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An approximately efficient bi-iterative method for source position and velocity estimation using TDOA and FDOA measurements

机译:一种使用TDOA和FDOA测量进行源位置和速度估算的近似有效的双迭代方法

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摘要

This paper develops an efficient bi-iterative source location and velocity estimation method with time difference of arrival (TDOA) and frequency difference of arrival (FDOA) measurements. Because of the high nonlinearity in the TDOA and FDOA measurement equations, obtaining high source location and velocity estimation accuracy is far from straightforward. The developed bi-iterative method calculates the source location and velocity alternately, which significantly decreases the computational cost. The proof of convergence of the bi-iterative method is provided and the approximate efficiency is theoretically analyzed. Most importantly, the source location and velocity estimation accuracy of the bi-iterative method is closer to the Cramer-Rao lower bound (CRLB) than that of other existing localization methods. Simulation studies are given to confirm the approximate efficiency and to show the superior performance of the proposed method in comparison with relative methods.
机译:本文利用到达时间差(TDOA)和到达频率差(FDOA)的测量方法,开发了一种高效的双向源定位和速度估计方法。由于TDOA和FDOA测量方程的高度非线性,获得高震源位置和速度估算精度远非易事。所开发的双向迭代方法交替计算源位置和速度,从而显着降低了计算成本。提供了双向迭代方法的收敛性证明,并从理论上分析了近似效率。最重要的是,与其他现有定位方法相比,双向迭代方法的源位置和速度估计精度更接近Cramer-Rao下界(CRLB)。仿真研究证实了该方法的近似效率,并显示了与相对方法相比所提出方法的优越性能。

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