电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2014年
9期
2582-2589
,共8页
柔性直流配电网%交流配电网%可靠性对比%最小割集%直流断路器%直流变压器%直流负荷比例
柔性直流配電網%交流配電網%可靠性對比%最小割集%直流斷路器%直流變壓器%直流負荷比例
유성직류배전망%교류배전망%가고성대비%최소할집%직류단로기%직류변압기%직류부하비례
flexible DC distribution network%AC distribution network%reliability comparison%minimum-cut set%DC circuit breaker%DC/DC transformer%DC load proportion
为探索高可靠性配电网的发展方向,首次就中压柔性直流配电网的可靠性进行深入研究。建立了换流站、直流变压器和直流断路器的可靠性模型,考虑直流负荷、备用电源和分布式电源的影响,对最小割集法进行改进使其同时适用于交、直流配电网的可靠性评估。以“手拉手”环状网络为例,对比了现有技术条件下交、直流配电网的可靠性。研究表明,现阶段直流配电网的可靠性低于交流配电网;随着直流负荷比例的增大,直流配电网可靠性将得到提高,但效果有限;直流断路器和直流变压器的高故障率才是制约现阶段直流配电网可靠性提高的关键因素。随着电力电子元件的发展,直流配电网的可靠性将逐步接近甚至超越交流配电网。
為探索高可靠性配電網的髮展方嚮,首次就中壓柔性直流配電網的可靠性進行深入研究。建立瞭換流站、直流變壓器和直流斷路器的可靠性模型,攷慮直流負荷、備用電源和分佈式電源的影響,對最小割集法進行改進使其同時適用于交、直流配電網的可靠性評估。以“手拉手”環狀網絡為例,對比瞭現有技術條件下交、直流配電網的可靠性。研究錶明,現階段直流配電網的可靠性低于交流配電網;隨著直流負荷比例的增大,直流配電網可靠性將得到提高,但效果有限;直流斷路器和直流變壓器的高故障率纔是製約現階段直流配電網可靠性提高的關鍵因素。隨著電力電子元件的髮展,直流配電網的可靠性將逐步接近甚至超越交流配電網。
위탐색고가고성배전망적발전방향,수차취중압유성직류배전망적가고성진행심입연구。건립료환류참、직류변압기화직류단로기적가고성모형,고필직류부하、비용전원화분포식전원적영향,대최소할집법진행개진사기동시괄용우교、직류배전망적가고성평고。이“수랍수”배상망락위례,대비료현유기술조건하교、직류배전망적가고성。연구표명,현계단직류배전망적가고성저우교류배전망;수착직류부하비례적증대,직류배전망가고성장득도제고,단효과유한;직류단로기화직류변압기적고고장솔재시제약현계단직류배전망가고성제고적관건인소。수착전력전자원건적발전,직류배전망적가고성장축보접근심지초월교류배전망。
To explore the development direction of high reliable distribution network in future, it was the first time to research the reliability of medium-voltage flexible DC distribution network in depth. The reliability models of VSC converter station, DC/DC transformer and DC circuit breaker were established; considering the impacts of the DC load, the reserve power supply and distributed generation, the minimum-cut set method was improved to make it suitable for the reliability assessment of both AC and DC distribution networks. Taking loop distribution network for example, the reliability of AC distribution network and that of DC distribution network under existing technical conditions were compared. Comparison results show that at the present stage the reliability of DC distribution network is lower than that of AC distribution network;with the increase of the proportion of DC load the reliability of DC distribution network will be improved, however the effectiveness will be limited; the high failure rate of DC circuit breaker and DC/DC transformer is the very factor that restricts the reliability improvement of DC distribution network at the present stage. With the progress of power electronic elements, the reliability of DC distribution network would be close to that of AC distribution network gradually and even higher than that of AC distribution network.