核蒸汽发生器液位控制采用神经网络自整定二自由度PID控制器

Dong Hwa Kim
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引用次数: 14

摘要

本文研究了某核电站蒸汽发生器的液位控制问题。由于给水速率、给水温度、主蒸汽流量、冷却剂温度等多种扰动引起的膨胀和收缩,使核蒸汽发生器液位难以有效控制。迄今为止,PI控制器一直被用于液位控制,因为它具有简单的控制算法和在核电厂上被证明的优点。然而,由于在低功率和启动过程中存在稳定性控制问题,因此只有经验丰富的操作人员才能在这些过程中操作。训练操作员需要大量的时间和昂贵的模拟器。除了研究这一问题外,本文还通过对某核电站蒸汽发生器模型的仿真和实验,研究了用神经网络对2自由度PID控制器的整定问题。仿真结果揭示了控制器整定在核蒸汽发生器液位控制中的重要性,并在实验蒸汽发生器上给出了减少膨胀和收缩的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear steam generator level control by a neural network-tuning 2-DOF PID controller
This paper focuses on the level control of a steam generator in a nuclear power plant. It is very difficult to effectively control the level of the nuclear steam generator, because of the swelling and shrinking caused by many kinds of disturbances, such as feed water rate, feed water temperature, main steam flow rate, and coolant temperature. Up to the present time, the PI controller has been used for the level control, owing to the easy control algorithms and the advantage which have been proven on the nuclear power plant. However, since there are problems with stability control during low power and start-up, only a highly experienced operator can operate during those procedures. A great deal of time and an expensive simulator is needed for the training of an operator. In addition to studying this problem, this paper has studied the tuning of a 2-DOF PID (two-degrees of freedom PID) controller by a neural network in the level control of the steam generator of a nuclear power plant, through the simulation and the experimentation of the model steam generator. Results obtained by simulation reveal the importance of the controller tuning in nuclear steam generator level control, and results obtained on the experimental steam generator suggest methods which can be used to reduce swelling and shrinking.
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