Noise shaping sigma delta modulation techniques and models simulation
Yuanyuan Zhang, Yanfeng Jiang
Abstract
Yuanyuan Zhang, Yanfeng Jiang
Abstract
With high resolution ADC has been widespread used in communication and multimedia, oversampling Sigma-Delta ADC becomes the main path of implementing high resolution ADC. Oversampling Sigma-Delta ADC is composed of two basic blocks: a noise shaping sigma delta modulator and a digital signal processing block for filtering and decimation. This paper mainly discuss noise shaping sigma delta modulation techniques, theory and structure. Followed by a discussion of the advantage of high-order structure, then discussed its stability. This paper use the method of adding gain (<1) before the integrator to solve stable problem. In this paper, precise models of fourth-order structure are presented followed by SIMULINK, implemented a modulator with an oversampling frequency of 2.5 MHz
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With high resolution ADC has been widespread used in communication and multimedia, oversampling Sigma-Delta ADC becomes the main path of implementing high resolution ADC. Oversampling Sigma-Delta ADC is composed of two basic blocks: a noise shaping sigma delta modulator and a digital signal processing block for filtering and decimation. This paper mainly discuss noise shaping sigma delta modulation techniques, theory and structure. Followed by a discussion of the advantage of high-order structure, then discussed its stability. This paper use the method of adding gain (<1) before the integrator to solve stable problem. In this paper, precise models of fourth-order structure are presented followed by SIMULINK, implemented a modulator with an oversampling frequency of 2.5 MHz
Key concepts: Oversampling, Delta-sigma modulation, Integrator, Noise shaping, Decimation, Delta modulation, Noise (video), Modulation (music)