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Adaptive estimator-based dynamic sliding mode control for the water level of nuclear steam generators

机译:基于自适应估计器的核蒸汽发生器水位动态滑模控制

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摘要

Steam Generator (SG) is a crucial component of nuclear power plant. The proper water level control of a nuclear steam generator is of great importance in order to secure the sufficient cooling source of the nuclear reactor and to prevent damage of turbine blades. The water level control problem of steam generators has been a main cause of unexpected shutdowns of nuclear power plants which must be considered for plant safety and availability. The control problem is challenging, especially at low power levels due to shrink and swell phenomena and flow measurement errors. Moreover, the dynamics of steam generator vary as the power level changes. Therefore, it is necessary to improve the water level control system of SG. In this paper, an adaptive estimator-based dynamic sliding mode control method is developed for the level control problem. The proposed method exhibits the desired dynamic properties during the entire output tracking process independent of perturbations. Simulation results are presented to demonstrate the effectiveness of the proposed controller in terms of performance, robustness and stability. Simulation results confirm the improvement in transient response obtained by using the proposed controller.
机译:蒸汽发生器(SG)是核电站的重要组成部分。为了确保核反应堆有足够的冷却源并防止涡轮叶片损坏,对核蒸汽发生器进行适当的水位控制非常重要。蒸汽发生器的水位控制问题一直是核电厂意外关闭的主要原因,为确保工厂安全和可用性,必须考虑这些停机。控制问题极具挑战性,特别是在低功率水平下,由于收缩和膨胀现象以及流量测量误差而引起的。此外,蒸汽发生器的动力随着功率水平的变化而变化。因此,有必要改进SG的水位控制系统。本文针对液位控制问题,提出了一种基于自适应估计量的动态滑模控制方法。所提出的方法在整个输出跟踪过程中均表现出所需的动态特性,而与扰动无关。仿真结果表明了所提出的控制器在性能,鲁棒性和稳定性方面的有效性。仿真结果证实了使用所提出的控制器所获得的瞬态响应的改善。

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