自动袋阀面罩呼吸机无型号容积、压力循环控制

IF 1 Q4 ENGINEERING, BIOMEDICAL
Cong Toai Truong, K. H. Huynh, V. T. Duong, Huy Hung Nguyen, L. Pham, T. Nguyen
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引用次数: 8

摘要

在Covid-19大流行期间,呼吸机被许多研究人员所吸引,因为它是用于治疗严重Covid-19患者的基本设备。在低收入国家,由于价格昂贵的呼吸设备短缺,导致重症监护室无法提供照顾Covid-19患者的服务。本文试图为医疗护理中的Covid-19患者设计并实现一种适当的呼吸装置,即袋阀面罩(BVM)呼吸机,这些患者有安全运输和姑息治疗的要求。BVM呼吸机包括一个人造手动呼吸单元(AMBU)袋和用于挤压AMBU袋的桨,这在医疗援助设置中很受欢迎。BVM呼吸机需要在一个阈值气压范围内,在每个呼吸循环中以规定的容积将气流通过系统输送到患者的肺部。由于AMBU包很容易随着时间的推移而变形,因此很难建立数学模型来构建可靠的控制器。因此,我们成功地利用无模型控制(MFC)控制方法来设计带有PEEP阀和HEPA过滤器的BVM呼吸机模型的控制器。通过一些实验场景来衡量所提出的控制器对BVM呼吸机控制气流和控制气压模式的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-free volume and pressure cycled control of automatic bag valve mask ventilator
Ventilators are drawn to many researchers during the Covid-19 pandemic because it's essential equipment that's accustomed to treat severe Covid-19 patients. In low-income countries, there's a shortage of pricy respiratory devices resulting in exceeding the provision of taking care of Covid-19's patients in ICU. This paper attempts to design and implement an appropriate respiratory device referred to as a bag valve mask (BVM) ventilator for those who are Covid-19 patients in medical care, those patients have a requirement of safe transport and also palliative care. The BVM ventilator comprises a man-made manual breath unit (AMBU) bag and paddles for squeezing the AMBU bag which is popular in medical aid settings. The BVM ventilator is required to travel airflow through the system to the patient's lung with the specified volume for every breath cycle within a threshold air pressure. Since the AMBU bag is straightforward to be deformed over time, it's difficult to get mathematical modelling for constructing a reliable controller. Therefore, a model-free control (MFC) control approach is utilized successfully to style a controller for our BVM ventilator model with a PEEP valve and a HEPA filter. Some experimental scenarios are administered to gauge the effectiveness of the proposed controller for the BVM ventilator to control the airflow and control air pressure mode.
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来源期刊
AIMS Bioengineering
AIMS Bioengineering ENGINEERING, BIOMEDICAL-
自引率
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发文量
17
审稿时长
4 weeks
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