标题: 超高频光毫米波产生与60-GHz光载微波无线讯号系统
Ultra-High Frequency Optical Millimeter-Wave Generation and 60-GHz Radio-over-Fiber Systems
作者: 施伯宗
Shih, Po-Tsung
陈智弘
祁甡
Chen, Jyehong
Chi, Sien
光电工程学系
关键字: 毫米波;60 GHz;光载微波无线讯号;倍频;正交分频多工;Millimeter wave;60 GHz;Radio over Fiber;Frequency Multiplication;OFDM
公开日期: 2010
摘要: 随着科技的发展,毫米波讯号的产生与应用更为受到重视。毫米波讯号不只可应用于宽频无线讯号传输,更可利用于雷达系统、汽车防撞系统、天文应用与毫米波显像系统。然而,由于在空气与铜导线之中的高传输损耗,毫米波讯号的产生与传送依然存在许多挑战。因此,利用低损耗的光纤网路并配合光倍频技术,光毫米波讯号产生技术吸引各方的注目。
在这份论文当中,我们提出了使用四倍频、八倍频以及12倍频的光毫米波产生技术,并使用理论以及实验来分析及验证系统。所提出之架构,可以产生超高频、高纯度之光毫米波讯号,提供给不同之毫米波应用使用。
基于所提出之光毫米波产生与光升频系统,我们可以将其利用于60-GHz光载微波无线讯号系统,并传输超过数个Gbps的讯号。在同时利用电与光升频技术,我们提出了Tandem-Single Sideband与六倍频的60-GHz系统。在这些系统当中,我们达成了21-Gbps的讯号传输,并且在经过25公里光纤传输之后,并无明显的讯号损耗。我们同时也提出,利用强度调变直接侦测(IMDD)的60 GHz RoF系统。系统架构非常简单的IMDD系统,产生双旁带的讯号,因此将有光纤色散所造成之讯号衰退现象,在本论文中也有详细之讨论。利用IMDD的系统,我们达成60-GHz全双工双向21-Gbps讯号传输,并且达成500公尺光纤与10公尺无线传输。此IMDD系统,将可应用于短距离室内60-GHz RoF系统。
在本论文中,我们也同时提出整合有线基频传输与光载微波无线讯号之整合型撷取网路系统。所提出之架构,可同时提供射频M-array PSK讯号,与基频OOK讯号。并且在远端节点不需窄频的光滤波器,将射频与基频讯号作分离,因此将可相容于现存的被动光纤网路(PON)架构之中。所提出之架构,在经过25公里光纤传输之后,基频OOK与射频PSK讯号,皆没有明显因光纤传输所造成之讯号衰减现象。
With the rapidly developing of technologies, optical millimeter-wave signal generation attracts a lot of interests for various kinds of applications. Not only in broadband wireless communication systems, but high frequency millimeter-wave signals can be utilized in radar, car anti-collision system, radio astronomy and imaging. However, millimeter-wave signal generation and transmission still remain great challenges due to the high propagation loss in air and in copper cables. Based on the extremely
low loss of the optical fiber, generation of optical millimeter-wave signal with frequency multiplication attracts a lot of attentions.
In this dissertation, optical millimeter-wave signal generation with frequency quadrupling, octupling and 12-tupling are proposed, theoretically analyzed and experimentally demonstrated. Optical millimeter-wave signals with ultra-high frequencies and high undesired optical sideband suppression ratios can be generated using
low-frequency optical modulator, components and equipments. Because the high undesired optical sideband suppression ratios, high purity millimeter-wave signals can be generated and suitable for various kind of millimeter-wave applications.
Based on the optical millimeter-wave signal generation and up-conversion systems, 60-GHz radio-over-fiber (RoF) system which provides wireless transmission with multi-Gbps data-rate can be achieved. A asymmetrical full-duplex bidirectional RoF system based on tandem-single-sideband (TSSB) modulation technique, and an optical up-conversion system with frequency sextupling for 60-GHz RoF links are proposed. Transmission of 25-km standard single mode fibers can be achieved without significant receiver power penalties.
A 2 × 21-Gbps symmetrical bidirectional full-duplex system at 60 GHz based on intensity modulation direct detection (IMDD) technique which is a very simple architecture is also proposed. Although chromatic dispersion induced performance fading issues are observed in the IMDD systems due to the double-sideband (DSB) modulation scheme, 500-m fiber transmission and 10-m wireless transmission with
acceptable receiver power penalties can be achieved without any dispersion compensation. Based on the very simple architectures and fully transparent characteristic of the bidirectional IMDD systems, the proposed systems are ideal for in-building high data-rate wireless applications, which are characterized by short fiber spans.
Multi-service hybrid access networks which supports both RoF and fiber to the x (FTTx) systems attract a lot of interests. Two multi-service hybrid access network systems which simultaneously generate and transmit radio frequency (RF) M-array phase shift keying (PSK) signal and baseband (BB) On-Off-keying (OOK) signal are proposed and experimentally demonstrated. The wired BB signal is compatible with the existing passive optical network (PON) system, and the wireless RF PSK signal can also share the same distributed infrastructure. No dispersion induced fading issues are expected and no narrow band optical filter is needed at the remote nodes in the proposed systems. After transmission over 25-km standard single mode fiber, no significant receiver power penalties are observed in both RF and BB channels in the proposed systems.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079524806
http://hdl.handle.net/11536/41229
显示于类别:Thesis


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