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An optimal interval type-2 fuzzy logic control based closed-loop drug administration to regulate the mean arterial blood pressure

机译:基于闭环药物施用的最佳间隔型模糊逻辑控制,调节平均动脉血压

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摘要

Background and Objective: The main aim of this work is to present an optimal and robust controller design in order to improve the drug infusion to the automatic control of mean arterial blood pressure in conditions like critically-ill or post-operative or anaesthesia administration. The physiological systems also have uncertainty issues such as parameter variations with time or external disturbances and noise. Therefore, a controlled drug administration is necessary to regulate the mean arterial blood pressure of a person during surgery/observation. Over the years, the proportional-integral-derivative (PID) controller is the most commonly used controller in industries due to its easy structure and simplicity. However, this controller does not meet the desired performance with the complex and uncertain plants. Therefore, a robust controller is required to regulate the physiological variables that are uncertain in nature and can affect the human life.
机译:背景和目的:这项工作的主要目的是提供最佳和稳健的控制器设计,以改善药物输注在批判性或术后或麻醉后给药等条件下的平均动脉血压自动控制。 生理系统还具有不确定性问题,例如具有时间或外部干扰和噪声的参数变化。 因此,必须在手术/观察期间调节人类平均动脉血压所必需的受控药物施用。 多年来,由于其易于结构和简单性,比例积分衍生物(PID)控制器是行业中最常用的控制器。 然而,该控制器不符合复杂和不确定的植物所需的性能。 因此,需要一种强大的控制器来调节本质上不确定的生理变量,并且会影响人类的生命。

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