient to create a measurable reflection. However, on-line, unobtrusive SSTDR can detect and locate arc and other electrical faults when the (-msec) short circuit returns a strong reflected signal. These observations have led to development of SSTDR. If SSTDR can be successfully adapted to present and future nuclear plant electrical systems, it will be possible to monitor, on-line, the integrity of the electrical system continuously and with only minor equipment modification and no consequential safety issues. An integrated circuit (IC) is under development at the University of Utah for applications in the aircraft industry that will be adapted and used for this proposed development.
机译:最近开发的技术“扩频时域反射法”(SSTDR)和支持的测试设备将进行调整和测试,以监视和诊断核电站的电气系统。当前的时域反射法无法在电弧故障事件之后检测或定位小故障,因为它们的阻抗不连续性太小且瞬变,无法产生可测量的反射。但是,当(-msec)短路返回强反射信号时,在线,通俗易懂的SSTDR可以检测并定位电弧和其他电气故障。这些观察结果导致了SSTDR的发展。如果SSTDR能够成功地适应当前和未来的核电站电气系统,则可以在线进行电气系统完整性的在线监测,而只需对设备进行很小的改动就不会造成任何安全问题。犹他大学正在开发一种集成电路(IC),该集成电路将用于飞机工业,并将其应用于拟议的开发中。

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