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VLSI Architecture for a Reconfigurable Spectrally Efficient FDM Baseband Transmitter

机译:用于可重新配置的高效频谱FDM基带发射机的VLSI架构

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Spectrally efficient FDM (SEFDM) systems employ non-orthogonal overlapped carriers to improve spectral efficiency for future communication systems. One of the key research challenges for SEFDM systems is to demonstrate efficient hardware implementations for transmitters and receivers. Focusing on transmitters, this paper explains the SEFDM concept and examines the complexity of published modulation algorithms, with particular consideration to implementation issues. We then present two new variants of a digital baseband transmitter architecture for SEFDM, based on a modulation algorithm which employs the discrete Fourier transform (DFT) implemented efficiently using the fast Fourier transform (FFT). The algorithm requires multiple FFTs, which can be configured either as parallel transforms, which is optimal for throughput or using a multi-stream FFT architecture, for reduced circuit area. We propose a simplified approach to IFFT pruning for pipeline architectures, based on a token-flow control style, specifically optimized for the SEFDM application. Reconfigurable implementations for different bandwidth compression ratios, including conventional OFDM, are easily derived from the proposed implementations. The SEFDM transmitters have been synthesized, placed and routed in a commercial 32 nm CMOS process technology and also verified in FPGA. We report circuit area and simulated power dissipation figures, which confirm the feasibility of SEFDM transmitters.
机译:频谱高效的FDM(SEFDM)系统采用非正交的重叠载波来提高未来通信系统的频谱效率。 SEFDM系统的主要研究挑战之一是演示用于发射机和接收机的高效硬件实现。本文以发射机为重点,解释了SEFDM概念,并研究了已发布的调制算法的复杂性,并特别考虑了实现问题。然后,我们提出一种基于SEFDM的数字基带发射机体系结构的两个新变体,该变体基于一种采用快速傅立叶变换(FFT)有效实现的离散傅立叶变换(DFT)的调制算法。该算法需要多个FFT,可以将其配置为并行转换(这对于吞吐量而言是最佳的),也可以使用多流FFT架构来减少电路面积。我们基于令牌流控制样式(针对SEFDM应用程序进行了优化),提出了一种简化的方法,用于管道体系结构的IFFT修剪。从所提出的实现中可以容易地得出针对不同带宽压缩率的可重新配置的实现,包括常规的OFDM。 SEFDM发射器已经在商用32 nm CMOS工艺技术中进行了合成,放置和布线,并且还在FPGA中进行了验证。我们报告了电路面积和模拟的功耗数据,这些数据证实了SEFDM发射机的可行性。

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