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Interpolation of Bounded Bandlimited Signals and Applications

机译:有界带限信号的插值及其应用

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A method to interpolate a bounded bandlimited signal from its own samples with minimum complexity is presented that guarantees an a priori specified accuracy. The method is the result of combining a fast-converging sampling expansion with the Farrow interpolator technique. It provides important complexity reductions in various signal processing applications, from which three cases are studied. For the Farrow interpolator, it assures that the interpolation error will be smaller than a known bound, both in the time and frequency domains. For delay estimation, the method allows one to decouple a given estimation/detection algorithm in two steps. In the first one, a few finite convolutions are carried out in order to compute a set of interpolation coefficients. In the second, the algorithm is executed but with a complexity independent of the length of the temporal observation interval. Besides, it is shown how to introduce this decoupling in the matched filter, MUSIC, and conditional maximum-likelihood delay estimators. Finally, the method is employed to give a simple solution to an important efficiency problem in the simulation of communications systems: the generation of Rayleigh processes.
机译:提出了一种以最小的复杂度对来自其自身样本的有界带限信号进行插值的方法,该方法可以保证事先指定的精度。该方法是将快速收敛的采样扩展与Farrow插值器技术结合在一起的结果。它在各种信号处理应用中提供了重要的复杂性降低,从中研究了三种情况。对于Farrow插值器,它可以确保在时域和频域中插值误差均小于已知范围。对于延迟估计,该方法允许以两个步骤解耦给定的估计/检测算法。在第一个中,执行一些有限的卷积以计算一组插值系数。在第二步中,执行算法,但是其复杂度与时间观察间隔的长度无关。此外,还展示了如何在匹配滤波器,MUSIC和条件最大似然延迟估计器中引入这种去耦。最后,该方法用于为通信系统仿真中的重要效率问题(瑞利过程的生成)提供简单的解决方案。

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