标题: 利用新颖面射型雷射于高速长距离光互联系统
High Bit-Rate Distance Product Optical Interconnects Employing Novel Design VCSEL
作者: 卢奕诚
陈智弘
Lu, I-Cheng
Chen, Jye-hong
光电工程研究所
关键字: 光互联系统;垂直共振腔面射型雷射;正交分频多工;Optical interconnect;Vertical-cavity surface-emitting lasers;Discrete multitone modulation
公开日期: 2015
摘要: 迄今,网际网路已发展超过20年,近来更出现了许多崭新的热门应用,如物联网以及海量资料。而数据中心提供大量资料储存与管理的能力,可说是上述应用的关键基础之一。使用垂直共振腔面射型雷射(VCSEL)与多模光纤组成的光互联系统除了具有成本上的优势,同时光互联系统也能够支持高速以及长距离的传输。然而,系统可达的最大频宽受限于多模光纤中的模态色散,且随着传输距离增加而更严重。因此,使用少模态的垂直共振腔面射型雷射可以减少多模光纤中被激发的模态,进而增加传输距离。但是随着浮现的问题是,少模态的垂直共振腔面射型雷射会有比较严重的空间稍孔现象,而此一现象会严重的限制雷射的可调制频宽。因此,此篇论文提出,同时透过锌扩散与氧化掏离技术来达到少模态输出,并且最佳化垂直共振腔面射型雷射的结构减少空间稍孔现象的影响。在实验中,我们可以达到单模输出的垂直共振腔面射型雷射,然而,其可调制频宽仍然是受到限制。因此,我们在传输实验中使用高频普效益的分离复频调变技术(DMT)以及位元承载演算法(bit loading),在有限的频宽下达到最大的传输速度。在使用单模输出的垂直共振腔面射型雷射与分离复频调变技术,本实验成功达到目前世界上最高的传输速度距离乘积(BRDP)。本实验所提出之光互联系统架构具有低成本、高速、长距离的特性,因此非常适合使用在现代以及未来大型数据中心。
An obvious trend of cloud applications, e.g. the internet of things and big data, has changed every aspect of our lives. Capable to manage and store such huge volume of data, data centers have been a key basis to realizing these cloud applications. Cost-effective, high-speed, and long-reach optical interconnects based on vertical-cavity surface-emitting lasers (VCSELs) and multimode fibers (MMFs) will be needed in modern/future mega data centers. However, the modal dispersion of MMFs leads to a severe limitation in available system bandwidth with increasing the transmission distance. VCSELs with fewer transverse modes can excite fewer modes and facilitate elongating the transmission distance. Nevertheless, the spatial hole burning effect usually limits the modulation speed of the VCSEL with less transverse modes. Therefore, it is essential to optimize the VCSEL structure to achieve few-mode and high-speed characteristics. In this work, we design Zn-diffusion and oxide-relief structures to control the number of transverse modes of VCSELs and mitigate the spatial hole burning effect simultaneously. According to our results, the modulation bandwidth of the few-mode VCSEL is slightly sacrificed. In order to boost the data throughput, we use high spectral-efficiency discrete multitone (DMT) modulation with bit-loading algorithm, which also facilitate the system bandwidth requirement. By using the 850 nm single-mode VCSEL with optimized structures and DMT modulation with bit-loading algorithm, we have successfully achieve a record-high bit-rate distance product (BRDP). Therefore, the proposed system may be another alternative for low-cost, high-speed, and long-reach optical interconnection in modern/future data centers.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT079924823
http://hdl.handle.net/11536/143058
显示于类别:Thesis