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Behavioral modeling and digital compensation of nonlinearity in DFB lasers for multi-band directly-modulated radio-over-fiber systems

机译:多带直接调制光纤无线电系统的DFB激光器的行为建模和非线性非线性数字补偿

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The envisioned C-RAN concept in wireless communication sector replies on distributed antenna systems (DAS) which consist of a central unit (CU), multiple remote antenna units (RAUs) and the fronthaul links between them. As the legacy and emerging wireless communication standards will coexist for a long time, the fronthaul links are preferred to carry multi-band multi-standard wireless signals. Directly-modulated radio-over-fiber (ROF) links can serve as a low-cost option to make fronthaul connections conveying multi-band wireless signals. However, directly-modulated radio-over-fiber (ROF) systems often suffer from inherent nonlinearities from directly-modulated lasers. Unlike ROF systems working at the single-band mode, the modulation nonlinearities in multi-band ROF systems can result in both in-band and cross-band nonlinear distortions. In order to address this issue, we have recently investigated the multi-band nonlinear behavior of directly-modulated DFB lasers based on multi-dimensional memory polynomial model. Based on this model, an efficient multi-dimensional baseband digital predistortion technique was developed and experimentally demonstrated for linearization of multi-band directly-modulated ROF systems.
机译:无线通信领域中设想的C-RAN概念依赖于分布式天线系统(DAS),该系统由中央单元(CU),多个远程天线单元(RAU)以及它们之间的前传链路组成。由于传统和新兴的无线通信标准将长期共存,因此,前传链路更适合承载多频带多标准无线信号。直接调制的光纤无线电(ROF)链路可以作为一种低成本选择,用于进行前传连接以传输多频带无线信号。但是,直接调制光纤无线电(ROF)系统通常会遭受直接调制激光器固有的非线性影响。与工作在单频带模式下的ROF系统不同,多频带ROF系统中的调制非线性会导致频带内和跨频带非线性失真。为了解决这个问题,我们最近研究了基于多维记忆多项式模型的直接调制DFB激光器的多波段非线性行为。在此模型的基础上,开发了一种有效的多维基带数字预失真技术,并通过实验证明了该技术可对多频段直接调制ROF系统进行线性化。

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