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Characterisation and optimisation of the semiconductor optical amplifier for ultra-high speed performance

机译:用于超高速性能的半导体光放大器的表征和优化

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摘要

This research is in the area of high speed telecommunication systems where all- optical technologies are being introduced to meet the ever increasing demand for bandwidth by replacing the costly electro-optical conversion modules. In such systems, all-optical routers are the key technologies capable of supporting networks with high capacity/bandwidth as well as offering lower power consumption. One of the fundamental building blocks in all-optical routers/networks is the semiconductor optical amplifier (SOA), which is used in for clock extraction, wavelength conversion, all-optical gates and optical processing. The SOAs are perfect for optical amplification and optical switching at a very high speed. This is due to their small size, a low switching energy, non-linear characteristics and the seamless integration with other optical devices. Therefore, characterisation of the SOA operational functionalities and optimisation of its performance for amplification and switching are essential and challenging. Existing models on SOA gain dynamics do not address the impact of optical propagating wavelength, the combined input parameters and their adaptation for optimised amplification and switching operations. The SOA operation is limited at high data rates > 2.5 Gb/s to a greater extent by the gain recovery time. A number of schemes have been proposed to overcome this limitation; however no work has been reported on the SOA for improving the gain uniformity. This research aims to characterise the boundaries conditions and optimise the SOA performance for amplification and switching. The research also proposes alternative techniques to maximise the SOA gain uniformity at ultra-high speed data rates theoretically and practically. An SOA model is been developed and used throughout the research for theoretical simulations. Results show that the optimum conditions required to achieve the maximum output gain for best amplification performance depends on the SOA peak gain wavelength. It is also shown that the optimum phase shift of 180º for switching can be induced at lower input power level when the SOA biasing current is at its maximum limit. A gain standard deviation equation is introduced to measure the SOA gain uniformity. New wavelength diversity technique is proposed to achieve an average improvement of 7.82 dB in the SOA gain standard deviation at rates from 10 to 160 Gb/s. Other novel techniques that improved the gain uniformity employing triangular and sawtooth bias currents, as replacements for the uniform biasing, have been proposed. However, these current patterns were not able to improve the SOA gain uniformity at data rates beyond 40 Gb/s. For that reason, an optimised biasing for SOA (OBS) pattern is introduced to maximise the gain uniformity at any input data rates. This OBS pattern was practically generated and compared to the uniform biased SOA at different data rates and with different input bit sequences. All executed experiments showed better output uniformities employing the proposed OBS pattern with an average improvement of 19%.
机译:这项研究是在高速电信系统领域中进行的,其中引入了全光技术,以通过取代昂贵的电光转换模块来满足对带宽不断增长的需求。在这样的系统中,全光路由器是能够支持高容量/带宽网络并降低功耗的关键技术。半导体光放大器(SOA)是全光路由器/网络中的基本构建模块之一,用于时钟提取,波长转换,全光门和光学处理。 SOA非常适合以很高的速度进行光放大和光切换。这是由于它们的体积小,开关能量低,非线性特性以及与其他光学设备的无缝集成。因此,表征SOA操作功能以及优化其性能以进行放大和切换至关重要且具有挑战性。现有的SOA增益动态模型无法解决光传播波长,组合输入参数及其对优化放大和切换操作的适应性的影响。 SOA操作在大于2.5 Gb / s的高数据速率下受到增益恢复时间的更大限制。已经提出了许多方案来克服该限制。但是,尚未有关于SOA改善增益均匀性的工作的报道。这项研究旨在表征边界条件并优化SOA性能以进行放大和切换。该研究还提出了在理论上和实践上可以在超高速数据速率下最大化SOA增益均匀性的替代技术。 SOA模型已开发出来,并在整个研究中用于理论模拟。结果表明,实现最佳放大性能所需的最大输出增益所需的最佳条件取决于SOA峰值增益波长。还显示出,当SOA偏置电流处于其最大极限时,可以在较低的输入功率水平下引起180º的最佳开关切换相移。引入增益标准偏差方程式以测量SOA增益均匀性。提出了新的波长分集技术,以10到160 Gb / s的速率实现SOA增益标准偏差的平均改善7.82 dB。已经提出了使用三角形和锯齿形偏置电流来改善增益均匀性的其他新颖技术,以代替均匀偏置。但是,这些当前模式在数据速率超过40 Gb / s时无法提高SOA增益均匀性。因此,引入了针对SOA(OBS)模式的优化偏置,以在任何输入数据速率下最大化增益均匀性。该OBS模式实际上是生成的,并与不同数据速率和不同输入比特序列的均匀偏置SOA进行比较。所有执行的实验均采用建议的OBS模式显示出更好的输出均匀性,平均提高了19%。

著录项

  • 作者

    Ng Wai Pang; Shalaby A A;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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