光信号再生对单线速率和混合线速率波分复用系统功率效率的影响研究

D. Pavlovs, V. Bobrovs, K. Vilcāne, G. Ivanovs
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引用次数: 0

摘要

由于高质量多媒体、极详细、多人在线游戏、高容量数据存储和交换等带宽密集型应用的需求日益增长,对信号传输速度和传输质量等相互冲突的参数的要求不断提高。这两个参数的同时增加总是导致功耗的增加,这主要是由信号再生活动定义的,这反过来又与绿色网络方法相矛盾。此外,由于存在适合数据传输的频谱带限制,不同网络的初始系统设置和要求是不同的,可以通过不同的网络设计和不同的功率效率水平来实现。波分复用(Wavelength Division Multiplexing, WDM)系统是为了提高信息传输速度而发展起来的,其中单信道的传输速度和信道间距成为决定系统整体容量的决定性因素。然而,基于跨信道干扰,子带间距的减小和高容性信号的使用会对系统的传输距离产生不利影响,从而导致信号再生更加频繁。因此,必须评估传输速度、传输质量和功耗之间的权衡。在这项工作中,作者比较了单线速率(SLR)和多线速率(MLR) WDM系统,它们使用最常见的传输信号,通过功率效率和3Rs(再放大、重定时、重塑)功率比的评估来证明所包含的频谱效率与其对相关系统功耗的影响之间的关系。不同的通道间距可以影响功率效率。结果以传输信息量的函数表示,这允许在不同可用频谱带的传输系统中调整结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Optical Signal Regeneration Impact on Power Efficiency of Single-line-rate and Mixed-line-rate Wavelength Division Multiplexing Systems
The requirements for such conflicting parameters as signal transmission speed and quality of transmission continuously increasing on the grounds growing demands of bandwidth-intensive applications like high quality multimedia, extremely detailed, multi-player online gaming and highly capacitive data storage and exchanges. Simultaneous increment of both parameters always leads to power consumption growing, mostly defined by signal regeneration activities, which in its turn stays in contradiction with green network methods. In addition, by existence of the spectral band limitations appropriate for data transmission, the initial system settings and requirements changes from one network to another and can be fulfilled by different network designs with different power efficiency levels. The Wavelength Division Multiplexing (WDM) systems had been developed with the aim to increase information transmission speeds, where the transmission speed of single channel and channel spacing becomes the defining factors for the overall system's capacity. Nevertheless, on the grounds of cross-channel interference, sub-band spacing reduction and usage of high-capacitive signals can adversely affect the system's transmission reach, which will lead to the more frequent signal regeneration. Therefore, the trade-off between transmission speed, quality of transmission and power consumption must be evaluated. In this work authors compare the Single-Line-Rate (SLR) and Multi-Line-Rate (MLR) WDM systems, which uses the most common transmission signals, to demonstrate relation between the enchased spectral efficiency and its impact on the relevant systems power consumption by means of power efficiency and evaluation of 3Rs' (re-amplification, retiming, reshaping) power ratio. The power efficiency was manipulated by different channel spacing. The results are presented as functions of transmitted information volume, which allows adapting the results for transmission systems with different available spectral band.
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