电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2012年
20期
13-18
,共6页
电力系统%黑启动%电网恢复%路径寻优%路径权重因子%节点权重因子
電力繫統%黑啟動%電網恢複%路徑尋優%路徑權重因子%節點權重因子
전력계통%흑계동%전망회복%로경심우%로경권중인자%절점권중인자
power systems%black-start%power grid restoration%path optimization%path weight factor%node weight factor
现有黑启动路径寻优方法运用不同指标表征电网输电线路或节点重要性,但所采用的指标尚不完备。文中提出了基于路径和节点权重因子的黑启动路径寻优新方法,通过计算路径和节点权重因子等指标定量评判路径和节点的重要性,考虑了影响路径和节点重要性的各种因素以提高指标的完备性。基于关联权重因子的计算和比较,完成恢复路径的辨识,实现黑启动路径的优化。将电网恢复过程划分为系统启动、网架形成前、主网架恢复和辐射恢复等阶段,建立相应的路径寻优模型以满足不同阶段的恢复需求。最后,运用所提出的方法并结合电网恢复策略,为实际电网建立黑启动路径。
現有黑啟動路徑尋優方法運用不同指標錶徵電網輸電線路或節點重要性,但所採用的指標尚不完備。文中提齣瞭基于路徑和節點權重因子的黑啟動路徑尋優新方法,通過計算路徑和節點權重因子等指標定量評判路徑和節點的重要性,攷慮瞭影響路徑和節點重要性的各種因素以提高指標的完備性。基于關聯權重因子的計算和比較,完成恢複路徑的辨識,實現黑啟動路徑的優化。將電網恢複過程劃分為繫統啟動、網架形成前、主網架恢複和輻射恢複等階段,建立相應的路徑尋優模型以滿足不同階段的恢複需求。最後,運用所提齣的方法併結閤電網恢複策略,為實際電網建立黑啟動路徑。
현유흑계동로경심우방법운용불동지표표정전망수전선로혹절점중요성,단소채용적지표상불완비。문중제출료기우로경화절점권중인자적흑계동로경심우신방법,통과계산로경화절점권중인자등지표정량평판로경화절점적중요성,고필료영향로경화절점중요성적각충인소이제고지표적완비성。기우관련권중인자적계산화비교,완성회복로경적변식,실현흑계동로경적우화。장전망회복과정화분위계통계동、망가형성전、주망가회복화복사회복등계단,건립상응적로경심우모형이만족불동계단적회복수구。최후,운용소제출적방법병결합전망회복책략,위실제전망건립흑계동로경。
Despite the use of different indicators by existing methods for black-start path optimization to represent the importance of transmission lines and nodes in a power grid,they are not complete.A new method for black-start path optimization based on path and node weight factors is put forward,which are calculated to quantitatively judge the importance of path and node.This method considers each of the factors that influence the importance of path and node to increase the completeness of the indicators.Based on the calculation and comparison of relational weight factors,the identification of the restoration path can be made to realize the optimization of the black-start path.The restoration strategy is divided into four parts: system start-up,pre-formation of backbone network,backbone network restoration and all-direction restoration.Corresponding path optimization models are built to meet the demands of different phases.Finally,the new method combined with the restoration strategy is used to build black-start paths for an actual power grid.