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Window-Based Constant Beamwidth Beamformer

机译:基于窗口的恒定波束宽度波束形成器

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摘要

Beamformers have been widely used to enhance signals from a desired direction and suppress noise and interfering signals from other directions. Constant beamwidth beamformers enable a fixed beamwidth over a wide range of frequencies. Most of the existing approaches to design constant beamwidth beamformers are based on optimization algorithms with high computational complexity and are often sensitive to microphone mismatches. Other existing methods are based on adjusting the number of sensors according to the frequency, which simplify the design, but cannot control the sidelobe level. Here, we propose a window-based technique to attain the beamwidth constancy, in which different shapes of standard window functions are applied for different frequency bins as the real weighting coefficients of microphones. Thereby, not only do we keep the beamwidth constant, but we also control the sidelobe level. Simulation results show the advantages of our method compared with existing methods, including lower sidelobe level, higher directivity factor, and higher white noise gain.
机译:波束形成器已被广泛用于增强来自所需方向的信号,并抑制来自其他方向的噪声和干扰信号。恒定的波束宽度波束形成器可在很宽的频率范围内实现固定的波束宽度。现有的大多数设计恒定波束宽度波束形成器的方法都是基于具有高计算复杂性的优化算法,并且通常对麦克风失配敏感。其他现有方法基于根据频率调整传感器的数量,这简化了设计,但无法控制旁瓣电平。在这里,我们提出了一种基于窗口的技术来实现波束宽度的恒定性,其中将不同形状的标准窗口函数应用于不同的频率段,作为麦克风的真实加权系数。因此,我们不仅保持波束宽度恒定,而且还控制旁瓣电平。仿真结果表明,该方法与现有方法相比具有优势,包括较低的旁瓣电平,较高的方向性因子和较高的白噪声增益。

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