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A Low-Power Time-Interleaved 128-Point FFT for IEEE 802.15.3c Standard

机译:用于IEEE 802.15.3c标准的低功耗时间交错128点FFT

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This paper proposed a 128-point FFT for low data rate Audio Visual PHY (AVPHY) mode of IEEE 802.15.3c standard. The architecture process a continuous flow of 2 samples in parallel, leading to a throughput of 317.25 MSamples/s with a symbol duration 492 ns. The FFT computed in seven stages that uses radix-2 butterflies and complex rotations. The radix-2 butterflies and complex rotations are time-interleaved by factor of 2. This technique increases the area slightly for the radix-2 butterflies and complex rotators than the conventional radix-2 butterfly and complex rotator. However, this technique reduces the operating frequency of the radix-2 butterflies and complex rotators, which results the reduction of the power consumption of the whole FFT. Besides, the proposed architecture meets requirements of the throughput and latency. Experimental results reveal that besides its requirements, the design is efficient in area and power consumption, improving the results of previous approaches. Specifically, the proposed design consumes 2.87 mW and its area is 0.57 mm, while the wordlength is 16 bits.
机译:本文提出了IEEE 802.15.3C标准的低数据速率音频视觉PHY(AVPHY)模式的128点FFT。该架构处理平行的连续流动流量,导致延期的吞吐量为317.25,符号持续时间492 ns。 FFT在七个阶段计算,使用基拉2蝴蝶和复杂的旋转。基数-2蝴蝶和复杂的旋转是时间交错的因子。该技术对于基数-2蝴蝶的略微增加该区域,而不是传统的基地蝴蝶和复合旋转器。然而,该技术降低了基数-2蝴蝶的工作频率和复合旋转器,从而降低了整个FFT的功耗。此外,拟议的架构符合吞吐量和延迟的要求。实验结果表明,除了其要求外,该设计效率高,面积和功耗,提高了先前方法的结果。具体而言,所提出的设计消耗2.87兆瓦,其面积为0.57毫米,而字体长度为16位。

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