Nnonyelu Chibuzo Joseph, Jiang Meng, Adamopoulou Marianthi, Lundgren Jan
Department of Computer and Electrical Engineering, Mid Sweden University, 851 70 Sundsvall, Sweden.
Sensors (Basel). 2024 Nov 27;24(23):7572. doi: 10.3390/s24237572.
Traditional spherical sector microphone arrays using omnidirectional microphones face limitations in modal strength and spatial resolution, especially within spherical sector configurations. This study aims to enhance array performance by developing a spherical sector array employing first-order cardioid microphones. A model based on spherical sector harmonic (SSH) functions is introduced to extend the benefits of spherical harmonics to sector arrays. Modal strength analysis demonstrates that cardioid microphones in open spherical sectors enhance nonzero-order strengths and eliminate the nulls associated with spherical Bessel functions. We find that the spatial resolution of spherical cap arrays depends on the array's maximum order and the limiting polar angle, but is independent of the microphone gain pattern. We assess direction-of-arrival (DOA) estimation performance for coherent wideband sources using the array manifold interpolation method, and compare cardioid and omnidirectional arrays through simulations in both open and rigid hemispherical configurations. The results indicate that cardioid arrays outperform omnidirectional ones on DOA estimation tasks, with performance improving alongside increased microphone directivity in the open hemispherical configuration. Specifically, hypercardioid microphones yielded the best results in the open configuration, while subcardioid microphones (without nulls) were optimal in rigid configurations. These findings demonstrate that spherical sector arrays of first-order cardioid microphones offer improved modal strength and DOA estimation capabilities over traditional omnidirectional arrays, providing significantly enhancing performance in spherical sector array processing.
使用全向麦克风的传统球形扇形麦克风阵列在模态强度和空间分辨率方面存在局限性,尤其是在球形扇形配置中。本研究旨在通过开发一种采用一阶心形麦克风的球形扇形阵列来提高阵列性能。引入了一种基于球形扇形谐波(SSH)函数的模型,以将球形谐波的优势扩展到扇形阵列。模态强度分析表明,开放球形扇形中的心形麦克风增强了非零阶强度,并消除了与球形贝塞尔函数相关的零点。我们发现,球形帽阵列的空间分辨率取决于阵列的最大阶数和极限极角,但与麦克风增益模式无关。我们使用阵列流形插值方法评估相干宽带源的到达方向(DOA)估计性能,并通过在开放和刚性半球形配置中的模拟比较心形和全向阵列。结果表明,在心形阵列在DOA估计任务上优于全向阵列,在开放半球形配置中,随着麦克风方向性的增加,性能也会提高。具体而言,超心形麦克风在开放配置中产生了最佳结果,而亚心形麦克风(无零点)在刚性配置中是最优的。这些发现表明,一阶心形麦克风的球形扇形阵列比传统全向阵列具有更好的模态强度和DOA估计能力,在球形扇形阵列处理中显著提高了性能。