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首页> 外文期刊>Universal Journal of Control and Automation >Modelling and Controller Design for Temperature Control of Power Plant Heat Exchanger
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Modelling and Controller Design for Temperature Control of Power Plant Heat Exchanger

机译:电厂换热器温度控制的建模与控制器设计

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摘要

Power Plant Heat exchanger is widely used in chemical and petroleum plants because it can sustain wide range of temperature and pressure. Heat exchanger is a high nonlinearity and poor dynamics plant; therefore it is complex to model and difficult to control its dynamics. In this paper two types of heat exchanger model and controller are applied for selecting suitable model and controller. First model is called (Physical model) and derived using real parameter of heat exchanger plant. Second, a Second Order Plus Dead Time (SOPDT model) that is derived from the response of heat exchanger. While the controllers are consisted of fuzzy proportional derivative (FPD) controller and proportional integral derivative (PID) controller and applied to the model and their responses are compared with the existing PID controller. The PID controller response based on Physical model gives similar response of existing PID controller based real heat exchanger plant in comparison with SOPDT model. That means the Physical model is able to represent the heat exchanger plant dynamics more accurately than SOPDT model. For the controller, the FPD control gives a slight enhancement based on SOPDT model. Therefore, FPD controller is more suitable than PID controller.
机译:发电厂热交换器由于可以承受广泛的温度和压力,因此广泛用于化工厂和石油工厂。换热器是一个非线性度高,动力学性能差的工厂。因此,建模复杂且难以控制其动力学。本文采用两种类型的换热器模型和控制器来选择合适的模型和控制器。第一个模型称为(物理模型),并使用热交换器工厂的实际参数得出。其次,从换热器的响应中得出二阶加死区时间(SOPDT模型)。控制器由模糊比例微分(FPD)控制器和比例积分微分(PID)控制器组成,并应用于模型,并将其响应与现有的PID控制器进行比较。与SOPDT模型相比,基于物理模型的PID控制器响应给出了与现有基于PID控制器的实际热交换器工厂相似的响应。这意味着,物理模型比SOPDT模型能够更准确地表示热交换器的动态。对于控制器,FPD控制在SOPDT模型的基础上进行了一些改进。因此,FPD控制器比PID控制器更适合。

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