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Low latency IFFT design for OFDM systems supporting full-duplex FDD

机译:OFDM系统支持全双工FDD的低延迟IFFT设计

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In this paper, we describe a low latency Inverse Fast Fourier Transform (IFFT) design method for OFDM systems supporting full-duplex Frequency Division Duplex (FDD). To support full-duplex FDD OFDM systems means that transmission and reception are simultaneously performed. In order to reduce the IFFT output latency, we propose the reordering scheme of IFFT input data. By using the reordered IFFT input data, both the output latency and the memory size in the first stage of IFFT are significantly reduced. In the OFDM systems, input data of the IFFT corresponding to guard band are assigned as null. Low latency IFFT design method is proposed based on the fact that there are many null as an input data of IFFT. The proposed method focuses on reducing the memory size in the first stage of single-path delay feedback (SDF) IFFT architectures since the first stage occupies about 50% of the overall memory. To verify the efficiency of the proposed method, 2048-point IFFT with radix-2 SDF architecture is used and reduced about 41% compared with conventional architecture.
机译:在本文中,我们描述了支持全双工频分双工(FDD)的OFDM系统的低延迟逆快速傅里叶变换(IFFT)设计方法。为了支持全双工FDD OFDM系统意味着同时执行传输和接收。为了降低IFFT输出延迟,我们提出了IFFT输入数据的重新排序方案。通过使用重新排序的IFFT输入数据,IFFT的第一阶段中的输出延迟和存储器大小都显着降低。在OFDM系统中,对应于保护频带的IFFT的输入数据被分配为NULL。基于以下事实,提出了低延迟IFFT设计方法,即存在IFFT的输入数据。所提出的方法侧重于减少单路径延迟反馈(SDF)IFFT体系结构的第一阶段中的存储器大小,因为第一阶段占据总存储器的大约50±%。为了验证所提出的方法的效率,与传统架构相比,使用具有基数-2SDF架构的2048点IFFT,并减少约41%。

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