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This paper introduces a mobile human airbag system designed for fall protection for the elderly. A Micro Inertial Measurement Unit (IMU) of 56 mm \, \, 23 mm \, \, 15 mm in size is built. This unit consists of three dimensional MEMS accelerometers, gyroscopes, a Bluetooth module and a Micro Controller Unit (MCU). It records human motion information, and, through the analysis of falls using a high-speed camera, a lateral fall can be determined by gyro threshold. A human motion database that includes falls and other normal motions (walking, running, etc. ) is set up. Using a support vector machine (SVM) training process, we can classify falls and other normal motions successfully with a SVM filter. Based on the SVM filter, an embedded digital signal processing (DSP) system is developed for real-time fall detection. In addition, a smart mechanical airbag deployment system is finalized. The response time for the mechanical trigger is 0. 133 s, which allows enough time for compressed air to be released before a person falls to the ground. The integrated system is tested and the feasibility of the airbag system for real-time fall protection is demonstrated.
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Guangyi Shi
Peking University
Cheung Shing Chan
Chinese University of Hong Kong
Wen J. Li
Hess (United States)
IEEE Sensors Journal
Peking University
Chinese University of Hong Kong
Shenzhen University
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Shi et al. (Mon,) studied this question.
synapsesocial.com/papers/6a1e75bc38ac63281c952568 — DOI: https://doi.org/10.1109/jsen.2008.2012212