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Wavelength tunable transmitters for future reconfigurable agile optical networks

机译:用于未来可重新配置的敏捷光网络的波长可调发射机

摘要

Wavelength tuneable transmission is a requirement for future reconfigurable agile optical networks as it enables cost efficient bandwidth distribution and a greater degree of transparency. This thesis focuses on the development and characterisation of wavelength tuneable transmitters for the core, metro and access based WDM networks.udThe wavelength tuneable RZ transmitter is a fundamental component for the core network as the RZ coding scheme is favoured over the conventional NRZ format as the line rate increases. The combination of a widely tuneable SG DBR laser and an EAM is a propitious technique employed to generate wavelength tuneable pulses at high repetitionudrates (40 GHz). As the EAM is inherently wavelength dependant an accurate characterisation of the generated pulses is carried out using the linear spectrogramudmeasurement technique. Performance issues associated with the transmitter are investigated by employing the generated pulses in a 1500 km 42.7 Gb/s circulating loopudsystem. It is demonstrated that non-optimisation of the EAM drive conditions at each operating wavelength can lead to a 33 % degradation in system performance. To achieveudconsistent operation over a wide waveband the drive conditions of the EAM must be altered at each operating wavelength.udThe metro network spans relatively small distances in comparison to the core and therefore must utilise more cost efficient solutions to transmit data, while alsoudmaintaining high reconfigurable functionality. Due to the shorter transmission distances, directly modulated sources can be utilised, as less precise wavelength and chirp control can be tolerated. Therefore a gain-switched FP laser provides an ideal source for wavelength tuneable pulse generation at high data rates (10 Gb/s). A self-seeding scheme that generates single mode pulses with high SMSR (> 30 dB) and small pulse duration is demonstrated. A FBG with a very large group delay disperses the generated pulses and subsequently uses this CW like signal to re-inject the laser diode negating the need to tune the repetition rate for optimum gain-switching operation.udThe access network provides the last communication link between the customer’s premises and the first switching node in the network. FTTH systems should take advantage of directly modulated sources; therefore the direct modulation of a SG DBR tuneable laser is investigated. Although a directly modulated TL is ideal for reconfigurable access based networks, the modulation itself leads to a drift in operating frequency which may result in cross channel interference in a WDM network. This effect is investigated and also a possible solution to compensate the frequency drift through simultaneous modulation of the lasers phase section is examined.
机译:波长可调谐传输是未来可重新配置的敏捷光网络的要求,因为它可以实现经济高效的带宽分配和更高的透明度。本文主要针对基于核心,城域和接入的WDM网络的波长可调发射器的开发和表征。 ud波长可调RZ发射器是核心网络的基本组件,因为与传统的NRZ格式相比,RZ编码方案更受青睐。线速增加。广泛可调谐的SG DBR激光器和EAM的组合是一种用于以高重复频率(40 GHz)生成波长可调谐脉冲的有利技术。由于EAM本质上是与波长相关的,因此使用线性频谱图测量技术对生成的脉冲进行准确的表征。通过在1500 km 42.7 Gb / s循环环路 udsystem中采用生成的脉冲来研究与发射机相关的性能问题。事实证明,在每个工作波长下对EAM驱动条件的非优化都会导致系统性能下降33%。为了在宽频带上实现不一致的操作,必须在每个工作波长上更改EAM的驱动条件。与城域网相比,城域网的距离相对较小,因此必须使用更具成本效益的解决方案来传输数据,同时保持较高的可重新配置功能。由于较短的传输距离,可以使用直接调制的光源,因为可以容忍不太精确的波长和线性调频控制。因此,增益开关FP激光器为在高数据速率(10 Gb / s)下产生波长可调脉冲提供了理想的光源。演示了一种自播方案,该方案生成具有高SMSR(> 30 dB)和小脉冲持续时间的单模脉冲。具有非常大的群延迟的FBG会分散产生的脉冲,然后使用类似CW的信号重新注入激光二极管,从而无需调整重复率以实现最佳增益切换操作。 ud接入网提供了最后一条通信链路在客户房屋和网络中的第一个交换节点之间。 FTTH系统应利用直接调制源;因此,研究了SG DBR可调谐激光器的直接调制。尽管直接调制的TL非常适合基于可重配置访问的网络,但调制本身会导致工作频率发生漂移,这可能会导致WDM网络中的跨信道干扰。研究了这种效果,并研究了通过同时调制激光器相截面来补偿频率漂移的可能解决方案。

著录项

  • 作者

    Maher Robert D.;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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