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Extended Application of SIP in Optical Grid

Author: JiangHongMei
Tutor: XuKun
School: Beijing University of Posts and Telecommunications
Course: Electromagnetic Field and Microwave Technology
Keywords: SIP protocol P2P Light Subdivisions OBS / LOBS Service layer Resource Management
CLC: TN929.1
Type: Master's thesis
Year: 2010
Downloads: 6
Quote: 1
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Abstract


Photon grid breakthrough the grid network bottlenecks is the grid truly gone practical feasible technology has a very important research value . The the photon grid does not mean simply run out of the network to provide high-capacity data transmission , to support the grid , the traditional optical network is facing two major challenges : a demand bandwidth provision and distribution capacity , another network resources users or businesses controlled manageability . Based on the above background , the support for the grid optical network architecture , protocols and algorithms related research worldwide generally start . SIP (session initiation protocol) protocol of a typical communication control protocol , provides flexible session creation , management and maintenance functions to support user-defined negotiation mechanism , and scalability , has a wide range of applications and important research and development value. The paper focuses on the deployment of grid - oriented business services layer in the OBS - based photonic grid architecture with SIP protocol specific implementation technology. The key issue of this paper , based on SIP protocol principle and photon grid technology introduced , first on the SIP protocol photonic grid applications , including typical photons grid architecture and Problems , SIP protocol based OBS the photon grid architecture model , the typical P2P-SIP principles and implementation, resource management mechanism based on P2P-SIP four parts ; then , based on the above analysis, the photon grid of a new service-oriented architecture and in LOBS experimental platform to achieve this new architecture , and the experimental results verify the feasibility and effectiveness of the new architecture .

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CLC: > Industrial Technology > Radio electronics, telecommunications technology > Wireless communications > Lightwave communications, laser communications
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