[Synthesis and evaluation of the adaptive control system for the ventricular assist device by using the circulatory system simulator].

J S Feng, M Yoshizawa, H Takeda, M Miura, T Yanbe, Y Katahira, S Nitta
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Abstract

An on-line digital simulator using microcomputer system was developed to mimic the hemodynamic behavior of the human circulatory system under ventricular assist device (VAD) pumping. This simulator could calculate the response to the variation of the cardiac function or the driving mode of VAD in the real-time fashion. This simulator was used as the mock controlled object to evaluate and improve the algorithm of an adaptive controller of the drive unit for VAD. The adaptive one-step ahead controller was introduced as the precompensator for the PI-controller, which decides the outflow volume from VAD in order to follow up the reference flow value by changing the systolic duration. It was confirmed that the proposed adaptive control system improved the response speed of the VAD driving system automatically according to the variation of the controlled object.

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[基于循环系统模拟器的心室辅助装置自适应控制系统的综合与评价]。
为了模拟心室辅助装置(VAD)泵送下人体循环系统的血流动力学行为,研制了一种微机在线数字模拟器。该仿真器可以实时计算对心功能变化或VAD驱动模式的响应。以该模拟器为模拟被控对象,对VAD驱动单元自适应控制器算法进行了评价和改进。引入自适应一步超前控制器作为pi控制器的预补偿器,通过改变心脏收缩持续时间来决定VAD的流出量,从而跟踪参考流量值。验证了所提出的自适应控制系统能根据被控对象的变化自动提高VAD驱动系统的响应速度。
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