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A novel 3780-point FFT processor scheme for the time domain synchronous OFDM system

机译:一种用于时域同步OFDM系统的新颖的3780点FFT处理器方案

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The 3780-point FFT is a main component of the time domain synchronous OFDM (TDS-OFDM) system and the key technology in the Chinese digital Multimedia/TV Broadcasting-Terrestrial (DMB-T) national standard. Since 3780 is not a power of 2, the classical radix-2 or radix-4 FFT algorithm cannot be applied directly. Hence, the winograd Fourier transform algorithm (WFTA) and the Good-Thomas prime factor algorithm (PFA) are used to implement the 3780-point FFT processor. However, the structure based on WFTA and PFA has a large computational complexity and requires many DSPs in hardware implementation. In this paper, a novel 3780-point FFT processor scheme is proposed, in which a 60(63 iterative WFTA architecture with different mapping methods is imported to replace the PFA architecture, and an optimized coOrdinate Rotation DIgital Computer (CORDIC) module is used for the twiddle factor multiplications. Compared to the traditional scheme, our proposed 3780-point FFT processor scheme reduces the number of multiplications by 45% at the cost of 1% increase in the number of additions. All DSPs are replaced by the optimized CORDIC module and ROM. Simulation results show that the proposed 3780-point FFT processing scheme satisfies the requirement of the DMB-T standard, and is an efficient architecture for the TDS-OFDM system.
机译:3780点FFT是时域同步OFDM(TDS-OFDM)系统的主要组成部分,也是中国数字多媒体/电视地面广播(DMB-T)国家标准中的关键技术。由于3780不是2的幂,因此经典的radix-2或radix-4 FFT算法无法直接应用。因此,使用Winograd傅里叶变换算法(WFTA)和Good-Thomas素因子算法(PFA)来实现3780点FFT处理器。但是,基于WFTA和PFA的结构具有很大的计算复杂性,并且在硬件实现中需要许多DSP。本文提出了一种新颖的3780点FFT处理器方案,其中引入了具有不同映射方法的60(63迭代WFTA架构)以替代PFA架构,并使用了优化的协同旋转数字计算机(CORDIC)模块与传统方案相比,我们提出的3780点FFT处理器方案将乘法次数减少了45%,而增加的次数却增加了1%,所有DSP均被优化的CORDIC模块所取代,并且ROM仿真结果表明,所提出的3780点FFT处理方案满足DMB-T标准的要求,是TDS-OFDM系统的一种有效架构。

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