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Area-Efficient 128- to 2048/1536-Point Pipeline FFT Processor for LTE and Mobile WiMAX Systems

机译:适用于LTE和移动WiMAX系统的区域有效的128至2048/1536点管线FFT处理器

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Fast Fourier transform (FFT) is widely used in digital signal processing and telecommunications, particularly in orthogonal frequency division multiplexing systems, to overcome the problems associated with orthogonal subcarriers. This paper presents a novel 128/256/512/1024/1536/2048-point single-path delay feedback (SDF) pipeline FFT processor for long-term evolution and mobile worldwide interoperability for microwave access systems. The proposed design employs a low-cost computation scheme to enable 1536-point FFT, which significantly reduces hardware costs as well as power consumption. In conjunction with the aforementioned 1536-point FFT computation scheme, the proposed design included an efficient three-stage SDF pipeline architecture on which to implement a radix-3 FFT. The new radix-3 SDF pipeline FFT processor simplifies its data flow and is easy to control, and the complexity of the resulting hardware is lower than that of existing structures. This paper also formulated a hardware-sharing mechanism to reduce the memory space requirements of the proposed 1536-point FFT computation scheme. The proposed design was implemented using 90 nm CMOS technology. Postlayout simulation results revealed a die area of approximately with power consumption of only 9.3 mW at 40 MHz.
机译:快速傅里叶变换(FFT)被广泛用于数字信号处理和电信,特别是在正交频分复用系统中,以克服与正交子载波相关的问题。本文提出了一种新颖的128/256/512/1024/1536/2048点单路径延迟反馈(SDF)流水线FFT处理器,用于微波接入系统的长期演进和移动世界范围的互操作性。所提出的设计采用了一种低成本的计算方案来实现1536点FFT,从而显着降低了硬件成本以及功耗。结合上述1536点FFT计算方案,提出的设计包括一种有效的三级SDF流水线架构,在该架构上可以实现基数3 FFT。新的radix-3 SDF流水线FFT处理器简化了其数据流,易于控制,并且所得硬件的复杂性低于现有结构。本文还制定了一种硬件共享机制,以减少所提出的1536点FFT计算方案的存储空间需求。拟议的设计是使用90 nm CMOS技术实现的。布局后的仿真结果表明,在40 MHz时,芯片面积约为9.3 mW,功耗仅为9.3 mW。

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