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Fault Detection and Identification for Sensor Channels in Steam Generator Level Control Loops

机译:蒸汽发生器液位控制回路中传感器通道的故障检测和识别

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Faults in sensor channels as a result of calibration errors or a bias in transmitters can lead to various safety and operational issues in nuclear power plants, such as reduced trip margins, jeopardized performance, or creating a false sense of security regarding the health of the plant operation. Unfortunately, such faults are difficult to detect, specifically when the sensors are part of a closed-loop system, which has a tendency to reduce or to mask the effects of the fault through feedback control actions during a dynamic transient process. Detecting these types of faults within a steam generator (SG) level control system is investigated in this paper. It is shown that the tools based on analytical redundancy can be very effective in this case. Using a typical SG level control system as a reference plant, specific analytical redundancy formulations are derived. Three sensor fault scenarios have been considered in detail. It has been shown, by simulation and analysis, that the proposed technique can effectively detect the sensor faults that are otherwise difficult to detect.
机译:由于校准错误或变送器的偏差而导致的传感器通道故障会导致核电站的各种安全和运行问题,例如跳闸裕度降低,性能受到损害或对工厂健康产生虚假的安全感操作。不幸的是,这样的故障很难检测到,特别是当传感器是闭环系统的一部分时,在动态瞬态过程中,这种趋势有通过反馈控制动作减少或掩盖故障影响的趋势。本文研究了在蒸汽发生器(SG)液位控制系统中检测这些类型的故障。结果表明,在这种情况下,基于分析冗余的工具可能非常有效。使用典型的SG液位控制系统作为参考设备,可以得出特定的分析冗余公式。已经详细考虑了三种传感器故障情况。通过仿真和分析已经表明,所提出的技术可以有效地检测否则难以检测的传感器故障。

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