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Digital Signal Processing with Signal-Derived Timing: Analysis and Implementation

机译:具有信号衍生时序的数字信号处理:分析和实现

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This work investigates two different digital signal processing (DSP) approaches that rely on signal-derived timing: continuous-time (CT) DSP and variable-rate DSP. Both approaches enable designs of energy-efficient signal processing systems by relating their operation rates to the input activity.;The majority of this thesis focuses on CT-DSP, whose operations are completely digital in CT, without the use of a clock. The spectral features of CT digital signals are analyzed first, demonstrating a general pattern of the quantization noise spectrum added in CT amplitude quantization. Then the focus is narrowed to the investigations of the system characteristics and architecture of CT digital infinite-impulse-response (IIR) filters, which are barely studied in the previous work on this topic. This thesis discusses and addresses previously unreported stability issue in CT digital IIR filters with the presence of delay-line mismatches and proposes an innovative method to design high-order CT digital IIR filters with only two tap delays. Introducing an event detector allows the operation rate of a CT digital IIR filter to closely track the input activity even though it is a feedback system. For the first time, the filtered CT digital signal is converted to a synchronous digital signal. This facilitates integrating the CT digital filter and conventional discrete-time systems and expands the applications of the former. This discussion uses a computationally efficient interpolation filter to improve the signal accuracy of the synchronous digital output. On the circuit level, a new delay-cell design is introduced. It ensures low jitter, good matching, robust communication with adjacent circuits and event-independent delay.;An integrated circuit (IC) with all these ideas adopted was fabricated in a TSMC 65 nm LP CMOS process. It is the first IC implementation of a CT digital IIR filter. It can process signals with a data rate up to 20 MHz. Thanks to the IIR response and the 16-bit resolution used in the system, the implemented filter can achieve a frequency response much more versatile and accurate than the CT digital filters in prior art. The implemented system features an agile power adaptive to input activity, varying from 2:32mW (full activity) to 40microW (idle) with no power-management circuitry.;The second part of the thesis discusses a variable-rate DSP capable of processing samples with a variable sampling rate. The clock rate in the variable-rate DSP tracks the input sampling rate. Compared to a fixed-rate DSP, the proposed system has a lower output data rate and hence is more computationally efficient. A reconstruction filter with a variable cutoff frequency is used to reconstruct the output. The signal-to-noise ratio remains fixed when the sampling rate changes.
机译:这项工作研究了两种基于信号衍生时序的不同数字信号处理(DSP)方法:连续时间(CT)DSP和可变速率DSP。两种方法都可以通过将其操作速率与输入活动相关联来实现节能信号处理系统的设计。;本文的大部分重点是CT-DSP,其操作在CT中完全数字化,而无需使用时钟。首先分析CT数字信号的频谱特征,展示在CT幅度量化中添加的量化噪声频谱的一般模式。然后,焦点就集中在对CT数字无限脉冲响应(IIR)滤波器的系统特性和体系结构的研究上,这在以前有关该主题的工作中很少进行研究。本文讨论并解决了存在延迟线不匹配的CT数字IIR滤波器中以前未报告的稳定性问题,并提出了一种创新的方法来设计仅具有两个抽头延迟的高阶CT数字IIR滤波器。引入事件检测器可以使CT数字IIR滤波器的工作速率紧密跟踪输入活动,即使它是反馈系统也是如此。首次将滤波后的CT数字信号转换为同步数字信号。这有助于集成CT数字滤波器和常规离散时间系统,并扩展了前者的应用范围。该讨论使用计算效率高的内插滤波器来提高同步数字输出的信号精度。在电路级别,引入了新的延迟单元设计。它确保低抖动,良好匹配,与相邻电路的鲁棒通信以及与事件无关的延迟。;采用台积电65纳米LP CMOS工艺制造了采用了所有这些思想的集成电路(IC)。这是CT数字IIR滤波器的第一个IC实现。它可以处理高达20 MHz的数据速率的信号。由于系统中使用了IIR响应和16位分辨率,因此与现有技术中的CT数字滤波器相比,所实现的滤波器可以实现更加通用和准确的频率响应。所实现的系统具有适应输入活动的敏捷功率,从2:32mW(完全活动)到40microW(空闲)不等,没有功率管理电路。论文的第二部分讨论了一种能够处理样本的可变速率DSP。采样率可变。可变速率DSP中的时钟速率跟踪输入采样速率。与固定速率DSP相比,该系统的输出数据速率较低,因此计算效率更高。具有可变截止频率的重建滤波器用于重建输出。当采样率改变时,信噪比保持固定。

著录项

  • 作者

    Chen, Yu.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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