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首页> 外文期刊>Journal of Lightwave Technology >Transponder Implementation Penalty-Accounted Gaussian-Noise-Based Performance Modeling of Fiber-Optic Transmission Systems
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Transponder Implementation Penalty-Accounted Gaussian-Noise-Based Performance Modeling of Fiber-Optic Transmission Systems

机译:转发器实施基于罚款的光纤传输系统的高斯噪声性能建模

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摘要

In this article we describe an analytical model for estimating performance degradations caused by non-ideal transponder implementation for coherent modulation formats based on parametric fitting of back to back measurements. We discuss in detail several reasons for implementation penalties (IP) such as noise in the transmitter and the receiver, non-ideal filtering, and quantization in the analog-to-digital converter, and how the fitting parameters depend on these penalties. We consider how to combine the IP model and the Gaussian noise (GN) model of nonlinear propagation which includes Amplified Spontaneous Emission (ASE) and Nonlinear Interference (NLI) noise impacts. We modify the Signal to Noise Ratio (SNR) expression of the GN model to include any performance impairments from a non-ideal transponder and additional link components apart from the transponder. In this article we consider transponders based on 16QAM and 2ASK/4PSK-8QAM modulation formats. Then we compare the modeling results obtained with the IP and GN models with experimental data for erbium doped fiber amplifier (EDFA) and Raman-assisted transmission systems. We find that this modeling approach demonstrates good agreement experiment data.
机译:在本文中,我们描述了一种用于估计由非理想转发器实现引起的性能降级的分析模型,其基于接收到回测量的参数拟合的相干调制格式引起的非理想转发器实现。我们详细讨论了实现惩罚(IP)在变送器中的噪声以及模数转换器中的噪声,非理想过滤和量化等几种原因,以及拟合参数如何取决于这些惩罚。我们考虑如何将IP模型和高斯噪声(GN)模型组合,包括放大的自发发射(ASE)和非线性干扰(NLI)噪声影响。我们修改GN模型的信噪比(SNR)表达式,以包括与非理想应答器和附加连杆组件的任何性能损伤,以及与应答器外的附加连杆组件。在本文中,我们考虑基于16QAM和2ASK / 4PSK-8QAM调制格式的转发器。然后,我们将使用IP和GN型号获得的建模结果与Erbium掺杂光纤放大器(EDFA)和拉曼辅助传输系统的实验数据进行了比较。我们发现,此建模方法展示了良好的协议实验数据。

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