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Adaptive PI-Control of Superheat in a Refrigeration System

机译:制冷系统过热的自适应PI控制

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This paper describes adaptive control of the superheat in a refrigeration system. Traditionally, the superheat is PI controlled using constant gain and integration time, which often will have a conservative tuning. On-line update of the controller parameters in self-tuning scheme by identification in open loop or by using external signals in closed loop is cumbersome. In this work a method using PI controllers with shifting parameters in a bumpless set-up has been used for finding better parameters. Each controller is used in a certain time interval and ISE (Integrated Squared Error) is calculated as a measure for the quality. This is used in a gradient method to increase the performance. The improved PI controller gives the possibility to optimise the superheat reference via an additional control loop. The controllers are designed and tested in a laboratory set-up. The performance of the shifting adaptive controller turns out to have a better performance than a fixed parameter PI controller.
机译:本文描述了制冷系统中过热的自适应控制。传统上,过热是使用恒定增益和积分时间进行PI控制的,通常会进行保守调整。在自整定方案中,通过在开环中进行标识或在闭环中使用外部信号来在线更新控制器参数非常麻烦。在这项工作中,已使用一种在无扰动设置中使用带有移位参数的PI控制器的方法来查找更好的参数。在一定的时间间隔内使用每个控制器,并计算ISE(积分平方误差)作为衡量质量的标准。在梯度方法中使用它来提高性能。改进的PI控制器可通过附加控制回路优化过热参考。控制器是在实验室中设计和测试的。事实证明,变速自适应控制器的性能比固定参数PI控制器的性能更好。

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