首页> 外文会议>International topical meeting on nuclear plant instrumentation, control, and human-machine interface technologies >MONITORING THE LEVEL DYNAMICS IN A HYDRAULIC LOOP THROUGH THE USE OF A COAXIAL REFLECTOMETRIC SENSOR AND A LOW PULSATILITY PUMP
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MONITORING THE LEVEL DYNAMICS IN A HYDRAULIC LOOP THROUGH THE USE OF A COAXIAL REFLECTOMETRIC SENSOR AND A LOW PULSATILITY PUMP

机译:通过使用同轴反射光谱传感器和低脉动泵来监测液压回路中的液力动力学

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Control systems design for nuclear facilities may be a challenging task when the optimal choice of sensors is concerned. Also, the level control of a simple hydraulic loop component may offer short/medium-term transient level dynamics. This requires several features, such as a fast sensor response, on-line measurement and analysis of some non-linearity that are crucial for its control. In this paper, a theoretical and experimental study is proposed, concerning the application of the Time Domain Reflectometric technique to a hydraulic loop presenting the above-mentioned strict features. A second-order nonlinear ODE controlling the system level dynamics is theoretically analyzed, and experimentally observed through the use of a coaxial reflectometric sensor and a novel pump with low pulsatility flux.
机译:当考虑传感器的最佳选择时,核设施的控制系统设计可能是一项艰巨的任务。同样,简单的液压回路组件的液位控制可以提供短期/中期的瞬态液位动态特性。这需要多种功能,例如快速的传感器响应,在线测量以及对某些非线性的分析,这些对于控制其至关重要。本文就时域反射测量技术在具有上述严格特征的液压回路中的应用提出了理论和实验研究。理论上分析了控制系统级动力学的二阶非线性ODE,并通过使用同轴反射传感器和新型低​​脉动通量的泵进行了实验观察。

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