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首页> 外文期刊>IEEE Transactions on Signal Processing >A Competitive Mean-Squared Error Approach to Beamforming
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A Competitive Mean-Squared Error Approach to Beamforming

机译:竞争均方误差波束形成方法

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摘要

We treat the problem of beamforming for signal estimation where the goal is to estimate a signal amplitude from a set of array observations. Conventional beamforming methods typically aim at maximizing the signal-to-interference-plus-noise ratio (SINR). However, this does not guarantee a small mean-squared error (MSE), so that on average the resulting signal estimate can be far from the true signal. Here, we consider strategies that attempt to minimize the MSE between the estimated and unknown signal waveforms. The methods we suggest all maximize the SINR but at the same time are designed to have good MSE performance. Since the MSE depends on the signal power, which is unknown, we develop competitive beamforming approaches that minimize a robust MSE measure. Two design strategies are proposed: minimax MSE and minimax regret. We demonstrate through numerical examples that the suggested minimax beamformers can outperform several existing standard and robust methods, over a wide range of signal-to-noise ratio (SNR) values. Finally, we apply our techniques to subband beamforming and illustrate their advantage in estimating a wideband signal.
机译:我们处理用于信号估计的波束成形问题,其目标是从一组阵列观测值中估计信号幅度。常规的波束成形方法通常旨在最大化信号干扰加噪声比(SINR)。但是,这不能保证较小的均方误差(MSE),因此,平均而言,所得信号估计值可能与真实信号相差甚远。在这里,我们考虑尝试最小化估计和未知信号波形之间的MSE的策略。我们建议所有方法都使SINR最大化,但同时又要设计成具有良好的MSE性能。由于MSE取决于信号功率,而这是未知的,因此我们开发了竞争性的波束成形方法,以最小化可靠的MSE度量。提出了两种设计策略:minimax MSE和minimax后悔。我们通过数值示例证明,建议的minimax波束形成器可以在宽范围的信噪比(SNR)值范围内胜过几种现有的标准和鲁棒方法。最后,我们将我们的技术应用于子带波束成形,并说明了它们在估计宽带信号中的优势。

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