基于麦克风阵列的定向音频编码增强方向估计

M. Kallinger, F. Kuech, R. Schultz-Amling, G. del Galdo, J. Ahonen, V. Pulkki
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引用次数: 13

摘要

现代家庭娱乐系统提供环绕声音频播放。在已知的单声道和立体声设备上的进步也用于高质量的免提电话,以提高群体对话中的语音清晰度。定向音频编码(DirAC)提供了一种有效和完善的方法来记录和编码空间声音,并在任意扬声器设置下呈现它。在录音现场,DirAC是基于b格式的麦克风信号。这些信号可以通过一个全向和三个8字形麦克风指向一个三维笛卡尔坐标系的轴来获得。然而,由于经济原因,全向麦克风网格更适合消费者应用。阵列只能在一定的频率范围内提供所需的8字形方向性。然而,在这个贡献中,我们证明了一个直接的方向估计器是有偏的。在对偏性进行解析表述后,我们提出了一个无偏估计量,并推导了唯一方向估计的理论极限。通过仿真和实测对结果进行了说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Direction Estimation Using Microphone Arrays for Directional Audio Coding
Modern home entertainment systems offer surround sound audio playback. This progress over known mono and stereo devices is also intended for high quality hands-free telephony to enhance intelligibility of speech in group conversation. Directional Audio Coding (DirAC) provides an efficient and well-established way to record and encode spatial sound and to render it at an arbitrary loudspeaker setup. On the recording site, DirAC is based on B-format microphone signals. These signals can be obtained by one omnidirectional and three figure-of-eight microphones pointing along the axes of a three-dimensional Cartesian coordinate system. However, a grid of omnidirectional microphones is more appropriate for consumer applications due to economic reasons. Arrays can provide the required figure-of-eight directionality only for a certain frequency range. However, in this contribution we show that a straightforward direction estimator is biased. After formulating the bias analytically we propose an unbiased estimator and derive the theoretical limits for unique direction estimation. The results are illustrated by means of simulations and measurements.
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