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Theoretical Framework for the Optimization of Microphone Array Configuration for Humanoid Robot Audition

机译:人形机器人试听麦克风阵列配置优化的理论框架

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摘要

An important aspect of a humanoid robot is audition. Previous work has presented robot systems capable of sound localization and source segregation based on microphone arrays with various configurations. However, no theoretical framework for the design of these arrays has been presented. In the current paper, a design framework is proposed based on a novel array quality measure. The measure is based on the effective rank of a matrix composed of the generalized head related transfer functions (GHRTFs) that account for microphone positions other than the ears. The measure is shown to be theoretically related to standard array performance measures such as beamforming robustness and DOA estimation accuracy. Then, the measure is applied to produce sample designs of microphone arrays. Their performance is investigated numerically, verifying the advantages of array design based on the proposed theoretical framework.
机译:人形机器人的一个重要方面是试镜。先前的工作已经提出了基于具有各种配置的麦克风阵列能够进行声音定位和源分离的机器人系统。但是,没有提出用于设计这些阵列的理论框架。在本文中,提出了一种基于新型阵列质量度量的设计框架。该度量基于矩阵的有效等级,该矩阵由广义的与头部相关的传递函数(GHRTF)组成,这些传递函数说明了除耳朵以外的麦克风位置。在理论上表明该措施与标准阵列性能措施有关,例如波束成形的鲁棒性和DOA估计精度。然后,将该措施应用于生成麦克风阵列的样本设计。对它们的性能进行了数值研究,验证了基于所提出的理论框架的阵列设计的优势。

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