电力系统自动化
電力繫統自動化
전력계통자동화
Automation of Electric Power Systems
2015年
20期
116-123
,共8页
郭丽伟%薛永端%张林利%徐丙垠%张仲夏
郭麗偉%薛永耑%張林利%徐丙垠%張仲夏
곽려위%설영단%장림리%서병은%장중하
配电网%小电阻接地方式%分布式电源%接地故障%故障电流
配電網%小電阻接地方式%分佈式電源%接地故障%故障電流
배전망%소전조접지방식%분포식전원%접지고장%고장전류
distribution network%low resistance grounding mode%distributed generator(DG)%earth fault%fault current
不同接地方式分布式电源(DG)并网将影响系统单相接地故障电流特征,对于小电阻接地方式配电网,DG 接地方式选择较为灵活,对接地故障电流的影响尤为复杂。针对小电阻接地方式配电网,建立了旋转型 DG 并网后的接地故障分析模型,分析了并网 DG 采用不同接地方式时接地故障点电流、线路三相故障电流与线路正序、负序、零序电流的特征。结果表明,不接地方式 DG 对接地故障电流基本无影响;但 DG 采用直接接地、小电阻接地方式时,各故障电流将明显增大或减小,甚至从无到数百安培,将会影响系统原有接地保护与三相保护性能。研究成果可为含 DG 小电阻接地方式配电网的保护配置与 DG 接地方式选择提供理论依据。
不同接地方式分佈式電源(DG)併網將影響繫統單相接地故障電流特徵,對于小電阻接地方式配電網,DG 接地方式選擇較為靈活,對接地故障電流的影響尤為複雜。針對小電阻接地方式配電網,建立瞭鏇轉型 DG 併網後的接地故障分析模型,分析瞭併網 DG 採用不同接地方式時接地故障點電流、線路三相故障電流與線路正序、負序、零序電流的特徵。結果錶明,不接地方式 DG 對接地故障電流基本無影響;但 DG 採用直接接地、小電阻接地方式時,各故障電流將明顯增大或減小,甚至從無到數百安培,將會影響繫統原有接地保護與三相保護性能。研究成果可為含 DG 小電阻接地方式配電網的保護配置與 DG 接地方式選擇提供理論依據。
불동접지방식분포식전원(DG)병망장영향계통단상접지고장전류특정,대우소전조접지방식배전망,DG 접지방식선택교위령활,대접지고장전류적영향우위복잡。침대소전조접지방식배전망,건립료선전형 DG 병망후적접지고장분석모형,분석료병망 DG 채용불동접지방식시접지고장점전류、선로삼상고장전류여선로정서、부서、령서전류적특정。결과표명,불접지방식 DG 대접지고장전류기본무영향;단 DG 채용직접접지、소전조접지방식시,각고장전류장명현증대혹감소,심지종무도수백안배,장회영향계통원유접지보호여삼상보호성능。연구성과가위함 DG 소전조접지방식배전망적보호배치여 DG 접지방식선택제공이론의거。
The distributed generator (DG) with different grounding modes will affect the characteristics of single-phase earth fault current.For a low resistance grounded distribution network,the grounding mode selection of DG is rather flexible and its influence on earth fault current is particularly complicated.Based on a low resistance grounded distribution network,a single-phase earth fault analysis model of distribution network containing rotary DG is established.Earth fault point current,sequence fault current and three phase fault current are analyzed respectively when DG adopts different grounding modes.Research results show that DG with the non-grounding mode has little influence on the characteristics of earth fault current and that when DG adopts the direct grounding mode or low resistance grounding mode,fault current will obviously increase or decrease, even reaching several hundred amperes from nil,which will affect the performance of existing earth fault protection and three-phase over-current protection.Research results can provide theoretical basis to configurations of earth fault protection and the neutral grounding mode selection of DG in low resistance grounded distribution network containing DG.