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首页> 外文期刊>International Journal of Control, Automation, and Systems >Robust IMC-PID and Parameter-varying Control Strategies for Automated Blood Pressure Regulation
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Robust IMC-PID and Parameter-varying Control Strategies for Automated Blood Pressure Regulation

机译:自动血压调节的强大IMC-PID和参数变化控制策略

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The present work focuses on comparing a robust and a parameter-varying control design approach for automatically regulating blood pressure in critical hypotensive patients using vasopressor drug infusion. Mean arterial pressure (MAP) response of a patient subject to vasoactive drugs is modeled by a first-order dynamical system with time-varying parameters and a time-varying delay in the control input which limits the implementation of conventional control techniques. Two methods are examined to address the variability and the time-varying delay of the physiological response to the drug. First, a Pade approximation is used to transform the infinite-dimensional delay problem into a finite-dimensional model represented in the form of a non-minimum phase (NMP) system. A systematic parameter-varying loop-shaping control is proposed to provide the closed-loop system with stability and tracking performance in the presence of measurement noise and disturbances. Second, an internal model control (IMC) strategy is examined to design a fixed proportional-integral-derivative (PID) controller cascaded with a lag compensator by considering the time-varying model to be a perturbed uncertain system. To account for system uncertainty, the small-gain theorem is employed by which robust stability conditions are investigated. The proposed control methods are applied to critical hypotensive patient resuscitation to regulate MAP while considering the limitations posed by the time-varying parameters of the physiological response model and the large time-varying delay. Simulation results are provided and compared to evaluate the performance of the proposed control actions under various hypotensive scenarios.
机译:本工作侧重于比较稳健和参数改变控制设计方法,用于使用血管加压剂药物输注在关键的低血压患者中自动调节血压。受血管活性药物的患者的平均动脉压(MAP)响应由具有时变参数的一阶动态系统和控制输入中的时变延迟模拟的,其限制了传统控制技术的实现。检查两种方法以解决对药物的生理反应的变异性和时变延迟。首先,梯队近似用于将无限维延迟问题转换为以非最小相位(NMP)系统的形式表示的有限维模型。提出了一种系统的参数改变环形整形控制,以提供具有稳定性和跟踪性能的闭环系统,在存在测量噪声和干扰时。其次,通过将时变模型视为扰动的不确定系统,检查内部模型控制(IMC)策略设计了用滞后补偿器级联的固定比例积分衍生物(PID)控制器。为了解释系统不确定性,采用小增益定理来研究稳健的稳定性条件。所提出的控制方法适用于关键的低血压患者复苏,以调节地图,同时考虑到生理响应模型的时变参数和较大的时变延迟所带来的限制。提供了仿真结果,并进行了比较,以评估各种低姿势场景下提出的控制行动的性能。

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