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Theory and applications of delta-sigma analogue-to-digital converters without negative feedback

机译:没有负反馈的delta-sigma模数转换器的理论和应用

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摘要

Analog-to-digital converters play a crucial role in modern audio and communication design. Conventional Nyquist converters are suitable only for medium resolutions and require analog components that are precise and highly immune to noise and interference. In contrast, oversampling converters can achieve high resolutions (>20bits) and can be implemented using straightforward, high-tolerance analog components. In conventional oversampled modulators, negative feedback is applied in order to control the dynamic behavior of a system and to realize the attenuation of the quantization noise in the signal band due to noise shaping. However, feedback can also introduce undesirable effects such as limit cycles, jitter problems in continuous-time topologies, and infinite impulse responses. Additionally, it increases the system complexity due to extra circuit components such as nonlinear multi-bit digital-to-analog converters in the feedback path. Moreover, in certain applications such as wireless, biomedical sensory, or microphone implementations feedback cannot be applied. As a result, the main goal of this thesis is to develop sigma-delta data converters without feedback. Various new delta-sigma analog-to-digital converter topologies are explored their mathematical models are presented. Simulations are carried out to validate these models and to show performance results. Specifically, two topologies, a first-order and a second-order oscillator-based delta-sigma modulator without feedback are described in detail. They both can be implemented utilizing VCOs and standard digital gates, thus requiring only few components. As proof of concept, two digital microphones based on these delta-sigma converters without feedback were implemented and experimental results are given. These results show adequate performance and provide a new approach of measuring.
机译:模数转换器在现代音频和通信设计中起着至关重要的作用。常规的Nyquist转换器仅适用于中等分辨率,并且需要精确且对噪声和干扰具有高度抵抗力的模拟组件。相比之下,过采样转换器可以实现高分辨率(> 20bits),并且可以使用简单,高容限的模拟组件来实现。在常规的过采样调制器中,施加负反馈是为了控制系统的动态行为并实现由于噪声整形而导致的信号带中量化噪声的衰减。但是,反馈还会引入不希望的影响,例如极限周期,连续时间拓扑中的抖动问题以及无限的脉冲响应。另外,由于额外的电路组件,例如反馈路径中的非线性多位数模转换器,它增加了系统的复杂性。此外,在某些应用中,例如无线,生物医学感觉或麦克风实施中,不能应用反馈。因此,本文的主要目标是开发无反馈的sigma-delta数据转换器。探索了各种新的delta-sigma模数转换器拓扑,并介绍了它们的数学模型。进行仿真以验证这些模型并显示性能结果。具体而言,详细描述了两种拓扑,即无反馈的基于一阶和二阶振荡器的delta-sigma调制器。它们都可以利用VCO和标准数字门来实现,因此只需要很少的组件。作为概念验证,实现了两个基于这些无反馈的delta-sigma转换器的数字麦克风,并给出了实验结果。这些结果显示出足够的性能,并提供了一种新的测量方法。

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    Soell Sven;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 English
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