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Control for Carbon Dioxide Exchange Process in a Membrane Oxygenator Using Online Self-Tuning Fuzzy-PID Controller

机译:使用在线自调整模糊PID控制器对膜氧的二氧化碳交换过程的控制

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Background and objective: The aim of this study is to evaluate the performance of conventional PID that is tuned using Zeigler-Nichols continuous cycling, Fuzzy Logic Controller (FLC) and self-tuning Fuzzy-PID (self-tuning FPID) methods to control the rate of CO2 removal from a membrane oxygenator during extracorporeal blood purification process.Methods: Sweep gas flow rate is chosen as the manipulated variable of arterial CO2 partial pressure (pCO(2)) in blood. The performance of these controllers is evaluated based on their response in controlling task and also by the calculation of three performance indices, namely Integral Absolute Error (IAE), Integral Squared Error (ISE) and Integral Time Absolute Error (ITAE). The robustness of the controllers using these tuning methods is then assessed for set point tracking and load disturbance rejection tests.Results: Results indicated that the self-tuning FPID is observed as the best controller compared to conventional PID and FLC with lower oscillation, overshoot and shorter settling time. As for quantitative measurement, self-tuning FPID outshines the other controllers with 0.854, 1.084 and 41.450 for IAE, ISE and ITAE, respectively in set point tracking task while 0.532 IAE, 0.016 ISE and 28.970 ITAE measured for load disturbance rejections.Conclusion: It can be concluded that self-tuning FPID is the best controller to be used in the automation of extracorporeal circulation control for both set point tracking and load disturbance rejection tests.
机译:背景和目的:本研究的目的是评估使用Zeigler-Nichols连续循环,模糊逻辑控制器(FLC)和自我调整模糊PID(自我调整FPID)方法进行调整的传统PID的性能来控制在体外血液净化过程中,从膜氧气中取出的CO 2速率。方法:扫描气体流速作为动脉CO2分压(PCO)的血液中的操纵变量。这些控制器的性能是基于控制任务的响应和计算三个性能指标的响应,即积分绝对误差(IAE),积分平方误差(ISE)和积分时间绝对误差(ITAE)。然后评估使用这些调谐方法的控制器的鲁棒性,用于设定点跟踪和负载干扰抑制测试。结果表明,与传统的PID和FLC相比,将自调谐FPID视为最佳控制器,具有较低振荡,过冲,过冲较短的安定时间。对于定量测量,自调谐FPID将其他控制器突出,分别为IAE,ISE和ITAE为0.854,1.084和41.450,同时为0.532 IAE,0.016 ISE和28.970 ITAE用于负载扰动抑制。结论:它可以得出结论,自调整FPID是用于在模具跟踪和负载干扰抑制测试的体外循环控制自动化中使用的最佳控制器。

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