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A Low-Complexity 128-Point Mixed-Radix FFT Processor for MB-OFDM UWB Systems

机译:用于MB-OFDM UWB系统的低复杂度128点混合基数FFT处理器

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In this paper, we present a fast Fourier transform (FFT) processor with four parallel data paths for multiband orthogonal frequency-division multiplexing ultra-wideband systems. The proposed 128-point FFT processor employs both a modified radix-2~4 algorithm and a radix-2~3 algorithm to significantly reduce the numbers of complex constant multipliers and complex booth multipliers. It also employs substructure-sharing multiplication units instead of constant multipliers to efficiently conduct multiplication operations with only addition and shift operations. The proposed FFT processor is implemented and tested using 0.18 μm CMOS technology with a supply voltage of 1.8 V. The hardware- efficient 128-point FFT processor with four data streams can support a data processing rate of up to 1 Gsample/s while consuming 112 mW. The implementation results show that the proposed 128-point mixed-radix FFT architecture significantly reduces the hardware cost and power consumption in comparison to existing 128-point FFT architectures.
机译:在本文中,我们为多频带正交频分复用超宽带系统提供了具有四个并行数据路径的快速傅立叶变换(FFT)处理器。提出的128点FFT处理器同时采用了改进的radix-2〜4算法和radix-2〜3算法,以显着减少复数常数乘法器和复数展位乘法器的数量。它还采用了子结构共享乘法单元而不是常数乘法器,从而仅使用加法和移位运算就可以有效地进行乘法运算。拟议的FFT处理器使用0.18μmCMOS技术在1.8 V供电电压下进行实施和测试。具有四个数据流的硬件高效128点FFT处理器可支持高达1 Gsample / s的数据处理速率,而消耗112兆瓦实施结果表明,与现有的128点FFT架构相比,提出的128点混合基数FFT架构显着降低了硬件成本和功耗。

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