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Hybrid frequency-polarization shift-keying Modulation for optical transmission

机译:用于光传输的混合频偏移位键控调制

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In this paper, we propose a new modulation scheme based on combining frequency and polarization modulated signals, which we will refer to as hybrid frequency-polarization shift keying (FPolSK). The FPolSK modulation is basically an extension of the conventional M-PolSK modulation over orthogonal domains. This expansion enables representing signal constellation points over multidimensional space, which ensures increasing the geometric distances between these points, and in turn, improving the system power efficiency. On the other hand, compared with M-FSK modulation, FPolSK improves the bandwidth efficiency by employing less number of orthogonal frequencies to represent information symbols. Moreover, FPolSK is extremely useful for implementing communication systems that have limitations in power and bandwidth usage. This advantage comes from the fact that FPolSK inherently enables selecting the appropriate number of orthogonal frequencies that convey with system constraints. The contribution in this paper is threefold. First, we propose a design for the transmitter and the receiver of the FPolSK technique. Second, we perform analysis for the system power and bandwidth efficiencies. Third, we derive an expression for the system power spectral density (PSD). A performance comparison between the FPolSK modulation technique and previously developed techniques is also presented in this paper. Our results reveal that the proposed modulation scheme performs better than M-PolSK, M-DPSK, and M-FSK modulation schemes in terms of both power and bandwidth efficiencies. We have also found that same bandwidth efficiency can be obtained using different FPolSK modulation formats, and the PSD of the FPolSK modulation does not contain discrete components that are considered as a waste of power. Finally, the effects of the laser phase noise and fiber dispersion on the performance of the proposed modulation are also discussed in detail.
机译:在本文中,我们提出了一种基于组合频率和极化调制信号的新调制方案,我们将其称为混合频率-极化移位键控(FPolSK)。 FPolSK调制基本上是传统M-PolSK调制在正交域上的扩展。这种扩展使得可以在多维空间上表示信号星座图点,从而确保增加这些点之间的几何距离,进而提高系统功率效率。另一方面,与M-FSK调制相比,FPolSK通过使用较少数量的正交频率来表示信息符号来提高带宽效率。而且,FPolSK对于实现功率和带宽使用受到限制的通信系统非常有用。该优势来自FPolSK固有地能够选择在系统约束下传达的正交频率的适当数量。本文的贡献是三方面的。首先,我们为FPolSK技术的发送器和接收器提出一种设计。其次,我们对系统功率和带宽效率进行分析。第三,我们导出系统功率谱密度(PSD)的表达式。本文还介绍了FPolSK调制技术和以前开发的技术之间的性能比较。我们的结果表明,就功率和带宽效率而言,所提出的调制方案的性能优于M-PolSK,M-DPSK和M-FSK调制方案。我们还发现,使用不同的FPolSK调制格式可以获得相同的带宽效率,并且FPolSK调制的PSD不包含被视为浪费功率的离散分量。最后,还详细讨论了激光相位噪声和光纤色散对所提出的调制性能的影响。

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