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Energy efficiency of electronic and optical QAM signal grooming

机译:电子和光学QAM信号修饰的能效

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Wavelength grooming technologies when used with power management schemes can reduce the energy consumption of optical networks and increase spectral efficiency. Grooming aggregates multiple tributary lower data rate or lower order modulation format signals into a single higher data rate signal with increased spectral efficiency. At high data rates electronic digital signal processing of multiple advanced modulation format signals limits the net energy efficiency benefits. Optical techniques have received interest recently as an alternative, but require specialized optical components with unique energy requirements. The relative energy consumption of optical processing techniques for grooming, including the impact of power management, is evaluated with respect to conventional electronic processing on quadrature amplitude modulated (QAM) signals. Energy efficiency targets in light of expected efficiency improvement trends are determined as a function of signal baud rate. The impact of finite transmission switching delays for dynamic wavelength operation are shown to reduce the optimum baud rate for optical techniques and incur a large penalty at high baud rates.
机译:与功率管理方案一起使用时,波长修饰技术可以减少光网络的能耗并提高频谱效率。整理将多个支路较低的数据速率或较低阶的调制格式信号聚合到一个频谱效率更高的单个较高的数据速率信号中。在高数据速率下,对多种高级调制格式信号的电子数字信号处理限制了净能效。光学技术最近已引起人们的兴趣,但它需要具有独特能量要求的专用光学组件。针对正交幅度调制(QAM)信号的常规电子处理,评估了用于修饰的光学处理技术的相对能耗,包括功率管理的影响。根据信号效率的提高趋势,确定能效目标,将其作为信号波特率的函数。有限传输切换延迟对动态波长操作的影响已显示出降低了光学技术的最佳波特率,并在高波特率下产生了较大的损失。

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