电力系统自动化
電力繫統自動化
전력계통자동화
Automation of Electric Power Systems
2015年
22期
10-15
,共6页
王晨清%宋国兵%汤海雁%迟永宁%常仲学%李端祯
王晨清%宋國兵%湯海雁%遲永寧%常仲學%李耑禎
왕신청%송국병%탕해안%지영저%상중학%리단정
风电系统%故障特征%距离保护%适应性分析
風電繫統%故障特徵%距離保護%適應性分析
풍전계통%고장특정%거리보호%괄응성분석
wind power system%fault characteristics%distance protection%adaptation analysis
大规模风电接入交流输电网使得风电系统表现出越来越多异于常规电网的故障特征,传统继电保护应用于风电接入系统时存在适应性问题。距离保护广泛应用于电力系统输电线路保护,研究其对风电系统适应性意义重大。针对距离保护的适应性问题,首先通过各距离保护的基本原理得出其最佳应用条件,然后基于该条件结合风电系统的一般故障特征从理论上对其适应性进行分析,得到距离保护适应性的一般结论。研究结果表明,风电系统的弱馈性和系统阻抗不稳定性使得基于工频变化量的距离保护不适用于风电接入系统,风电系统的高谐波和频偏特性使得工频量距离保护存在相量提取问题,时域距离保护动作性能良好。仿真结果验证了理论分析的正确性。
大規模風電接入交流輸電網使得風電繫統錶現齣越來越多異于常規電網的故障特徵,傳統繼電保護應用于風電接入繫統時存在適應性問題。距離保護廣汎應用于電力繫統輸電線路保護,研究其對風電繫統適應性意義重大。針對距離保護的適應性問題,首先通過各距離保護的基本原理得齣其最佳應用條件,然後基于該條件結閤風電繫統的一般故障特徵從理論上對其適應性進行分析,得到距離保護適應性的一般結論。研究結果錶明,風電繫統的弱饋性和繫統阻抗不穩定性使得基于工頻變化量的距離保護不適用于風電接入繫統,風電繫統的高諧波和頻偏特性使得工頻量距離保護存在相量提取問題,時域距離保護動作性能良好。倣真結果驗證瞭理論分析的正確性。
대규모풍전접입교류수전망사득풍전계통표현출월래월다이우상규전망적고장특정,전통계전보호응용우풍전접입계통시존재괄응성문제。거리보호엄범응용우전력계통수전선로보호,연구기대풍전계통괄응성의의중대。침대거리보호적괄응성문제,수선통과각거리보호적기본원리득출기최가응용조건,연후기우해조건결합풍전계통적일반고장특정종이론상대기괄응성진행분석,득도거리보호괄응성적일반결론。연구결과표명,풍전계통적약궤성화계통조항불은정성사득기우공빈변화량적거리보호불괄용우풍전접입계통,풍전계통적고해파화빈편특성사득공빈량거리보호존재상량제취문제,시역거리보호동작성능량호。방진결과험증료이론분석적정학성。
The large-scale wind power integration into power system shows more and more unique fault features.There exists an adaptability problem when traditional relays are used with wind power.Distance protection is widely used for transmission line protection and its adaptability to the wind power has great significance.To assess the adaptability,the best working condition is firstly obtained by deducing the basic theory of the distance protection.And then,based on the condition and the fault characteristics of wind power system,the protection adaptation is analyzed using theoretical analysis.The research shows that the power frequency variation of impedance protection is not suitable for wind power integration due to poor feedback and instability of wind power system impedance.The power frequency distance protection has phasor extraction problem because of high harmonics and frequency deviation in the wind power system.In the meantime,the time domain distance protection still remains good performance.The above points are verified by simulation results.