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Dual-tone radio interferometric positioning systems using a single mobile anchor

机译:使用单个移动锚的双音无线电干涉定位系统

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In this paper, we propose a low-cost dual-tone radio interferometric positioning system using a single mobile anchor, named mDRIPS. There is no synchronization requirement between the mobile anchor and the target. In mDRIPS, the static target continuously transmits a dual-tone signal, and the mobile anchor receives the signal at different positions along its trajectory. The instability of the target clock is taken into account. An ESPRIT-type algorithm is developed to estimate frequencies of the dual-tone signal for the subsequent phase estimation. Furthermore, the time of arrival (TOA) is extracted from the phase estimate of the received dual-tone signal. After measuring several TOAs at different locations along the anchor's trajectory, the target can be located. The mDRIPS is robust to flat-fading channels. Since the frequency difference of the two tones of the dual-tone signal is designed to be smaller than the channel coherence bandwidth, the same fading effect on these two tones can be eliminated. Moreover, we investigate the integer ambiguity problem due to phase wrapping, and develop a localization algorithm to deal with a simplified ambiguity problem. Numerical results demonstrate the efficiency of the proposed mDRIPS.
机译:在本文中,我们提出了一种使用单移动锚的低成本双音无线电干涉定位系统,称为mDRIPS。移动锚和目标之间没有同步要求。在mDRIPS中,静态目标会连续发送双音信号,而移动定位点会沿着其轨迹在不同位置接收信号。考虑了目标时钟的不稳定性。开发了ESPRIT类型的算法来估计双音信号的频率以用于随后的相位估计。此外,从接收到的双音信号的相位估计中提取到达时间(TOA)。在沿着锚定轨迹的不同位置测量了几个TOA之后,就可以定位目标了。 mDRIPS对平坦衰落的信道具有鲁棒性。由于双音调信号的两个音调的频率差被设计为小于信道相干带宽,因此可以消除这两个音调上相同的衰落效应。此外,我们研究了由于相位包裹引起的整数歧义问题,并开发了一种定位算法来处理简化的歧义问题。数值结果证明了所提出的mDRIPS的效率。

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