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Investigation of EDFA power transients in circuit-switched and packet-switched optical networks

机译:电路交换和分组交换光网络中EDFa功率瞬变的研究

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摘要

Erbium-doped fibre amplifiers (EDFA’s) are a key technology for the design of all optical communication systems and networks. The superiority of EDFAs lies in their negligible intermodulation distortion across high speed multichannel signals, low intrinsic losses, slow gain dynamics, and gain in a wide range of optical wavelengths. Due to long lifetime in excited states, EDFAs do not oppose the effect of cross-gain saturation. The time characteristics of the gain saturation and recovery effects are between a few hundred microseconds and 10 milliseconds. However, in wavelength division multiplexed (WDM) optical networks with EDFAs, the number of channels traversing an EDFA can change due to the faulty link of the network or the system reconfiguration. It has been found that, due to the variation in channel number in the EDFAs chain, the output system powers of surviving channels can change in a very short time. Thus, the power transient is one of the problems deteriorating system performance. In this thesis, the transient phenomenon in wavelength routed WDM optical networks with EDFA chains was investigated. The task was performed using different input signal powers for circuit switched networks. A simulator for the EDFA gain dynamicmodel was developed to compute the magnitude and speed of the power transients in the non-self-saturated EDFA both single and chained. The dynamic model of the self-saturated EDFAs chain and its simulator were also developed to compute the magnitude and speed of the power transients and the Optical signal-to-noise ratio (OSNR). We found that the OSNR transient magnitude and speed are a function of both the output power transient and the number of EDFAs in the chain. The OSNR value predicts the level of the quality of service in the related network. It was found that the power transients for both self-saturated and non-self-saturated EDFAs are close in magnitude in the case of gain saturated EDFAs networks. Moreover, the cross-gain saturation also degrades the performance of the packet switching networks due to varying traffic characteristics. The magnitude and the speed of output power transients increase along the EDFAs chain. An investigation was done on the asynchronous transfer mode (ATM) or the WDM Internet protocol (WDM-IP) traffic networks using different traffic patterns based on the Pareto and Poisson distribution. The simulator is used to examine the amount and speed of the power transients in Pareto and Poisson distributed traffic at different bit rates, with specific focus on 2.5 Gb/s. It was found from numerical and statistical analysis that the power swing increases if the time interval of theburst-ON/burst-OFF is long in the packet bursts. This is because the gain dynamics is fast during strong signal pulse or with long duration pulses, which is due to the stimulatedemission avalanche depletion of the excited ions. Thus, an increase in output power levelcould lead to error burst which affects the system performance.
机译:掺b光纤放大器(EDFA)是设计所有光通信系统和网络的关键技术。 EDFA的优势在于它们在高速多通道信号上可忽略的互调失真,低固有损耗,缓慢的增益动态以及在较宽的光波长范围内的增益。由于在激发态下使用寿命长,因此EDFA不会抵抗交叉增益饱和的影响。增益饱和和恢复效果的时间特性在几百微秒到10毫秒之间。但是,在具有EDFA的波分复用(WDM)光网络中,由于网络的错误链路或系统重新配置,穿越EDFA的信道数可能会发生变化。已经发现,由于EDFA链中通道数的变化,幸存通道的输出系统功率可以在很短的时间内改变。因此,功率瞬变是使系统性能恶化的问题之一。本文研究了具有EDFA链的波长路由WDM光网络中的瞬态现象。该任务是使用电路交换网络的不同输入信号功率执行的。开发了用于EDFA增益动态模型的仿真器,以计算单链和链式非自饱和EDFA中功率瞬变的幅度和速度。还开发了自饱和EDFA链的动态模型及其仿真器,以计算功率瞬变的幅度和速度以及光信噪比(OSNR)。我们发现,OSNR瞬变幅度和速度是输出功率瞬变和链中EDFA数量的函数。 OSNR值可预测相关网络中服务质量的水平。发现在增益饱和EDFA网络的情况下,自饱和和非自饱和EDFA的功率瞬变在幅度上都接近。此外,由于业务特性的变化,跨增益饱和也会降低分组交换网络的性能。输出功率瞬变的幅度和速度沿EDFA链增加。基于帕累托和泊松分布,使用不同的流量模式对异步传输模式(ATM)或WDM Internet协议(WDM-IP)流量网络进行了调查。该模拟器用于检查不同比特率下Pareto和Poisson分布式流量中功率瞬变的数量和速度,特别关注2.5 Gb / s。从数值和统计分析中发现,如果在分组突发中突发开启/突发关闭的时间间隔较长,则功率摆幅会增加。这是因为在强信号脉冲期间或在长脉冲期间,增益动态很快,这是由于激发离子的雪崩耗竭引起的。因此,输出功率电平的增加可能导致错误突发,从而影响系统性能。

著录项

  • 作者

    Muhyaldin Siham;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 English
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