| Literature DB >> 32069854 |
Xiangge He1,2, Min Zhang2,3, Lijuan Gu1,2, Shangran Xie4, Fei Liu2, Hailong Lu1,2.
Abstract
Phase fading is fatal to the performance of distributed acoustic sensors (DASs) influencing its capability of distributed measurement as well as its noise level. Here, we report the experimental observation of a strong negative correlation between the relative power spectrum density (PSD) at the heterodyne frequency and the noise floor of the detected phase for the heterodyne demodulated distributed acoustic sensor (HD-DAS) system. We further propose a weighted-channel stack algorithm (WCSA) to alleviate the phase fading noise via an enhancement of the relative PSD at the heterodyne frequency. Experimental results show that the phase noise of the demodulated signal can be suppressed by 13.7 dB under optimal condition. As a potential application, we exploited the improved HD-DAS system to retrieve a piece of music lasted for 205 s, demonstrating the reliability of detecting wideband sound signal without distortion.Entities:
Keywords: Rayleigh backscattering; distributed acoustic sensor; phase fading; sound detection
Year: 2020 PMID: 32069854 DOI: 10.3390/s20040999
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576