Wearable wireless body area network for aeronautical applications

T. Przybylski, P. Froehle, Christopher McDonald, M. Mirzaee, S. Noghanian, R. Fazel-Rezai
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引用次数: 3

Abstract

The desire for advancement of human space exploration brings the need for an adaptive, next generation health monitoring system in the form of a Wireless Body Area Network (WBAN). The application of wireless networks has yet to be utilized in the space industry allowing for the untapped potential for next generation devices that increase mission awareness and safety. WBAN was designed to meet the requirements of space exploration, allowing for ease of movement and flexibility through non-restrictive components and a wireless network. The proposed system consists of two subsystems: a sensor network made up of a microcontroller, a Bluetooth transceiver, and an external antenna; and an Android device used as the data monitoring system. The Bluetooth transceiver transmits data from the sensors, via the external flexible antenna to the Android tablet. The data is collected and displayed via a custom-built application on the tablet. The application also keeps and monitors the total power of the system allowing for continuous vital sign monitoring.
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用于航空应用的可穿戴无线体域网络
人类空间探索的进步带来了对无线体域网络(WBAN)形式的自适应下一代健康监测系统的需求。无线网络的应用尚未在空间工业中得到利用,从而为提高任务意识和安全性的下一代设备提供了尚未开发的潜力。无线宽带网络的设计是为了满足空间探索的要求,允许通过非限制性组件和无线网络方便移动和灵活。该系统由两个子系统组成:由微控制器、蓝牙收发器和外部天线组成的传感器网络;以及作为数据监控系统的Android设备。蓝牙收发器通过外部柔性天线将传感器的数据传输到Android平板电脑。数据通过平板电脑上的定制应用程序收集和显示。该应用程序还保持和监测系统的总功率,允许连续的生命体征监测。
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