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Low power and high-speed implementation of fir filters for software defined radio receivers

机译:适用于软件定义的无线电接收器的冷杉滤波器的低功耗和高速实现

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The most computationally intensive part of the wideband receiver of a software defined radio (SDR) is the intermediate frequency (IF) processing block. Digital filtering is the main task in IF processing. The computational complexity of finite impulse response (FIR) filters used in the IF processing block is dominated by the number of adders (subtracters) employed in the multipliers. This paper presents a method to implement FIR filters for SDR receivers using minimum number of adders. We use an arithmetic scheme, known as pseudo floating-point (PFP) representation to encode the filter coefficients. By employing a span reduction technique, we show that the filter coefficients can be coded using considerably fewer bits than conventional 24-bit and 16-bit fixed-point filters. Simulation results show that the magnitude responses of the filters coded in PFP meet the attenuation requirements of wireless communication standard specifications. The proposed method offers average reductions of 40% in the number of adders and 80% in the number of full adders needed for the coefficient multipliers over conventional FIR filter implementation methods
机译:软件定义无线电(SDR)宽带接收机中计算量最大的部分是中频(IF)处理块。数字滤波是中频处理的主要任务。 IF处理模块中使用的有限脉冲响应(FIR)滤波器的计算复杂度由乘法器中使用的加法器(减法器)数量决定。本文提出了一种使用最少数量的加法器为SDR接收器实现FIR滤波器的方法。我们使用一种称为伪浮点(PFP)表示的算术方案来对滤波器系数进行编码。通过采用跨度减少技术,我们证明可以使用比传统的24位和16位定点滤波器少得多的位对滤波器系数进行编码。仿真结果表明,用PFP编码的滤波器的幅度响应符合无线通信标准规范的衰减要求。与传统的FIR滤波器实现方法相比,所提出的方法使系数乘法器所需的加法器数量平均减少了40%,完全加法器数量减少了80%

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