便携式,低成本,利用光隔离模拟传感器反馈的闭环机械通气

Sara Zulfiqar, Hamza Nadeem, Zamen Tahir, Minnaam Mazhar, K. Hasan
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引用次数: 2

摘要

本文着重于开发一种精确的、用户可调节的呼吸周期,用于患有呼吸问题的患者的机械干预。控制呼吸使用闭环系统提供,反馈路径来自两个自校准传感器,即压力传感器和流量传感器。用户通过图形用户界面(GUI)输入,显示在触摸屏模块上,将作为控制信号。正是对这些信号的反应,呼吸周期才会调整。来自传感器的原始数据是光学绝缘的,并转换为可变占空PWM信号,以实现精确,无误差的读数。周期是数字控制与广泛的设置,使其可调从病人到病人。直流柱塞式气泵,采用改进型降压变换器作调速控制器,PID整定,整定后可与同类泵替换。通过将传感器的行为建模为适当的传递函数,传感器也可以被替换。其结果是设计和制造了一种低成本、便携的原型,可用于救护车、小型医院和灾害管理,为机械通风提供容量和压力控制的空气。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Portable, Low Cost, Closed-Loop Mechanical Ventilation Using Feedback from Optically Isolated Analog Sensors
This paper focuses on the development of a precise, user-adjustable breathing cycle for mechanical intervention in patients suffering from respiratory problems. Controlled breaths are provided using a closed loop system with feedback path from two self-calibrated sensors i.e. a pressure sensor and a flowrate sensor. User-input through a Graphical User Interface (GUI), displayed on touch screen module, will act as control signals. It is in response to these signals that the breathing cycle will adjust. Raw data from sensors is optically insulated and converted into variable duty PWM signals for precise, error free readings. The cycle is digitally controlled with a wide range of settings so that it is adjustable from patient to patient. DC piston air pump, with modified buck converter as speed controller, is PID tuned and is replaceable with similar pumps after tuning. Sensors are also replaceable by modeling their behavior to appropriate transfer functions. The result is the design and making of a low-cost, portable prototype that can be used in ambulances, small hospitals and during disaster management to provide volume and pressure-controlled air for mechanical ventilation.
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