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High-speed real-time OFDM transmission based on FPGA

机译:基于FPGA的高速实时OFDM传输

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In this paper, we review our recent research progresses on real-time orthogonal frequency division multiplexing (OFDM) transmission based on FPGA. We successfully demonstrated four-channel wavelength-division multiplexing (WDM) 256.51Gb/s 16-ary quadrature amplitude modulation (16QAM)-OFDM signal transmission system for short-reach optical amplifier free inter-connection with real-time reception. Four optical carriers are modulated by four different 16QAM-OFDM signals via 10G-class direct modulation lasers (DMLs). We achieved highest capacity real-time reception optical OFDM signal transmission over 2.4-km SMF with the bit-error ratio (BER) under soft-decision forward error correction (SD-FEC) limitation of 2.4×10~(-2). In order to achieve higher spectrum efficiency (SE), we demonstrate 4-channel high level QAM-OFDM transmission over 20-km SMF-28 with real-time reception. 58.72-Gb/s 256QAM-OFDM and 56.4-Gb/s 128QAM-OFDM signal transmission within 25-GHz grid is achieved with the BER under 2.4×10~(-2) and real-time reception.
机译:在本文中,我们回顾了基于FPGA的实时正交频分复用(OFDM)传输的最新研究进展。我们成功地演示了四通道波分复用(WDM)256.51Gb / s 16进制正交调幅(16QAM)-OFDM信号传输系统,用于短距离光放大器与实时接收的免费互连。四个光学载波通过10G级直接调制激光器(DML)由四个不同的16QAM-OFDM信号调制。在软判决前向纠错(SD-FEC)限制为2.4×10〜(-2)的情况下,在误码率(BER)下,我们在2.4 km SMF上实现了最大容量的实时接收光OFDM信号传输。为了实现更高的频谱效率(SE),我们演示了在20 km SMF-28上具有实时接收的4通道高级QAM-OFDM传输。 25 GHz网格内的58.72 Gb / s 256QAM-OFDM和56.4 Gb / s 128QAM-OFDM信号传输是采用2.4×10〜(-2)的BER和实时接收实现的。

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