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Effects of jitter on continuous time digital systems with granularity reduction

机译:抖动对降低粒度的连续时间数字系统的影响

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摘要

Performing digital signal processing in continuous time can be advantageous for a number of applications like biomedical implants, hearing aids, remote sensors, telecommunications, audio and speech processing. While the inherent advantages of digital implementations with respect to programmability and noise immunity are retained by this kind of signal processing, the power consumption can be much lower and the Signal to Noise Ratio (SNR) can be considerably better than for sampled data systems. The delay elements in continuous time systems must be however implemented as quasi continuous time delay lines. This is a completely different solution compared to sampled data systems and results in higher implementation costs. Furthermore the tolerances of the delay lines, mismatches between the delays of the same stage, and jitter can result in severe degradation of the system performance and must be carefully analyzed. In this contribution the effects of jitter on the signal spectrum as well as on the SNR will be considered in detail.
机译:连续时间执行数字信号处理对于诸如生物医学植入物,助听器,远程传感器,电信,音频和语音处理的许多应用可能是有利的。尽管数字实现在可编程性和抗噪性方面的固有优势通过这种信号处理得以保留,但功耗却要低得多,信噪比(SNR)可能要比采样数据系统好得多。然而,连续时间系统中的延迟元件必须实现为准连续时间延迟线。与采样数据系统相比,这是一个完全不同的解决方案,并导致更高的实施成本。此外,延迟线的容差,同一级延迟之间的不匹配以及抖动会导致系统性能严重下降,必须仔细分析。在此贡献中,将详细考虑抖动对信号频谱以及SNR的影响。

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