基于波束形成的地下声学传感器网络信号增强

Xiaokun Yan, Pengfei Hu, Tianbo Gu, Kai Xing
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引用次数: 0

摘要

随着ZigBee、RFID、WiFi等传感和无线通信技术的发展,无线传感器网络为加强煤矿灾害监测等井下环境监测提供了广阔的应用前景。然而,这些无线技术受到信号失真和短的非视距(NLOS)的困扰。此外,在地下灾害中,遥感数据难以通过无线信号传输到地面。本文研究了地下无线传感器网络中基于波束形成的信号增强方案。与传统的无线信号相比,我们使用声信号,它有几个优点:第一,它的波长更长,衰减更慢,传播距离更远;其次,它具有抗信号失真的能力,有助于提高地下监测系统的鲁棒性。对系统误差和随机误差进行了理论分析。为了理论验证,进行了大量的仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beamforming based signal strengthening via underground acoustics sensor networks
As the advances in sensing and wireless communication technologies, e.g., ZigBee, RFID, and WiFi, wireless sensor networks provide a promising opportunity to enhance underground environment monitoring, e.g., coal mine disaster monitoring. However, these wireless technologies suffer from signal distortion and short Non-Line-Of-Sight (NLOS). Furthermore, in underground disaster it is difficult to transmit sensing data to the ground via wireless signals. In this paper, we study beamforming based signal strengthening scheme in underground wireless sensor networks. Compare with traditional wireless signals, we use acoustic signal, which has several merits: first, it has much longer wavelength, which results to slower decay and longer propagation distance; second, it is resistant to signal distortion, which may help enhance the robustness of the underground monitoring system. Theoretical analysis is provided on both systematic and stochastic errors. Extensive simulations are carried out for theoretical verification.
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