电力系统自动化
電力繫統自動化
전력계통자동화
Automation of Electric Power Systems
2015年
19期
126-131
,共6页
周学军%樊诚%李大伟%周媛媛
週學軍%樊誠%李大偉%週媛媛
주학군%번성%리대위%주원원
缆系海底观测网%恒流输电%恒流分支%可靠性%路径选择
纜繫海底觀測網%恆流輸電%恆流分支%可靠性%路徑選擇
람계해저관측망%항류수전%항류분지%가고성%로경선택
cabled seafloor observatory network%constant current power transmission%constant current branching%reliability%routing selection
基于恒流输电的缆系海底观测网借助恒流分支技术可以实现网格型拓扑结构,从而存在多种主供电回路与分支供电回路的供电组合方案。针对这一问题,提出了恒流输电系统供电方案的选择方法。根据恒流分支技术的工作特性,提出了 N 级供电回路的概念,将供电方案抽象成与供电回路一一对应的多个连通图,定义了存活节点率作为供电方案的评价指标,并采用基于可变时间增量法的蒙特卡洛法结合深度优先算法进行估计。该方法适用于已知网络拓扑结构下的恒流输电系统供电方案的优化选择,算例分析表明:该模型及算法能较好地分析供电方案对系统可靠性的影响,且收敛性较好。
基于恆流輸電的纜繫海底觀測網藉助恆流分支技術可以實現網格型拓撲結構,從而存在多種主供電迴路與分支供電迴路的供電組閤方案。針對這一問題,提齣瞭恆流輸電繫統供電方案的選擇方法。根據恆流分支技術的工作特性,提齣瞭 N 級供電迴路的概唸,將供電方案抽象成與供電迴路一一對應的多箇連通圖,定義瞭存活節點率作為供電方案的評價指標,併採用基于可變時間增量法的矇特卡洛法結閤深度優先算法進行估計。該方法適用于已知網絡拓撲結構下的恆流輸電繫統供電方案的優化選擇,算例分析錶明:該模型及算法能較好地分析供電方案對繫統可靠性的影響,且收斂性較好。
기우항류수전적람계해저관측망차조항류분지기술가이실현망격형탁복결구,종이존재다충주공전회로여분지공전회로적공전조합방안。침대저일문제,제출료항류수전계통공전방안적선택방법。근거항류분지기술적공작특성,제출료 N 급공전회로적개념,장공전방안추상성여공전회로일일대응적다개련통도,정의료존활절점솔작위공전방안적평개지표,병채용기우가변시간증량법적몽특잡락법결합심도우선산법진행고계。해방법괄용우이지망락탁복결구하적항류수전계통공전방안적우화선택,산례분석표명:해모형급산법능교호지분석공전방안대계통가고성적영향,차수렴성교호。
As the cabled seafloor observatory network based on constant current power transmission needs constant current branching technology to implement grid topology,there is a variety of primary power supply circuit and branched power supply circuit combining schemes.To solve this problem,a method of selecting constant current power scheme is proposed. According to the working characteristics of constant branching technology,the concept of N loop is proposed and the power scheme is abstracted into a one-to-one correspondence connected graph.In addition,the survival rate is presented as evaluation standards and,a variable time increment method based Monte Carlo method combined with the depth-first-search algorithm is adopted to estimate the survival rate of each power scheme.This method is suitable for optimization options to power supply schemes with known network topological structure.A numerical example shows that the model and algorithm can accurately analyze the influence of power supply solutions on system reliability with good convergence at that.