The impact of signal regeneration on the DWDM system's power efficiency using 10 Gbps NRZ-OOK

D. Pavlovs, V. Bobrovs, G. Ivanovs, P. Gavars
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引用次数: 1

Abstract

The matter of power consumption in the wired telecommunication networks has become a major challenge for researchers and designers due to the potential financial benefits and environmental issue. On the other hand the Information and Communication Technology (ICT) segment experiencing continuously increasing global Internet traffic due to the emergence and renewal of the bandwidth-intensive services and applications. The higher capacity of transmission system can be achieved by enchasing the spectral efficiency level, which in its turn, in the Wavelength Division Multiplexing (WDM) systems, is defined by frequency slots and data rates of transmission channels. However, on the grounds of cross-channel interference, decreasing of channel spacing adversely affects the transmission reach of signals, which leads to the higher power consumption due to increased number of signal regenerations. Therefore the following situation results into continuous assessment of tradeoffs between Power and Spectral efficiencies in the transmission systems. Following research aims to an examination of Single-Line-Rate (SLR) WDM systems based on 10 Gbps signals with nonreturn-to-zero on-off-keying (NRZ-OOK) modulation, which are commonly used at existing legacy networks. The focus of this study is transmission systems with the Forward Error Correction (FEC) and required Bit Error Rate (BER) level lower then 10−3. In order to observe relationship between system's capacity and power consumption, authors estimate the power efficiency at different spectral efficiency stages, by means of modifications in the frequency slot, to wit from 12.5 GHz to 37.5GHz. Calculations have been prepared for various signal transmission lengths. Additionally, the power ratio of 3R (reamplification, retiming, reshaping) is evaluated with the purpose to quantify the impact of signal regeneration procedure on the total power consumption of transmission system. The results are presented as functions of transmitted information amount, with the aim of providing flexible data for different system realizations.
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信号再生对使用 10 Gbps NRZ-OOK 的 DWDM 系统功率效率的影响
由于潜在的经济效益和环境问题,有线电信网络的功耗问题已成为研究人员和设计人员面临的一大挑战。另一方面,由于带宽密集型服务和应用的出现和更新,信息和通信技术(ICT)领域的全球互联网流量持续增长。在波分复用(WDM)系统中,可以通过提高频谱效率来提高传输系统的容量,而频谱效率又是由传输通道的频隙和数据速率决定的。然而,由于存在跨信道干扰,信道间距的减小会对信号的传输距离产生不利影响,从而导致信号再生次数增加,耗电量增大。因此,在这种情况下,需要不断评估传输系统中功率和频谱效率之间的权衡。下面的研究旨在考察基于 10 Gbps 信号的单线速率(SLR)波分复用系统,该系统采用非归零开关键(NRZ-OOK)调制,常用于现有的传统网络。本研究的重点是前向纠错(FEC)和所需误码率(BER)低于 10-3 的传输系统。为了观察系统容量和功耗之间的关系,作者通过修改频率槽(从 12.5 千兆赫到 37.5 千兆赫),估算了不同频谱效率阶段的功率效率。计算结果适用于各种信号传输长度。此外,还对 3R(重放大、重定时、重整形)的功率比进行了评估,目的是量化信号再生程序对传输系统总功耗的影响。结果以传输信息量的函数形式呈现,目的是为不同的系统实现提供灵活的数据。
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