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Design of Minimax Broadband Beamformers that are Robust to Microphone Gain, Phase, and Position Errors

机译:对麦克风增益,相位和位置误差具有鲁棒性的Minimax宽带波束形成器的设计

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Broadband beamformers with small-size microphone arrays are known to be highly sensitive to microphone imperfections. A new method for the design of minimax broadband beamformers that are robust to microphone gain, phase, and position errors is proposed. In the method, the maximum variations in the microphone errors are used in formulating a convex optimization problem where the worst-case passband error is minimized under the constraint that the worst-case stopband error is below a prescribed level. To include the microphone imperfections in the optimization problem, we developed a suitable model that incorporates the variations due to the microphone errors and at the same time is efficient to compute. An important advantage of the proposed method is the availability of corresponding worst-case passband- and stopband-error bounds for the beamformer that has been designed; a second advantage is that it does not require the probability distributions of microphone errors. We then describe a two-phase method where the proposed method is used in the first phase to derive the passband and stopband error constraints for solving an optimization problem in the second phase where the white noise gain (WNG) of the beamformer is maximized. In our experiments, we compare beamformers designed using the proposed method, the two-phase method and a modified version of a competing method. Experimental results show that beamformers designed using the proposed method have much better performance than those of the modified competing method and comparable performance with those of the two-phase method; however, unlike the two-phase method, the proposed method provides the additional guarantee that the errors will always lie within the worst-case error bounds.
机译:众所周知,具有小型麦克风阵列的宽带波束形成器对麦克风缺陷高度敏感。提出了一种针对麦克风增益,相位和位置误差具有鲁棒性的minimax宽带波束形成器设计的新方法。在该方法中,麦克风误差的最大变化被用于制定凸优化问题,其中在最坏情况的阻带误差低于规定水平的约束下,最坏情况的通带误差被最小化。为了将麦克风缺陷包括在优化问题中,我们开发了一个合适的模型,该模型合并了由于麦克风错误而引起的变化,同时可以高效地进行计算。该方法的一个重要优点是可以为设计的波束形成器提供相应的最坏情况通带和阻带误差范围。第二个优点是它不需要麦克风错误的概率分布。然后,我们描述了一种两阶段方法,其中在第一阶段中使用所提出的方法来导出通带和阻带误差约束,以解决第二阶段中波束成形器的白噪声增益(WNG)最大化的优化问题。在我们的实验中,我们比较了使用提出的方法,两阶段方法和竞争方法的改进版本设计的波束形成器。实验结果表明,与改进的竞争方法相比,使用该方法设计的波束形成器具有更好的性能,并且与两相方法具有可比的性能。但是,与两阶段方法不同,该方法提供了额外的保证,即误差将始终位于最坏情况的误差范围内。

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