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Study on Nonlinear Heat Exchanger Control System of Heat Conduction Oil of Vessel

机译:容器导热油非线性换热器控制系统研究

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In this paper, the differential equation of heat exchanger system is deduced according to the working principle of a vessel's heat conduction oil system. Taking the temperatures of heat conduction oil and heavy oil as the state variables, a multi-input coupled nonlinear heat exchanger model with the opening of the thyristor pressure regulating valve and heavy oil flow regulating solenoid valve as control inputs is established based on the analysis of the characteristics of the heat exchanger model. The model is decomposed into two systems: a single-input second-order linear system and a single-input nonlinear system. The sliding mode variable structure (SMVS) controller is obtained by affine nonlinear transformation of the nonlinear model. The experiments of the proportional-integral-differential (PID) and the SMVS control method based on KINGVIEW software platform are used to test the temperature of heat conduction oil and heavy oil. The results show that the SMVS control has advantages of small overshoot, fast response speed and strong anti-jamming capability.
机译:本文根据船舶导热油系统的工作原理推导了换热器系统的微分方程。以导热油和重油的温度为状态变量,在对导热油和重油温度进行分析的基础上,建立了以晶闸管调压阀和重油流量调节电磁阀为开端的多输入耦合非线性换热模型。热交换器模型的特征。该模型被分解为两个系统:单输入二阶线性系统和单输入非线性系统。通过对非线性模型进行仿射非线性变换得到滑模变结构(SMVS)控制器。采用基于KINGVIEW软件平台的比例积分微分(PID)实验和SMVS控制方法对导热油和重油的温度进行了测试。结果表明,SMVS控制具有超调量小,响应速度快,抗干扰能力强的优点。

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