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Fast Estimation Method of Space-Time Two-Dimensional Positioning Parameters Based on Hadamard Product

机译:基于哈达玛积的时空二维定位参数快速估计方法

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摘要

The estimation speed of positioning parameters determines the effectiveness of the positioning system. The time of arrival (TOA) and direction of arrival (DOA) parameters can be estimated by the space-time two-dimensional multiple signal classification (2D-MUSIC) algorithm for array antenna. However, this algorithm needs much time to complete the two-dimensional pseudo spectral peak search, which makes it difficult to apply in practice. Aiming at solving this problem, a fast estimation method of space-time two-dimensional positioning parameters based on Hadamard product is proposed in orthogonal frequency division multiplexing (OFDM) system, and the Cramer-Rao bound (CRB) is also presented. Firstly, according to the channel frequency domain response vector of each array, the channel frequency domain estimation vector is constructed using the Hadamard product form containing location information. Then, the autocorrelation matrix of the channel response vector for the extended array element in frequency domain and the noise subspace are calculated successively. Finally, by combining the closed-form solution and parameter pairing, the fast joint estimation for time delay and arrival direction is accomplished. The theoretical analysis and simulation results show that the proposed algorithm can significantly reduce the computational complexity and guarantee that the estimation accuracy is not only better than estimating signal parameters via rotational invariance techniques (ESPRIT) algorithm and 2D matrix pencil (MP) algorithm but also close to 2D-MUSIC algorithm. Moreover, the proposed algorithm also has certain adaptability to multipath environment and effectively improves the ability of fast acquisition of location parameters.
机译:定位参数的估计速度决定了定位系统的有效性。到达时间(TOA)和到达方向(DOA)参数可以通过阵列天线的时空二维多信号分类(2D-MUSIC)算法来估计。但是,该算法需要大量时间才能完成二维伪谱峰搜索,因此难以实际应用。针对这一问题,提出了一种在正交频分复用(OFDM)系统中基于Hadamard乘积的时空二维定位参数快速估计方法,并提出了一种Cramer-Rao界(CRB)。首先,根据每个阵列的信道频域响应向量,使用包含位置信息的Hadamard乘积形式构造信道频域估计向量。然后,依次计算频域中扩展阵列元素的信道响应矢量的自相关矩阵和噪声子空间。最后,通过结合闭式解和参数对,实现了时延和到达方向的快速联合估计。理论分析和仿真结果表明,该算法可以显着降低计算复杂度,并保证估计精度不仅优于通过旋转不变技术(ESPRIT)算法和二维矩阵铅笔(MP)算法估计信号参数,而且可以接近到2D-MUSIC算法。此外,该算法还对多径环境具有一定的适应性,有效提高了定位参数的快速获取能力。

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