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Interval analysis-based Bi-iterative algorithm for robust TDOA-FDOA moving source localisation

机译:基于间隔分析的双迭代算法,用于鲁棒TDOA-FDOA移动源定位

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摘要

In this study, an interval extension method of a bi-iterative is proposed to determine a moving source. This method is developed by utilising the time difference of arrival and frequency difference of arrival measurements of a signals received from several receivers. Unlike the standard Gaussian noise model, the time difference of arrival - frequency difference of arrival measurements are obtained by interval enclosing, which avoids convergence and initialisation problems in the conventional Taylor-series method. Using the bi-iterative strategy, the algorithm can alternately calculate the position and velocity of the moving source in interval vector form. Simulation results indicate that the proposed scheme significantly outperforms other methods, and approaches the Cramer-Rao lower bound at a sufficiently high noise level before the threshold effect occurs. Moreover, the interval widths of the results provide the confidence degree of the estimate.
机译:在该研究中,提出了一种双迭代的间隔扩展方法来确定移动源。通过利用从多个接收器接收的信号的到达和频率差的时间差和频率差来开发该方法。与标准高斯噪声模型不同,到达 - 到达测量的到达频率差的时间差是通过间隔封闭获得的,这避免了传统泰勒序列方法中的收敛性和初始化问题。使用双迭代策略,算法可以交替地计算移动源的间隔矢量形式的位置和速度。仿真结果表明,该方案显着优于其他方法,在发生阈值效应之前,在足够高的噪声水平之前接近克拉梅-RAO下限。此外,结果的间隔宽度提供了估计的置信度。

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