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TDOA Based Positioning in the Presence of Unknown Clock Skew

机译:存在未知时钟偏斜的基于TDOA的定位

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This paper studies the positioning problem of a single target node based on time-difference-of-arrival (TDOA) measurements in the presence of clock imperfections. Employing an affine model for the behaviour of a local clock, it is observed that TDOA based approaches suffer from a parameter of the model, called the clock skew. Modeling the clock skew as a nuisance parameter, this paper investigates joint clock skew and position estimation. The maximum likelihood estimator (MLE) is derived for this problem, which is highly nonconvex and difficult to solve. To avoid the difficulty in solving the MLE, we employ suitable approximations and relaxations and propose two suboptimal estimators based on semidefinite programming and linear estimation. To further improve the estimation accuracy, we also propose a refining step. In addition, the Cramér-Rao lower bound (CRLB) is derived for this problem as a benchmark. Simulation results show that the proposed suboptimal estimators can attain the CRLB for sufficiently high signal-to-noise ratios.
机译:本文基于存在时钟缺陷的到达时间差(TDOA)测量研究单个目标节点的定位问题。使用仿射模型来模拟本地时钟的行为,可以发现基于TDOA的方法受模型参数的影响,称为时钟偏斜。将时钟偏斜建模为令人讨厌的参数,本文研究了联合时钟偏斜和位置估计。针对此问题导出了最大似然估计器(MLE),该估计值高度非凸且难以解决。为了避免求解MLE的困难,我们采用适当的近似和松弛,并基于半定规划和线性估计提出了两个次优估计。为了进一步提高估计准确性,我们还提出了一个改进步骤。此外,针对此问题导出了Cramér-Rao下界(CRLB)作为基准。仿真结果表明,对于足够高的信噪比,所提出的次优估计器可以获得CRLB。

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