零频率滤波器时钟倾斜优化VLSI架构

K. Radhakrishnan, S. Rani
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引用次数: 1

摘要

在当今世界,手机在交流中扮演着重要的角色。使用手机的人经常面临影响通话质量的噪声信号问题。被动噪声控制可以抑制高频噪声。这是一种通过绝缘材料、吸音瓦或消声器等隔音材料而不是电源来减少声音的技术。在较低频率下,被动技术需要的材料过于笨重。因此,我们选择了一种将噪声信号与语音信号分离的主动降噪方法。零频滤波器是一种用于对带噪语音信号进行主动降噪的技术。该滤波器用于表征来自语音信号的声门活动,从而消除噪声。与其他降噪方法相比,该方法的主要优点是不需要单独对噪声进行建模。本文提出了一种零频滤波器的VLSI实现架构,并对其进行了有效的时钟偏差优化。该架构可作为移动应用中的语音处理器。随着时钟频率的增加和技术向亚纳米工艺的发展,在设计中处理时钟违规问题变得越来越复杂和具有挑战性。传统方法在时序关闭过程中以全局零偏斜为目标,在面积和功率上付出代价,并且限制了可实现的最大工作频率。有用的时钟倾斜优化是一种帮助实现定时关闭的新兴技术。本文提出的工作通过有用的时钟倾斜优化实现了面积开销约15.87%的定时关闭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clock skew optimized VLSI architecture for zero frequency filter
In today's world, mobile phones play an important role in communication. People using mobile phones often face the problem of noise signals affecting the quality of speech. Passive noise control suppresses the higher frequency acoustic noise. It is a technique that provides sound reduction by noise-isolating materials such as insulation, sound-absorbing tiles, or a muffler rather than a power source. In lower frequencies, passive techniques require material that is too bulky and heavy. So an alternative method called active noise cancellation that separates noise signal and speech signal is chosen. Zero frequency filter is a technique used for active noise cancellation of noisy speech signals. This filter is used for the characterization of glottal activity from speech signals thereby cancelling the noise. The main advantage of this method when compared to other noise cancellation methods is that noise need not be modeled separately. In this paper is to present the VLSI implementation architecture of zero frequency filter with useful clock skew optimization. This architecture can be used as voice processor in mobile applications. As clock frequency increases and the technology move towards sub-nanometer process, handling timing violations in the design becomes an increasingly complex and challenging task. Traditional approaches target for global zero skew in the process of timing closure costs in area and power and also limits the maximum achievable operating frequency. Useful clock skew optimization is an emerging technique that helps achieve timing closure. The work presented in this paper achieves timing closure with an area overhead of about 15.87% through useful clock skew optimization.
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