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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Nonlinear Model-Based Approach for Accurate Stability Prediction of One-Bit Higher-Order Delta–Sigma Modulators
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Nonlinear Model-Based Approach for Accurate Stability Prediction of One-Bit Higher-Order Delta–Sigma Modulators

机译:基于非线性模型的一位高阶Delta-Sigma调制器精确稳定性预测方法

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摘要

The current approaches on predicting the stability of delta–sigma $( Delta$$Sigma)$ modulators are mostly confined to dc inputs. This poses limitations as practical applications of $ Delta$$Sigma$ modulators involve a wide range of signals other than dc. In this paper, a quasi-linear model for $Delta$ $Sigma$ modulators with nonlinear feedback control analysis is presented, which accurately predicts the stability of higher-order single-loop 1-bit $Delta$$Sigma$ modulators for various types of input signals, such as single sinusoids, dual sinusoids, multiple sinusoids, and Gaussian. Theoretical values are shown to match closely with simulation results. The results of this paper would significantly speed up the design and evaluation of higher-order single-loop 1-bit $Delta$$Sigma$ modulators for various applications, including those that may require multiple-sinusoidal inputs or any general input composed of a finite number of sinusoidal components, circumventing the need to perform detailed time-consuming simulations to quantify stability limits. By using the proposed method, the difference between the predicted and the actual stable amplitude limits results in an error of less than 1 dB in the in-band signal-to-noise ratio for the third-order and higher-- rder $Delta$ $Sigma$ modulators for single-sinusoidal inputs. For single-sinusoidal, dual-sinusoidal, multiple-sinusoidal, and Gaussian inputs, the error is less than 2 dB for the fifth-order modulator and reduces to less than 1 dB for the sixth-order and higher-order $Delta$$Sigma$ modulators.
机译:当前预测delta-sigma稳定性的方法 $(Delta $ $ Sigma)$ 调制器主要限于直流输入。这对 $ Delta $ $ Sigma $ 调制器涉及直流以外的各种信号。在本文中, $ Delta $ $ Sigma $ 调制器,该调制器可准确预测高阶单环1位 $ Delta $ $ Sigma $ 调制器,用于各种类型的输入信号,例如单正弦波,双正弦波,多个正弦波和高斯信号。理论值显示与仿真结果紧密匹配。本文的结果将显着加快高阶单循环1位 $ Delta $ 的设计和评估。 – $ Sigma $ 调制器,可用于各种应用,包括可能需要多个正弦输入或由有限项组成的任何常规输入的调制器正弦波分量的数量,避免了执行详细的耗时仿真以量化稳定性极限的需要。通过使用所提出的方法,预测和实际稳定幅度限制之间的差异导致三阶及更高阶rder <公式公式类型的带内信噪比误差小于1 dB =“ inline”> $ Delta $ $ Sigma $ 用于单正弦输入的调制器。对于单正弦,双正弦,多正弦和高斯输入,五阶调制器的误差小于2 dB,六阶及更高阶的误差减小至小于1 dB “ inline”> $ Delta $ $ Sigma $ 调制器。

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