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A Theoretical study on the placement of microphone arrays for improving the localization accuracy of a fall

机译:麦克风阵列放置以提高跌落定位精度的理论研究

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Falling is a common health problem for elderly. To address the problem, we are currently developing an acoustic fall detection system, FADE, which automatically detects a fall and reports to the caregiver. Of great importance of the fall detection system is a low false alarm rate that can be achieved by knowing where the acoustic signal comes from. The previous work showed the sound source localization can be determined by using an 8-microphone circular array, but the accuracy varies when placing the array at different positions. To further improve the localization accuracy, a second array can be added. In this paper we investigate the variations of localization accuracy of a fall signal when one or two arrays are placed at different positions in a room. The accuracy is evaluated by the Cramér-Rao Lower Bound (CRLB). The CRLB aids the determination of the best theoretical placement of one or two arrays in a room for locating the sound source.
机译:跌倒是老年人的常见健康问题。为了解决该问题,我们目前正在开发一种声音跌倒检测系统FADE,该系统可以自动检测跌倒并向护理人员报告。跌倒检测系统最重要的是低的虚假警报率,可以通过知道声音信号来自何处来实现。先前的工作表明,声源定位可以通过使用8麦克风圆形阵列来确定,但将阵列放置在不同位置时,精度会有所不同。为了进一步提高定位精度,可以添加第二个阵列。在本文中,我们研究了当一个或两个阵列放置在房间的不同位置时,跌倒信号的定位精度的变化。准确性由Cramér-Rao下界(CRLB)评估。 CRLB有助于确定房间中一个或两个阵列的最佳理论放置位置,以定位声源。

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