Suzhou Electric Appliance Research Institute
期刊號: CN32-1800/TM| ISSN1007-3175

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電力通信接入網(wǎng)多業(yè)務安全承載技術應用探討

來源:電工電氣發(fā)布時間:2024-10-09 10:09 瀏覽次數(shù):115

電力通信接入網(wǎng)多業(yè)務安全承載技術應用探討

汪強
(許昌許繼軟件技術有限公司,河南 許昌 461000)
 
    摘 要:針對電力通信接入網(wǎng)多業(yè)務綜合接入、多網(wǎng)絡協(xié)同承載和多業(yè)務安全隔離傳輸?shù)男枨?,結合電力通信接入網(wǎng)的建設現(xiàn)狀,提出基于時分波分復用無源光網(wǎng)絡(TWDM-PON)技術的電力多業(yè)務安全接入解決方案。分析了電力通信接入網(wǎng)現(xiàn)有通信技術存在的不足,研究了 TWDM-PON 技術的網(wǎng)絡架構體系以及對多業(yè)務承載的適應性,提出了實現(xiàn)多業(yè)務統(tǒng)一承載的動態(tài)資源調度機制和基于交換與存儲資源的隔離技術,并搭建實驗環(huán)境,驗證分析了 TWDM-PON 在電力通信接入網(wǎng)應用的關鍵性能指標,為電力多業(yè)務統(tǒng)一承載探索了一種可行的通信網(wǎng)絡建設模式。
    關鍵詞: 電力通信接入網(wǎng);多業(yè)務承載;業(yè)務隔離;時分波分復用無源光網(wǎng)絡;動態(tài)資源調度機制;交換與存儲資源隔離技術
    中圖分類號:TM73     文獻標識碼:B     文章編號:1007-3175(2024)09-0033-06
 
Discussion on Application of Multi-Service Security Load Technology in
Power Communication Access Network
 
WANG Qiang
(Xuchang Xuji Software Technology Co., Ltd, Xuchang 461000, China)
 
    Abstract: According to the requirements of multi-service integrated access, multi network cooperative load and multi-service security isolated transmission in power communication access network, combined with the construction status of power communication access network, a power multi-service security access solution based on time and wavelength division multiplexed passive optical network(TWDM-PON) technology is proposed. By analyzing the shortcomings of existing communication technologies in power communication access network, this paper studies the network architecture of TWDM-PON technology and its adaptability to multi-service load. Proposing a dynamic resource scheduling mechanism to realize multi-service unified bearer and an isolation technology based on switching and storage resources, and builds an experimental environment to verify and analyze the key performance indicators of TWDM-PON in the application of power communication access network,and explores a feasible communication network construction mode for the unified load of power multi service.
    Key words: power communication access network; multi-service load; service isolation; time and wavelength division multiplexed passive optical network; dynamic resource scheduling mechanism; switching and storage resource isolation technology
 
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