首页> 外文会议>Electronics, Circuits and Systems, 1999. Proceedings of ICECS '99. The 6th IEEE International Conference on >Time-variant CIC-filters for sample rate conversion with arbitrary rational factors
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Time-variant CIC-filters for sample rate conversion with arbitrary rational factors

机译:具有任意有理因数的时变CIC滤波器用于采样率转换

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Sample rate conversion (SRC) with rational factors can be realized by interpolation followed by decimation, where CIC-filters can be chosen for either. However, the necessary increase of the sample rate that goes with the interpolation is not feasible in most RF applications. Therefore a time-variant implementation of CIC-filters is presented which circumvents the high intermediate sample rate. This time-variant implementation results in a linear periodically time-variant system (LPTV) which is completely equivalent to its original linear time-invariant system (LTI) consisting of the interpolator and the decimator. Thus well-known methods of system analysis can be used by analysing the LTI system, while implementing the system as an LPTV system, avoiding the high intermediate sample rates of the LTI system. The advantage of CIC-filters not having stored the coefficients of the impulse response but rather the description of the impulse response, enabling an implementation which is independent of the interpolation- as well as the decimation-factor, is preserved with the LPTV system. In contrast to Lagrange interpolators cancelling only the image components of the interpolated signal, time-variant CIC-filters also cancel the aliasing components, which is important in applications, where antialiasing is more important than anti-imaging.
机译:具有合理因子的采样率转换(SRC)可以通过插值后进行抽取来实现,在这两种方法中都可以选择CIC滤波器。但是,在大多数RF应用中,随着插值的采样率的必要增加是不可行的。因此,提出了一种时变的CIC滤波器实现方案,它可以避免较高的中间采样率。这种时变的实现方式导致了一个线性周期性时变系统(LPTV),该系统完全等效于其最初的由内插器和抽取器组成的线性时变系统(LTI)。因此,可以通过分析LTI系统来使用众所周知的系统分析方法,同时将该系统实现为LPTV系统,从而避免了LTI系统的高中间采样率。 LPTV系统保留了CIC滤波器的优点,即它没有存储脉冲响应的系数,而是存储了脉冲响应的描述,从而实现了与插值以及抽取因子无关的实现。与拉格朗日内插器仅消除内插信号的图像分量相反,时变CIC滤波器也消除了混叠分量,这在抗混叠比抗成像更重要的应用中很重要。

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