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An Efficient Algorithm for the Optimization of FIR Filters Synthesized Using the Multistage Frequency-Response Masking Approach

机译:用多级频率响应屏蔽方法合成FIR滤波器的高效算法

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摘要

A very efficient technique to drastically reduce the number of multipliers and adders in narrow transition-band linear-phase finite-impulse response digital filters is to use the one-stage or multistage frequency-response masking (FRM) approach, which has been originally introduced by Lim and further improved by Lim and Lian. In these original synthesis techniques, the subfilters in the overall implementation are separately designed. As shown earlier by the authors of this contribution together with Johansson, the arithmetic complexity in one-stage FRM filter designs can be considerably reduced by using the following two-step technique for simultaneously optimizing all the subfilters. First, a suboptimal solution is found by using a simple design scheme. Second, this solution is used as a start-up solution for further optimization, which is carried out with the aid of an efficient nonlinear optimization algorithm. This paper exploits this approach to synthesizing multistage FRM filters. An example taken from the literature illustrates that both the number of multipliers and the number of adders for the resulting optimized multistage FRM filters are approximately 70 percent compared with those of the filters synthesized using the original multistage FRM filter design schemes. Additional examples are included in order to show the benefits provided by the proposed synthesis scheme over other recently published design techniques, in terms of an improved performance of the resulting solution, a higher accuracy of the solution, and a faster speed required to arrive at the best solution.
机译:大幅减少窄过渡带线性相位有限脉冲响应数字滤波器中乘法器和加法器数量的一种非常有效的技术是使用最初引入的一级或多级频率响应屏蔽(FRM)方法由Lim提供,并由Lim和Lian进一步改进。在这些原始的综合技术中,总体实现中的子滤波器是单独设计的。正如该贡献的作者先前与Johansson一起显示的那样,通过使用以下两步技术同时优化所有子滤波器,可以大大降低一级FRM滤波器设计中的算术复杂度。首先,通过使用简单的设计方案找到了次优的解决方案。其次,该解决方案用作进一步优化的启动解决方案,该解决方案借助有效的非线性优化算法来执行。本文利用这种方法来合成多级FRM滤波器。从文献中得出的一个例子说明,与使用原始多级FRM滤波器设计方案合成的滤波器相比,所得到的优化多级FRM滤波器的乘数和加法器数量均约为70%。包括其他示例,目的是显示所提出的合成方案相对于其他最新发布的设计技术所提供的好处,包括改进所得解决方案的性能,提高解决方案的精度以及达到所需解决方案所需的更快速度。最好的解决方案。

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