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An improved feed-forward linearisation of optical transmitter for radio over fiber system

机译:用于光纤无线电系统的光发射机的改进的前馈线性化

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摘要

Radio over fiber (RoF) technology provides an efficient and cost effective solution to increase the capacity of mobile communication systems and the coverage of wireless broadband communication systems. This is due to the growing data traffic and bandwidth demands. However, the performance of an RoF system is limited by the linearity of the optical transmitter that contributes to major nonlinear distortions in the links. Meanwhile, in multichannel applications, high linearity is required to avoid a channel interference due to nonlinear distortions. The feedforward linearisation technique offers a number of advantages compared to other techniques such as a broadband distortion reduction at high frequencies and simultaneous reduction in all orders of distortion. Therefore, it is suitable for linearisation of the optical transmitter. But, the existing design uses many electronic components causing difficulty for the amplitude and phase matching to achieve the optimum distortion reduction and also generate the parasitic parameter at high frequency. This thesis aims to improve the performance of the optical feedforward transmitter by reducing the electrical component without decreasing the distortion reduction performance; thus reducing the difficulty for the amplitude and phase matching and the parasitic parameter at high frequency. System characterisation is carried out by the mathematical analysis using Volterra series approach and simulation using a commercial optical design software which is validated by the practical measurement. It shows that the IMD3 reduction is good for high frequency. More than 15 dB IMD3 reduction is achieved over the carrier frequency 1.2 to 2.4 GHz using the proposed system practically. In addition, the proposed system is simpler and less sensitive in the amplitude and phase matching to obtain the optimum distortion reduction since the distortion suppression is influenced by less electrical parameters compared to other works.
机译:光纤无线电(RoF)技术提供了一种有效且具有成本效益的解决方案,以增加移动通信系统的容量和无线宽带通信系统的覆盖范围。这是由于不断增长的数据流量和带宽需求。但是,RoF系统的性能受到光发射器线性度的限制,该线性度会导致链路中出现严重的非线性失真。同时,在多通道应用中,需要高线性度以避免由于非线性失真引起的通道干扰。与其他技术相比,前馈线性化技术具有许多优势,例如在高频下减少宽带失真并同时减少所有失真阶数。因此,它适合于光发射机的线性化。但是,现有设计使用许多电子元件,这导致振幅和相位匹配困难,以实现最佳的失真减小,并且还产生高频的寄生参数。本文的目的是通过在不降低失真减小性能的情况下减少电气部件来提高光前馈发射机的性能。从而降低了幅度和相位匹配的难度以及高频下的寄生参数。系统表征是通过使用Volterra级数法的数学分析和使用商用光学设计软件进行的仿真来进行的,该软件已通过实际测量得到验证。它表明,IMD3的降低对于高频是有益的。实际上,使用所提出的系统,在1.2至2.4 GHz的载波频率上,IMD3降低了15 dB以上。此外,与其他工作相比,由于失真抑制受更少的电气参数影响,因此所提出的系统在振幅和相位匹配上更简单,更不敏感以获得最佳失真减小。

著录项

  • 作者

    Alifah Suryani;

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  • 年度 2012
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  • 原文格式 PDF
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