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Digital Signal Processing Methods for Safety Systems Employed in Nuclear Power Industry.

机译:核电行业安全系统的数字信号处理方法。

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摘要

Some of the major safety concerns in the nuclear power industry focus on the readiness of nuclear power plant safety systems to respond to an abnormal event, the security of special nuclear materials in used nuclear fuels, and the need for physical security to protect personnel and reactor safety systems from an act of terror.;Routine maintenance and tests of all nuclear reactor safety systems are performed on a regular basis to confirm the ability of these systems to operate as expected. However, these tests do not determine the reliability of these safety systems and whether the systems will perform for the duration of an accident and whether they will perform their tasks without failure after being engaged. This research has investigated the progression of spindle asynchronous error motion determined from spindle accelerations to predict bearings failure onset. This method could be applied to coolant pumps that are essential components of emergency core cooling systems at all nuclear power plants.;Recent security upgrades mandated by the Nuclear Regulatory Commission and the Department of Homeland Security have resulted in implementation of multiple physical security barriers around all of the commercial and research nuclear reactors in the United States. A second part of this research attempts to address an increased concern about illegal trafficking of Special Nuclear Materials (SNM). This research describes a multi element scintillation detector system designed for non -- invasive (passive) gamma ray surveillance for concealed SNM that may be within an area or sealed in a package, vehicle or shipping container. Detection capabilities of the system were greatly enhanced through digital signal processing, which allows the combination of two very powerful techniques: 1) Compton Suppression (CS) and 2) Pulse Shape Discrimination (PSD) with less reliance on complicated analog instrumentation.
机译:核电工业中的一些主要安全问题集中在核电厂安全系统对异常事件做出响应的就绪性,用过的核燃料中特殊核材料的安全性以及为保护人员和反应堆而需要的物理安全性方面定期对所有核反应堆安全系统进行日常维护和测试,以确认这些系统按预期运行的能力。但是,这些测试不能确定这些安全系统的可靠性,也不能确定系统在事故持续时间内是否能够正常运行,以及在投入使用后是否能够在无故障的情况下完成其任务。这项研究调查了由主轴加速度确定的主轴异步误差运动的进程,以预测轴承的故障发作。该方法可应用于所有核电厂紧急堆芯冷却系统必不可少的冷却液泵。核监管委员会和国土安全部要求的最新安全性升级导致在所有周围实施了多个物理安全屏障美国的商业和研究型核反应堆。这项研究的第二部分试图解决人们对非法贩运特殊核材料(SNM)的担忧。这项研究描述了一种多元素闪烁探测器系统,该系统设计用于隐蔽SNM的非侵入性(被动)伽马射线监视,该隐匿SNM可能在某个区域内或密封在包装,车辆或运输集装箱中。通过数字信号处理,系统的检测能力得到了极大的增强,可以将两种非常强大的技术结合起来:1)康普顿抑制(CS)和2)脉冲形状识别(PSD),而对复杂的模拟仪器的依赖则更少。

著录项

  • 作者

    Popescu, George.;

  • 作者单位

    University of Cincinnati.;

  • 授予单位 University of Cincinnati.;
  • 学科 Nuclear engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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