标题: 以双波带抑制载波调变及数位信号处理技术为基础的光传输系统及网路之研究
Optical Transmission Systems and Networks based on Double-Sideband Modulation with Suppressed Carrier and Digital-Signal-Processing Techniques
作者: 翁佳恺
Chia-Kai Weng
尉应时
Winston I. Way
电信工程研究所
关键字: 双波带抑制载波;数位信号处理;DSBSC;DSP;QAM;RHD
公开日期: 2007
摘要: 在本论文中,我们研究以双波带抑制载波调变及数位信号处理技术为基础的光传输系统及网路之研究。主要的研究成果可以分为两大部分。首先,我们以实验及分析方法验证一个射频在18GHz,资料速率为5Gb/s的16QAM信号在100公里光纤上的传输品质。我们评估光纤放大器杂讯、光纤非线性、雷射光源的相位杂讯、系统频率响应以及类比数位转换器量化杂讯对传输系统品质的影响。此18GHz的16-QAM 信号可以直接从基地台以光纤传送到远端天线而不需要频率转换器,远端终端机则可以用DSP的方式将信号解调。在本实验中,我们是以20Gs/s 的数位类比转换器做为信号干扰(ISI)及相位杂讯抑制数位信号处理(DSP)的前端。这些数位信号处理模组所使用的演算法也在本论文中有详细说明。在本论文的第二部分中,我们提出并以实验验证一个在单一光纤双向传输的光网路中以双波带抑制载波为基础的保护架构。这个架构所需要的光发射机数量将比传统架构所需的要少,也就是说一个双波带抑制载波的发射机就可以同时供工作及保护频道使用。
In this dissertation, we study the optical transmission systems and networks based on double-sideband modulation with suppressed carrier (DSB-SC) and digital signal processing (DSP) techniques. The main research results are organized in two
parts. In the first part, we experimentally and analytically proved the feasibility of a 100km radio-over- fiber (ROF) system using a 16-QAM signal with 5Gb/s bit rate and a carrier frequency of 18 GHz. The transmission system performance was
analyzed by considering optical amplifier noise, fiber nonlinearity, phase
noise, frequency response, and analog-to-digital converter (ADC) quantization
noise. The 18 GHz, 16-QAM signal could be sent from the base station to a
remote antenna port without any up-converter, and the remote terminal consists
of a down-converter and high-speed digital signal processors (DSPs) to recover the
16-QAM signal. The high-speed DSP, which partially compensates the
inter-symbol-interference (ISI) and phase-noise-induced system penalties, was
enabled by 20 Gs/s ADCs. The algorithms used in the DSP blocks were also
described in details. In the second part of this dissertation, a single-fiber optical unidirectional-path-switched ring (UPSR) based on subcarrier multiplexed double-sideband modulation with suppressed carrier was proposed and experimentally verified. This single-fiber UPSR architecture can be used to reduce the number of required optical transmitters, i.e., a single DSB-SC transmitter can be used for both east- and west-bound wavelengths.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT008813809
http://hdl.handle.net/11536/57778
显示于类别:Thesis


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