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Optical spectrally efficient FDM system for electrical and optical bandwidth saving

机译:光谱有效的FDM系统可节省电气和光学带宽

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A newly proposed optical-spectrally efficient frequency division multiplexing (O-SEFDM) system reduces the required communication spectrum by employing non-orthogonal and overlapping sub-carriers. This results in higher spectral efficiency relative to an equivalent optical-orthogonal frequency division multiplexing (O-OFDM) delivering the same data rate. O-SEFDM technique can save spectrums in both the electrical and optical domains. However, due to the loss of orthogonality, detection of O-SEFDM signals becomes more complicated. In this work, we employ a hybrid soft Iterative Detection (ID) together with fixed sphere decoder (FSD), concurrently optimizing performance and complexity. We show that for Bandwidth Compression Factor (BCF) of up to 25 percent, we can achieve the same performance as O-OFDM. This verifies Mazo's rates of transmission 25 percent faster than the Nyquist rate. We report a 4QAM system occupying approximately the same bandwidth as that of an 8QAM with 1.6 dB improved error performance for the same transmission rate. The same system shows only minor power penalty (1 dB) relative to its 4QAM OFDM bit rate equivalent but with the advantage of 30% bandwidth saving. This study reports1 optical and electrical bandwidth saving with minor error performance degradation and paves the way for practical.
机译:新提出的光学光谱高效频分复用(O-SEFDM)系统通过采用非正交和重叠的子载波来减少所需的通信频谱。相对于提供相同数据速率的等效光正交频分复用(O-OFDM),这导致更高的频谱效率。 O-SEFDM技术可以保存电域和光域中的频谱。然而,由于正交性的损失,O-SEFDM信号的检测变得更加复杂。在这项工作中,我们将混合软迭代检测(ID)与固定球面解码器(FSD)结合使用,同时优化了性能和复杂性。我们表明,对于高达25%的带宽压缩因子(BCF),我们可以实现与O-OFDM相同的性能。这验证了Mazo的传输速率比Nyquist传输速率快25%。我们报告了一个4QAM系统占用的带宽与8QAM大约相同,而在相同的传输速率下,其错误性能提高了1.6 dB。相对于其4QAM OFDM比特率等效系统,同一系统仅显示较小的功率损失(1 dB),但具有节省30%带宽的优势。这项研究报告1节省了光和电带宽,并且误差性能略有下降,为实际应用铺平了道路。

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