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Design of Computationally Efficient Sharp FIR Filter Utilizing Modified Multistage FRM Technique for Wireless Communications Systems

机译:利用改进的多级FRM技术的无线通信系统计算高效的Sharp FIR滤波器设计

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摘要

Modern wireless communications gadgets demand multi-standard communications facilities with least overlap between different input radio channels. A sharp digital filter of extremely narrow transition-width with lower stop band ripples offers alias-free switching among the preferred frequency bands. A computationally competent low pass filter (LPF) structure based on the multistage frequency response masking (FRM) approach is proposed for the design of sharp finite impulse response (FIR) filters which are suitable for wireless communications applications. In comparison of basic FRM with other existing multistage FRM structures, the proposed structure has a narrow transition bandwidth and higher stop band attenuation with significant reduction in terms of the number of computational steps. A design example is incorporated to demonstrate the efficiency of the proposed approach. Simulation results establish the improvement of the proposed scheme over other recently published design strategies.
机译:现代无线通信设备需要多标准通信设施,并且不同输入无线电信道之间的重叠最少。尖锐的数字滤波器,其过渡宽度极窄,且阻带纹波较低,可在首选频段之间进行无混叠切换。提出了一种基于计算能力的低通滤波器(LPF)结构,该结构基于多级频率响应屏蔽(FRM)方法,用于设计适用于无线通信应用的尖锐有限冲激响应(FIR)滤波器。与基本的FRM和其他现有的多级FRM结构相比,该结构具有较窄的过渡带宽和较高的阻带衰减,并且在计算步骤数量方面显着减少。结合一个设计实例来证明所提出方法的效率。仿真结果确定了该提议方案相对于其他最近发布的设计策略的改进。

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