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Multivariable control design for artificial blood-gas exchange with heart-lung machine support

机译:带心肺机支架的人工血气交换的多变量控制设计

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In this paper the design of a robust multivariable controller for the blood-gas exchange during cardiopulmonary-bypass with heart-lung machine support is presented. The proposed control strategy of the two-input-two-output oxygenation/decarbonisation process is divided into inner- and outercontrol loops. The inner-loop consists of input-output linearisation by state-feedback, which is extended with a Smith-like predictor for time-delay compensation and partially decouples the oxygenation exchange. The outer-control loop consists of a single linear multivariable controller, which is tuned via the ℋ-loop shaping approach for robust performance and accounts for plant, linearisation and time-delay uncertainties. The controller was tested with an experimentally validated model of blood-gas exchange over the whole operating range and shows good results with respect to reference changes and disturbance rejection. The control strategy is suggested to improve patient's safety during the cardiopulmonary bypass (CPB) procedure.
机译:在本文中,提出了一种强大的多变量控制器的设计,该控制器具有心肺机支架在体外循环期间进行血气交换。所提出的两进两出充氧/脱碳过程的控制策略分为内部控制回路和外部控制回路。内环由状态反馈的输入-输出线性化组成,该状态通过史密斯式预测器进行扩展以进行延时补偿,并使氧交换交换部分解耦。外部控制回路由单个线性多变量控制器组成,该控制器通过ℋ回路整形方法进行调整,以实现稳定的性能,并考虑了工厂,线性化和时延不确定性。该控制器通过在整个工作范围内经过实验验证的血气交换模型进行了测试,并且在参考值变化和干扰抑制方面显示出良好的结果。建议采取控制策略以提高体外循环(CPB)程序期间的患者安全性。

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