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System-level power optimization for a #x03A3;#x0394; D/A converter for hearing-aid application

机译:用于ΣΔD/ A转换器的系统级功率优化,用于助听器应用

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This paper deals with a system-level optimization of a back-end of audio signal processing chain for hearing-aids, including a sigma-delta modulator digital-to-analog converter (DAC) and a Class D power amplifier. Compared to other state-of-the-art designs dealing with sigma-delta modulator design for audio applications we take the maximum gain of the modulator noise transfer function (NTF) as a design parameter. By increasing the maximum NTF gain the cutoff frequency of modulator loop filter is increased which lowers the in-band quantization noise but also lowers the maximum stable amplitude (MSA). This work presents an optimal compromise between these. Increased maximum NTF gain combined with a multi bit quantizer in the modulator allows lower oversampling ratio (OSR) and results in considerable power savings while the audio quality is kept unchanged. The proposed optimization impacts the entire hearing-aid audio back-end system resulting in less hardware and power consumption in the interpolation filter, in the sigma-delta modulator and reduced switching rate of the Class D output stage.
机译:本文涉及用于助听器的音频信号处理链的后端的系统级优化,包括Sigma-Delta调制器数模转换器(DAC)和D类功率放大器。与其他最先进的设计相比,处理Sigma-Delta调制器设计用于音频应用,我们将调制器噪声传递函数(NTF)的最大增益作为设计参数。通过增加最大NTF增益,提高调制器环路滤波器的截止频率,这降低了带内量化噪声,但也降低了最大稳定幅度(MSA)。这项工作呈现了这些工作的最佳折衷。增加的最大NTF增益与调制器中的多位量子化器组合允许较低的过采样比(OSR),并在音频质量保持不变的同时节省相当大的功率。所提出的优化影响整个助剂音频后端系统,导致插值滤波器中的硬件和功耗较少,在Sigma-Delta调制器中和D类输出级的减小的切换率。

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