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Unitary ESPRIT: how to obtain increased estimation accuracy with a reduced computational burden

机译:单一ESPRIT:如何在减少计算负担的情况下获得更高的估计精度

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ESPRIT is a high-resolution signal parameter estimation technique based on the translational invariance structure of a sensor array. Previous ESPRIT algorithms do not use the fact that the operator representing the phase delays between the two subarrays is unitary. The authors present a simple and efficient method to constrain the estimated phase factors to the unit circle, if centro-symmetric array configurations are used. Unitary ESPRIT, the resulting closed-form algorithm, has an ESPRIT-like structure except for the fact that it is formulated in terms of real-valued computations throughout. Since the dimension of the matrices is not increased, this completely real-valued algorithm achieves a substantial reduction of the computational complexity. Furthermore, Unitary ESPRIT incorporates forward-backward averaging, leading to an improved performance compared to the standard ESPRIT algorithm, especially for correlated source signals. Like standard ESPRIT, Unitary ESPRIT offers an inexpensive possibility to reconstruct the impinging wavefronts (signal copy). These signal estimates are more accurate, since Unitary ESPRIT improves the underlying signal subspace estimates. Simulations confirm that, even for uncorrelated signals, the standard ESPRIT algorithm needs twice the number of snapshots to achieve a precision comparable to that of Unitary ESPRIT. Thus, Unitary ESPRIT provides increased estimation accuracy with a reduced computational burden.
机译:ESPRIT是基于传感器阵列的平移不变性结构的高分辨率信号参数估计技术。先前的ESPRIT算法没有使用表示两个子阵列之间的相位延迟的运算符是一元的事实。如果使用中心对称阵列配置,则作者提出一种简单有效的方法来将估计的相位因子约束到单位圆。单一式ESPRIT是最终的闭式算法,具有类似于ESPRIT的结构,但事实是,它始终是根据实值计算制定的。由于矩阵的维数没有增加,因此这种完全实值的算法可以大大降低计算复杂度。此外,单一ESPRIT结合了前向后平均功能,与标准ESPRIT算法相比,性能得到了改善,尤其是对于相关的源信号而言。像标准ESPRIT一样,单一ESPRIT提供了一种廉价的方法来重建入射波前(信号副本)。这些信号估计更加准确,因为统一ESPRIT改进了基础信号子空间估计。仿真证实,即使对于不相关的信号,标准的ESPRIT算法也需要两倍的快照数量才能达到与单一ESPRIT相当的精度。因此,单一ESPRIT提供了更高的估计精度,同时减少了计算负担。

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