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High performance interpolation filter using direct computation

机译:使用直接计算的高性能插值滤波器

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A Computational Filter (CF) that employs a sample calculation functional block is presented. CF significantly reduces the hardware requirements to realize an interpolation filter. The Computational Filter is compared with advanced Finite Impulse Response (CFIR). CFIR programmable filter is implemented using Computation Sharing Multiplication (CSHM) technique to optimize the conventional design. The proposed CF significantly reduces the implementation area as compared to CFIR. The maximum average error for wide range of interpolation factors from 8 to 256 is less than 3% for CF and 0.02 %for CFIR. Xilinx Virtex5 FPGA XC5VTX240T device is used to compare the proposed design and the advanced CFIR for different interpolation factors. The Computational Filter average reduction in hardware implementation is between 78.8 % and 97.1% for interpolation factor of 8 to 64. The maximum operating frequency for the CFIR is 1 MHZ.
机译:提出了采用样本计算功能块的计算滤波器(CF)。 CF大大降低了实现插值滤波器的硬件要求。将计算滤波器与高级有限冲激响应(CFIR)进行比较。 CFIR可编程滤波器是使用计算共享乘法(CSHM)技术实现的,以优化常规设计。与CFIR相比,拟议的CF大大减少了实施面积。对于8到256的较大内插因子,最大平均误差对于CF小于3%,对于CFIR小于0.02%。 Xilinx Virtex5 FPGA XC5VTX240T器件用于比较所建议的设计和针对不同插值因子的高级CFIR。对于8到64的插值因子,硬件实现中的计算滤波器平均降低幅度为78.8%至97.1%。CFIR的最大工作频率为1 MHZ。

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