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Global stability, limit cycles and chaotic behaviors of second order interpolative sigma delta modulators

机译:二阶内插sigma delta调制器的整体稳定性,极限环和混沌行为

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摘要

It is well known that second order lowpass interpolative sigma delta modulators (SDMs) may suffer from instability and limit cycle problems when the magnitudes of the input signals are at large and at intermediate levels, respectively. In order to solve these problems, we propose to replace the second order lowpass interpolative SDMs to a specific class of second order bandpass interpolative SDMs with the natural frequencies of the loop filters very close to zero. The global stability property of this class of second order bandpass interpolative SDMs is characterized and some interesting phenomena are discussed. Besides, conditions for the occurrence of limit cycle and fractal behaviors are also derived, so that these unwanted behaviors will not happen or can be avoided. Moreover, it is found that these bandpass SDMs may exhibit irregular and conical-like chaotic patterns on the phase plane. By utilizing these chaotic behaviors, these bandpass SDMs can achieve higher signal-to-noise ratio (SNR) and tonal suppression than those of the original lowpass SDMs.
机译:众所周知,当输入信号的幅度分别处于较大和中间水平时,二阶低通内插sigma delta调制器(SDM)可能会遇到不稳定和极限循环问题。为了解决这些问题,我们建议将二阶低通插值SDM替换为特定类的二阶带通插值SDM,并使环路滤波器的固有频率非常接近零。表征了此类二阶带通插值SDM的全局稳定性,并讨论了一些有趣的现象。此外,还导出了极限环和分形行为的发生条件,因此这些不良行为不会发生或可以避免。此外,发现这些带通SDM可以在相平面上表现出不规则和圆锥状的混沌图案。通过利用这些混沌行为,这些带通SDM可以实现比原始低通SDM更高的信噪比(SNR)和音调抑制。

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