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Two-Way Location Estimation With Synchronized Base Stations

机译:同步基站的双向定位估计

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There are two main approaches for estimating a cooperative target location using signal propagation time between base stations at known positions and the target. In one approach, the base stations are synchronized and the location is obtained by one-way transmission from the target to the base stations, or by synchronized transmissions from the base stations to the target. In a second approach, the base stations are unsynchronized and the location is based on two-way transmissions between the target and the base stations. In this paper, we consider a third approach, in which two-way transmissions are used together with synchronized base stations. We develop a novel localization algorithm and analyze its performance. Obviously, base stations synchronization requires system resources, and two-way transmissions require additional resources with respect to one-way transmissions. This higher complexity may be justified by improved performance. Our analysis and simulations give insight into the performance advantage of two-way transmissions with synchronized base stations with respect to the other two approaches. It is shown that the performance advantage is significant only when the signal-to-noise ratio in the uplink and downlink differ, and also depends on the spatial topology of the target and the base stations as well as the uplink and downlink channels correlation.
机译:使用已知位置的基站和目标之间的信号传播时间来估计协作目标位置的方法主要有两种。在一种方法中,基站是同步的,并且通过从目标到基站的单向传输或者通过从基站到目标的同步传输来获得位置。在第二种方法中,基站不同步,并且位置基于目标与基站之间的双向传输。在本文中,我们考虑第三种方法,其中双向传输与同步基站一起使用。我们开发了一种新颖的定位算法,并分析了其性能。显然,基站同步需要系统资源,并且相对于单向传输,双向传输需要额外的资源。这种更高的复杂性可以通过提高性能来证明。我们的分析和仿真使您可以洞悉同步基站相对于其他两种方法的双向传输的性能优势。结果表明,只有在上行链路和下行链路中的信噪比不同时,性能优势才有意义,并且还取决于目标和基站的空间拓扑以及上行链路和下行链路信道的相关性。

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