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首页> 外文期刊>Signal Processing Letters, IEEE >Dual-Tone Radio Interferometric Positioning Systems Using Undersampling Techniques
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Dual-Tone Radio Interferometric Positioning Systems Using Undersampling Techniques

机译:使用欠采样技术的双音无线电干涉定位系统

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摘要

High accuracy and low cost are challenging requirements for localization in wireless sensor networks (WSNs). The radio interferometric positioning system (RIPS) proposed in aims to meet both requirements at the same time. However, it is vulnerable to channel fading, and suffers from the noise aggravation due to the square operation. In this paper, we propose a dual-tone radio interferometric positioning system (DRIPS) using undersampling techniques, named uDRIPS. Our proposed methodology is immune to flat fading effects, and avoids the amplification of measurement noise by directly undersampling the received signal. Furthermore, the time-of-arrival (TOA) information is extracted from the phases of the received dual-tone signals in the uDRIPS. As a result, it is able to localize an asynchronous target with the help of synchronous anchors (nodes with known positions). Moreover, we investigate the integer ambiguity problem due to phase wrapping, and develop a localization algorithm to estimate the unknowns alternatively. Simulation results corroborate the efficiency of our proposed algorithm.
机译:高精度和低成本是无线传感器网络(WSN)本地化的挑战性要求。提出的无线电干涉定位系统(RIPS)旨在同时满足这两个要求。然而,它容易受到信道衰落的影响,并且由于平方运算而遭受噪声加重的影响。在本文中,我们提出了一种使用欠采样技术的双音无线电干涉定位系统(DRIPS),称为uDRIPS。我们提出的方法不受平坦衰落效应的影响,并通过直接对接收信号进行欠采样来避免测量噪声的放大。此外,从uDRIPS中接收到的双音信号的相位中提取到达时间(TOA)信息。结果,它能够在同步锚点(具有已知位置的节点)的帮助下定位异步目标。此外,我们研究了由于相位包裹而引起的整数歧义问题,并开发了一种定位算法来交替估计未知数。仿真结果证实了本文算法的有效性。

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