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Design of adaptive MC-CDMA receiver using low power parallel-pipelined FFT architecture

机译:使用低功率平行管道FFT架构设计自适应MC-CDMA接收机

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A design of multicarrier code division multiple access (MC-CDMA) receiver is proposed in this paper with novel low power parallel-pipelined FFT. The receiver is constructed based on number of sub-carrier systems which include two FFT blocks for demodulation, combiners for dispreading and equalizing the FFT outputs to recover the transmitted signals, and Viterbi decoder. The FFT architecture is constructed based on parallel-pipelined technique which includes different combination of hybrid low power techniques such as parallel-pipelined architectures, multiplier-less units which replace the complex multipliers in FFTs, low-power commutators based on an advanced interconnection, and low power butterfly architecture. Clock gating is extensively used in combiner to reduce power consumption by disabling the clock for the inactive circuits in FFT architecture. Viterbi decoder is implemented using trace back technique. It reduces the total power consumption to a considerable amount. By utilizing all the above techniques the design of proposed MC-CDMA receiver is implemented with Verilog HDL and synthesized in Cadence design tool using TSMC 0.18μm technology file. The result shows the overall power reduction about 48%, area reduction 23%.
机译:多载波码分多址(MC-CDMA)接收机的设计在本文中具有新颖的低功率并行流水线FFT算法。接收器是基于子载波的系统,包括用于解调FFT 2块,解扩和均衡所述FFT输出来恢复所发送的信号组合器,和维特比解码器的数量构成。的FFT体系结构是基于并行流水线技术,其包括混合的低功耗技术诸如并行流水线结构,乘法器 - 更少单元,其取代复数乘法器中基于先进的互连的FFT,低功耗的换向器不同组合构成,并低功耗蝴蝶架构。时钟门控在组合器广泛使用通过禁用时钟用于FFT架构不活动电路,以减少电力消耗。维特比译码器采用追溯技术实现。它降低总功耗相当数量。通过利用所有上述技术提出了MC-CDMA接收器的设计使用Verilog HDL实现并采用TSMC0.18μm工艺文件中的Cadence设计工具合成。结果表明约48%,面积缩减23%的总功率降低。

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