Multiple Model Adaptive Control of Valve Flow Using Event-Triggered Switching

Georgios Lyrnpcropoulos, M. Borrello, Nikoletta Margari
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引用次数: 2

Abstract

Valve flow control has always attracted research due to the wide breadth of applications it offers. Its use in advanced applications, such as air and oxygen flow control for neonatal ventilation has demanded higher specifications for accuracy and performance. In this paper, we propose a model reference adaptive control scheme for valve flow control of ventilators which utilizes multiple models that correspond to different operating points of the valve. Switching between models operates according to level of flow using a smoothing mechanism. In addition, a inverse hysteresis model is used to attenuate the hysteresis effect. The scheme has been implemented and tested on multiple valves and using several accuracy and stress tests, providing excellent results.
基于事件触发开关的阀流量多模型自适应控制
由于其广泛的应用,阀门流量控制一直吸引着人们的研究。它在先进应用中的使用,如新生儿通气的空气和氧气流量控制,对准确性和性能要求更高。本文提出了一种通风机阀门流量控制的模型参考自适应控制方案,该方案利用多个模型来对应阀门的不同工作点。根据使用平滑机制的流量水平在模型之间切换。此外,还采用了逆迟滞模型来减弱迟滞效应。该方案已在多个阀门上实施和测试,并进行了多次精度和压力测试,取得了良好的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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