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EMBEDDED SENSING AND ACTUATION FOR HELMETS CO2 LEVELS CONTROL

机译:头盔二氧化碳水平控制的嵌入式感应和操作

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The paper reports on the development and evaluation of a simple closed loop solution for controlling the CO2 levels within small enclosed environments, such as Explosive Ordnance Disposal (EOD) protective suit helmets. Based on a detailed analysis of the helmet environment during bomb disposal missions, the solution proposed automates the current manually controlled fan integrated within the helmet to achieve an effective, timely and energy efficient, control system.Whilst the paper and its supporting experimental work focus on the particular case study of operatives wearing EOD suit helmets, the methods proposed and the control system development methodology are generic and directly applicable to a wide class of helmet usage scenarios.The main contributions in the paper are as follows: i) the design and implementation of an empirical helmet model based on data collected with a bespoke helmet embedded instrument developed by the authors; and ii) the production of a simple but effective fan air flow control algorithm for containing CO2 concentration exposure during missions, and an associated evaluation simulator/test bed. The resulting closed loop, automated sensing and actuation system extends the otherwise short fan battery lifetime to cover entire missions, delivers a healthy breathing environment for the operative and minimises noise disruption associated with the use of the fan. The control algorithm outperforms fixed airflow settings in terms of energy efficiency.
机译:该论文报告了一种简单的闭环解决方案的开发和评估,该解决方案用于控制小型封闭环境中的二氧化碳水平,例如爆炸物处置(EOD)防护服头盔。该解决方案基于对炸弹处理任务期间头盔环境的详细分析,提出了将头盔中集成的当前手动控制风扇自动化的方法,以实现有效,及时和节能的控制系统。针对戴EOD头盔的操作员的特殊案例研究,所提出的方法和控制系统的开发方法是通用的,可直接适用于各种头盔使用场景。本文的主要贡献如下:i)设计和实现基于由作者开发的定制头盔嵌入式仪器收集的数据的经验头盔模型; ii)制作一种简单但有效的风扇气流控制算法,以控制任务期间的CO2浓度暴露,并提供相关的评估模拟器/测试台。由此产生的闭环,自动感应和驱动系统延长了风扇电池的使用寿命,从而覆盖了整个任务,为操作人员提供了健康的呼吸环境,并将与风扇使用相关的噪音干扰降至最低。就能源效率而言,控制算法的性能优于固定气流设置。

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