人工呼吸器的拓扑优化与控制设计

K. Mosquera-Cordero, M. Amaya-Pinos, L. Calle-Arévalo, J. Zambrano-Abad, M. Carpio-Alemán
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引用次数: 0

摘要

自2020年初以来,整个世界都受到Covid-19的影响,造成数百万人感染和死亡,老年人是受影响最严重的人群。像世界上许多其他国家一样,厄瓜多尔已经显示出面对这种威胁的供应短缺。在此背景下,本文展示了一种用3D打印材料构建的压力循环人工呼吸机替代方案。该程序包括结构分析仿真、机械结构拓扑优化和人工肺袋内气压控制的实现。本研究的结果表明,提出的人工通风机结构设计可以减少建筑材料的数量,从而减少制造时间,而不会影响其性能的有效性。此外,对控制系统的响应分析表明,经典PID控制器可以正确地控制通风机的压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topology Optimization and Control Design of an Artificial Respirator
Since the beginning of 2020, the entire world has been affected by Covid-19, which has caused millions of infections and deaths, with older adults being the most affected population. Like many other countries in the world, Ecuador has shown a deficit of supplies to face this threat. Within this context, this article shows a pressure-cycled artificial ventilator alternative constructed with 3D printing material. The procedure includes a structural analysis simulation, the topology optimization of the mechanical structure and the implementation of air pressure control in the artificial lung bag. The results of this research shows that the proposed structural design for the artificial ventilator allows reducing the amount of construction material and therefore the manufacturing time, without affecting the effectiveness of its performance. In addition, analysis of the control system responses evidences that a classical PID controller allows the correct performance of the ventilator pressure control.
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