无线
Cone(正式语言)
声学
计算机科学
无线传感器网络
空格(标点符号)
物理
遥感
地质学
电信
计算机网络
算法
操作系统
作者
Yue Ivan Wu,Kainam Thomas Wong
标识
DOI:10.1109/taes.2024.3379477
摘要
An acoustic wireless sensing network affronts environmental reverberations engendering spurious " image sources" which can confuse the sensors. Against such "image sources", this paper advances an acoustic source-localization algorithm adaptively constricting the warranted spatial domain in search for the physical sources, thereby simplifying real-time computation. Furthermore, acoustic wireless sensing is complicated by sound's arbitrarily ultra wide frequency bands over arbitrarily transient durations, and the sound source could be positioned any where near or far from any sensing node. Such difficult-to-handle time-frequency unknown irregularities are mitigated (with computational simplicity) by this proposed scheme, which populates each sensing node with a tri-axial velocity-sensor, whose array manifold is advantageously invariant of time, frequency, and range. This proposed scheme needs no prior information on the reverberant environment's space-time impulse response, no prior information on the physical source's frequency spectrum nor time-frequency signal structure. This computationally efficient scheme also bypasses any computationally burdensome pre- or post-processing procedures such as frequency sub-banding, circumvents temporal correlation filtering.
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