In this paper, we propose an analytical model to estimate the signal-to-noise ratio (SNR) at the output of an adaptive equalizer in intensity modulation and direct detection (IMDD) optical transmission systems affected by shot noise, thermal noise, relative intensity noise (RIN), chromatic dispersion (CD) and bandwidth limitations. We develop the model as an extension of a previously presented one, and then we test its accuracy by sweeping the main parameters of a 4-PAM-based communication system such as RIN coefficient, extinction ratio, CD coefficient and equalizer memory. Our findings show a remarkable agreement between time-domain simulations and analytical results, with SNR discrepancies below 0.1 dB in most cases, for both feed-forward and decision-feedback equalization. We consider that the proposed model is a powerful tool for the numerical design of strongly band-limited IMDD systems using receiver equalization, as it happens in most of modern and future M-PAM solutions for short reach and access systems.
翻译:翻译后的摘要:
在本文中,我们提出了一种分析模型,用于估计受到射击噪声、热噪声、相对强度噪声(RIN)、色散(CD)和带宽限制影响的强度调制和直接检测(IMDD)光传输系统中自适应均衡器输出端的信噪比(SNR)。我们将模型扩展为之前提出的模型,并通过扫描4-PAM通信系统的主要参数,例如RIN系数、消光比、CD系数和均衡器内存,测试其准确性。我们的研究结果显示,在大多数情况下,时域模拟和分析结果之间的SNR差异小于0.1 dB,无论是前馈均衡还是决策反馈均衡。我们认为,所提出的模型是设计受严重带宽限制的IMDD系统的有力工具,如大多数现代和未来的短程和接入系统中所发生的那样。