电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2014年
21期
81-85
,共5页
通信%广域保护%分层区域%SDH%光纤%自愈环%可靠性
通信%廣域保護%分層區域%SDH%光纖%自愈環%可靠性
통신%엄역보호%분층구역%SDH%광섬%자유배%가고성
communications%wide-area protection%layered region%SDH%fiber%self-healing ring%reliability
为了满足电力系统广域保护的通信要求,并为电力系统广域保护网络的工程设计及通信系统的评估计算提供参考和理论依据,提出了基于SDH光网络的分层区域式保护通信系统的可靠性研究。根据SDH光网络通信原理和自愈环网的可靠性评价方法,运用状态空间法量化分析了传输链路区段的故障概率和可用度等指标,阐述了分层区域式保护通信主干网和区域网的可靠性研究方法,包括SDH自愈环网和星型网的可靠性模型及可用度评估、网络冗余和过程层设备组网结构等。例证分析表明,采用SDH自愈环网的通道保护功能可以减小光纤故障对整个环网可靠性的影响,而提高接口的可靠性则是保证SDH环网可靠性的关键。
為瞭滿足電力繫統廣域保護的通信要求,併為電力繫統廣域保護網絡的工程設計及通信繫統的評估計算提供參攷和理論依據,提齣瞭基于SDH光網絡的分層區域式保護通信繫統的可靠性研究。根據SDH光網絡通信原理和自愈環網的可靠性評價方法,運用狀態空間法量化分析瞭傳輸鏈路區段的故障概率和可用度等指標,闡述瞭分層區域式保護通信主榦網和區域網的可靠性研究方法,包括SDH自愈環網和星型網的可靠性模型及可用度評估、網絡冗餘和過程層設備組網結構等。例證分析錶明,採用SDH自愈環網的通道保護功能可以減小光纖故障對整箇環網可靠性的影響,而提高接口的可靠性則是保證SDH環網可靠性的關鍵。
위료만족전력계통엄역보호적통신요구,병위전력계통엄역보호망락적공정설계급통신계통적평고계산제공삼고화이론의거,제출료기우SDH광망락적분층구역식보호통신계통적가고성연구。근거SDH광망락통신원리화자유배망적가고성평개방법,운용상태공간법양화분석료전수련로구단적고장개솔화가용도등지표,천술료분층구역식보호통신주간망화구역망적가고성연구방법,포괄SDH자유배망화성형망적가고성모형급가용도평고、망락용여화과정층설비조망결구등。예증분석표명,채용SDH자유배망적통도보호공능가이감소광섬고장대정개배망가고성적영향,이제고접구적가고성칙시보증SDH배망가고성적관건。
In order to meet the wide-area protection communication requirements of power system, and provide reference and theoretical basis for the engineering design of power system wide-area protection network and the assessment calculation of communication systems, according to SDH optical network communication theory and self-healing network reliability evaluation method, transmission link section failure probability and availability and other indicators are quantitatively analyzed using state space method. A reliability research method of layered regional protective communication backbone and regional networks is described, including the reliability model and availability assessment of SDH self-healing network and star networks, network redundancy and process layer device network structure. Illustration analysis shows that the path protection feature using SDH self-healing ring network can reduce the impact of fiber failure on the entire ring network reliability, and improving the reliability of the interface is the key of reliability of the SDH ring network.