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A Multichannel Sinusoidal Model Applied to Spot Microphone Signals for Immersive Audio

机译:用于沉浸式音频的现场麦克风信号的多通道正弦模型

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摘要

In this paper, a multichannel version of the sinusoids plus noise model (also known as deterministic plus stochastic decomposition) is proposed and applied to spot microphone signals of a music recording. These are the recordings captured by the various microphones placed in a venue, before the mixing process produces the final multichannel audio mix. Coding these microphone signals makes them available to the decoder, allowing for interactive audio reproduction which is a necessary component in immersive audio applications. The proposed model uses a single reference audio signal in order to derive a noise signal per spot microphone. This noise signal can significantly enhance the sinusoidal representation of the corresponding spot signal. The reference can be one of the spot signals or a downmix, depending on the application. Thus, for a collection of multiple spot signals, only the reference is fully encoded (e.g., as an MP3 monophonic signal). For the remaining spot signals, their sinusoidal parameters and corresponding noise spectral envelopes are retained and coded, resulting in bitrates for this side information in the order of 15 kb/s for perceptual performance above the 4.0 grade on the mean opinion score (MOS) scale.
机译:在本文中,提出了正弦加噪声模型(也称为确定性加随机分解)的多通道版本,并将其应用于音乐录制的麦克风信号。这些是混音过程产生最终多声道音频混音之前,放置在场地中的各个麦克风捕获的录音。对这些麦克风信号进行编码可以使它们可用于解码器,从而实现交互式音频再现,这是沉浸式音频应用程序中必不可少的组成部分。所提出的模型使用单个参考音频信号,以便得出每个点传声器的噪声信号。该噪声信号可以显着增强相应点信号的正弦表示。取决于应用,参考可以是点信号之一或缩混信号。因此,对于多个点信号的集合,仅参考被完全编码(例如,作为MP3单声道信号)。对于其余的点信号,保留它们的正弦参数和相应的噪声频谱包络并对其进行编码,从而导致该边信息的比特率达到15 kb / s量级,以达到平均意见评分(MOS)等级4.0以上的感知性能。

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