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A Survey of FIR Filter Design Techniques: Low-complexity, Narrow Transition-band and Variable Bandwidth

机译:FIR滤波器设计技术调查:低复杂性,窄过渡带和可变带宽

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摘要

In the present century, digital signal processing (DSP) approaches are considered to be one of the most powerful technologies which may shape the science and technology in coming decades. From 1970 onwards, a drastic revolution took place in a wider domain of DSP which has made it popular in several studies such as radar and sonar signal processing, digital televisions, wireless communication scenarios and other multimedia setup etc. Digital filters form the backbone of this DSP architecture and in point of fact the field of digital filter design has drawn justified recognition from the researchers throughout the world for the last 50 years. In connection to this, thousands of research articles may be found from the literature which had extensively addressed on the design of such filters. In order to meet the requirement of narrow transition-band, finite impulse response (FIR) filters are commonly assumed to be of higher order and accordingly it significantly enhances computational complexity. In regard to this, construction of hardware efficient digital filters had drawn significant consideration which aims to include minimum hardware elements during its application and consequently consumes less power. This review paper illustrates various techniques for the implementation of hardware efficient narrow transition-band FIR filter and investigates a number of favourable attributes which are capable in sustaining the stringent requirements of communication standards. A good number of relevant articles are taken from the literature so as to make a robust and complete review.
机译:在本世纪中,数字信号处理(DSP)方法被认为是最强大的技术之一,可能在未来几十年来塑造科学和技术。从1970年开始,在DSP的更广泛的DSP中发生了激烈的革命,它在雷达和声纳信号处理,数字电视,无线通信场景等多媒体设置等几个研究中使其流行。数字过滤器形成了骨干DSP架构和事实上,数字滤波器设计领域在过去50年里汲取了世界各地研究人员的合理识别。在此目的,可以从文献中发现成千上万的研究文章,这些文章在这种过滤器的设计上广泛寻求。为了满足窄过渡带的要求,通常假设有限脉冲响应(FIR)过滤器具有更高的顺序,因此它显着提高了计算复杂性。在此方面,硬件高效数字滤波器的构造已经绘制了显着考虑,其旨在包括在其应用过程中的最小硬件元件,因此消耗更少的功率。该综述论文说明了实现硬件高效窄转换带FIR滤波器的各种技术,并调查许多有利的属性,可以维持通信标准的严格要求。众多相关文章取自文献,以便进行稳健和完全审查。

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