Research on Pressure and Water Level Control of the Pressurizer for Marine Nuclear Power Plant Based on Multivariable MPC

Yajun Li, Jiong Shen, Junli Zhang
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引用次数: 1

Abstract

Good control of the pressure and water level of the pressurizer is a key prerequisite for the safe and economic operation of the pressurized water reactor (PWR) nuclear power systems. In this paper, the dynamic characteristics of pressure and water level of the pressurizer are analyzed based on marine PWR simulator firstly. It is found that its pressure and water level have obvious coupling characteristics. Then the least square method is used to identify the transfer function model of pressure and water level. A comparative analysis with the simulator data shows that the transfer model has a high degree of coincidence. Finally, a multivariable control method of pressure and water level based on MPC is proposed. The simulation results show that the method can achieve stable tracking of the target value accurately under the simultaneous change of pressure and water level setting.
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基于多变量MPC的船用核电站稳压器压力水位控制研究
稳压器压力和水位的良好控制是压水堆核电系统安全经济运行的关键前提。本文首先在船用压水堆模拟机的基础上,对稳压器的压力和水位动态特性进行了分析。发现其压力与水位具有明显的耦合特性。然后利用最小二乘法对压力和水位的传递函数模型进行辨识。与仿真数据的对比分析表明,该传递模型具有较高的符合性。最后,提出了一种基于MPC的压力和水位多变量控制方法。仿真结果表明,该方法能在压力和水位设定同时变化的情况下,实现对目标值的准确稳定跟踪。
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