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Optimal Modal Beamforming for Spherical Microphone Arrays

机译:球形麦克风阵列的最佳模态波束成形

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An approach to optimal array pattern synthesis based on spherical harmonics is presented. The array processing problem in the spherical harmonics domain is expressed with a matrix formulation. The beamformer weight vector design problem is written as a multiply constrained problem, so that the resulting beamformer can provide a suitable trade-off among multiple conflicting performance measures such as directivity index, robustness, array gain, sidelobe level, mainlobe width, and so on. The multiply constrained problem is formulated as a convex form of second-order cone programming which is computationally tractable. We show that the pure phase-mode spherical microphone array can be viewed as a minimum variance distortionless response (MVDR) beamformer in the spherical harmonics domain for the case of spherically isotropic noise. It is shown that our approach includes the delay-and-sum beamformer and a pure phase-mode beamformer as special cases, which leads to very flexible designs. Results of simulations and experimental data processing show good performance of the proposed array pattern synthesis approach. To simplify the analysis, the assumption of equidistant spatial sampling of the wavefield by microphones on a spherical surface is used and the aliasing effects due to noncontinuous spatial sampling are neglected.
机译:提出了一种基于球谐函数的最优阵列图形综合方法。球谐域中的阵列处理问题用矩阵公式表示。波束形成器权重矢量设计问题被写为乘约束问题,因此生成的波束形成器可以在多个冲突的性能度量(例如方向性指标,鲁棒性,阵列增益,旁瓣电平,主瓣宽度等)之间提供适当的折衷。 。乘约束问题被公式化为可计算处理的二阶锥规划的凸形式。我们表明,在球面各向同性噪声的情况下,纯相模球形麦克风阵列可以看作是球谐域中的最小方差无失真响应(MVDR)波束形成器。结果表明,我们的方法包括延迟和求和波束形成器和纯相位模式波束形成器作为特例,这导致了非常灵活的设计。仿真和实验数据处理结果表明,所提出的阵列图形合成方法具有良好的性能。为了简化分析,使用了在球形表面上通过麦克风对波场进行等距空间采样的假设,而忽略了由于非连续空间采样引起的混叠效应。

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