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Non-orthogonal basis expansion based laser phase noise suppression in CO-OFDM systems

机译:基于非正交的基于膨胀的Co-OFDM系统激光相位噪声抑制

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摘要

A laser phase noise suppression approach, based on non-orthogonal basis expansion (NOBE), is proposed for coherent optical orthogonal frequency division multiplexing (CO-OFDM) systems. In the NOBE approach, the time-varying laser phase noise is (sub-) optimally reconstructed using a bank of non-orthogonal expansion bases. Theoretical derivation of the non-orthogonal basis expansion matrices using the minimum mean-square error (MMSE) criteria is presented analytically. Compared with the conventional inverse discrete Fourier transform (IDFT)-based orthogonal basis expansion (OBE) method, the proposed NOBE approach, with the same expansion order L, offers higher accuracy in carrier phase estimation. Numerical analysis shows that the system's tolerance to laser phase noise is significantly enhanced by the new method thanks to the lower modeling error. For example, the laser linewidth-symbol period product in an similar to 100-Gbps 16QAM CO-OFDM system at an optical signal-tonoise-ratio (OSNR) of 22 dB achieves 3.87x10(-2) with the NOBE (L = 3), which is approximately twice that with the OBE. The impact of residual carrier frequency offset (CFO) on the NOBE is also semi-analytically investigated, which shows that the NOBE has robust performance for the residual CFO up to 2 MHz under a subcarrier spacing of 31.25 MHz. By taking advantage of the elaborately-designed comb-type pilot subcarriers pattern, the computational complexity of NOBE is also lower than that of the OBE. Since the NOBE with a sub-optimal basis expansion matrix does not require a priori knowledge of the product of laser linewidth and symbol period, it is well-suited for practical implementations.
机译:一种激光相位噪声抑制方法中,基于非正交基扩展(野部),提出了一种用于相干光正交频分复用(CO-OFDM)系统。在野部的方法中,随时间变化的激光相位噪声(子)使用的非正交扩展碱基的银行最佳重建。使用最小均方误差(MMSE)标准的非正交基扩展矩阵的理论推导被解析地提示。与传统的离散傅里叶逆变换进行比较(IDFT)为基础的正交基扩展(OBE)的方法,所提出的野部方法,将具有相同扩展阶数L,在载波相位估计报价更高的精度。数值分析表明,该系统的耐受性激光相位噪声显著的新方法得益于较低的建模误差的提高。例如,在一个类似于100-Gbps的16QAM CO-OFDM系统中的一个光学的22分贝信噪比(OSNR)的激光线宽符号周期产品达到3.87x10(-2)与野部(L = 3 ),其是大约两倍,与OBE。残留载波频率对野部偏移(CFO)的影响也是半解析调查,其示出了野部具有用于31.25 MHz的子载波间隔下剩余CFO高达2 MHz鲁棒性能。通过采取精心设计的梳型导频子载波图案的优点,野部的计算复杂度比OBE的也更低。由于用次优的基础上扩展矩阵不需要激光线宽和符号周期的乘积的先验知识的野部,它是非常适合于实际的实施方式。

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