相干探測帶內(nèi)標記交換系統(tǒng)傳輸特性的研究
[Abstract]:With the rapid development of network in the 21st century, optical fiber communication has become a very important part of modern communication network. The next goal of the research in this field is the all-optical network (AON). With large capacity and high bandwidth. Current optical networks require optical repeaters for long distance transmission. The processing process in optical repeater and optical switching node is called "optical-electric-optical" (OEO). The OEO process limits the transmission speed of OTN, which makes it urgent to find new methods to realize the optical network with higher transmission rate. Optical label switching (OLS) is a promising solution. It uses optical tags to carry routing information rather than electronic tags. Valid payload carries data while marking carries routing information. In this paper, the optical label switching transmission is taken as the research object, the coherent detection in-band marking system is deeply analyzed, and the transmission models of 40 Gb/s ASK/ASK and 40 Gb/s DPSK/ASK in-band label switching systems are constructed. And based on the software VPI transmission maker 8.3 to achieve the simulation work. The main contents of this paper are as follows: (1) introduce the research background, optical marking technology and its development status; (2) introduce the optical modulation and demodulation technology. The basic format of optical modulation used in coherent detection optical label switching system-ASK,PSK, optical modulation key device-Mach-Zehnder modulator is studied and analyzed. In addition, two kinds of demodulation techniques in the receiver, direct demodulation and coherent demodulation, are introduced. (3) the single-node coherent detection in-band optical label system is studied in detail. The optical modulation schemes ASK and DPSK are introduced into the optical label switching system as the carrier modulation format of the system transmitter. The 40 Gb/s ASK/ASK and 40 Gb/s DPSK/ASK in-band optical label switching simulation systems are built, the system parameters are optimized, and the influence of each device on the in-band optical label switching system is analyzed. Finally, the transmission performance of the system is analyzed. (4) the existing single-node in-band label system architecture is improved. Based on the label stack routing principle, 40 Gb/s ASK/ASK and 40 Gb/s DPSK/ASK multi-node in-band label switching systems are analyzed in detail. The effects of various devices on the multi-node label switching system are simulated and analyzed, including the influence of the laser linewidth, the bandwidth of the optical filter, the transmission distance, and so on. Finally, according to the optimized parameters, the optimal transmission performance of multi-node in-band label switching system is verified.
【學位授予單位】:電子科技大學
【學位級別】:碩士
【學位授予年份】:2017
【分類號】:TN929.1
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