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A novel subspace-based joint TDOA and FDOA estimation using chirp signals for mobile multipath environment

机译:用于移动多径环境的基于线性调频信号的基于子空间的新型TDOA和FDOA联合估计

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摘要

In this paper, we propose subspace-based joint time difference of arrival (TDOA) and frequency difference of arrival (FDOA) estimation method using chirp signals for mobile multipath environments. The conventional methods for TDOA and FDOA estimation has been developed based on the signal model derived in a single path. However, single path channel model is not preferred in algorithm development for TDOA since it is not a realistic channel. Therefore, the conventional algorithms which have been developed based on the single path channel model cannot be easily extended to multipath channel. Thus, we propose a new TDOA and FDOA estimation technique based on multipath channel model. To achieve high accuracy, the subspace-based parameter estimation technique ESPRIT is used with some modification for a joint estimation of TDOA and FDOA. The proposed technique shows superior performance in multipath decomposition. Using the decomposition capability, the TDOA and FDOA for the direct path (the first arrival path) can be estimated well in spite of the interference caused by the other received paths. The performance of the proposed joint TDOA and FDOA estimation technique is evaluated through computer simulations under mobile multipath channel and compared with those of conventional methods.
机译:在本文中,我们针对移动多径环境提出了基于线性空间的线性调频到达时间差(TDOA)和到达频率差(FDOA)估计方法。 TDOA和FDOA估计的常规方法是基于在单个路径中导出的信号模型开发的。但是,单路径信道模型在TDOA的算法开发中不是首选,因为它不是现实的信道。因此,基于单路径信道模型开发的常规算法不能容易地扩展到多路径信道。因此,我们提出了一种基于多径信道模型的TDOA和FDOA估计新技术。为了实现高精度,基于子空间的参数估计技术ESPRIT经过一些修改后用于TDOA和FDOA的联合估计。所提出的技术在多径分解中显示出优异的性能。使用分解功能,尽管受到其他接收路径的干扰,也可以很好地估计直接路径(第一到达路径)的TDOA和FDOA。通过在移动多径信道下的计算机仿真来评估所提出的TDOA和FDOA联合估计技术的性能,并将其与常规方法进行比较。

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