电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2013年
12期
71-78
,共8页
张姝%何正友%王玘%林圣
張姝%何正友%王玘%林聖
장주%하정우%왕기%림골
谐振接地系统%单相接地故障%故障选线%零序电荷-零序电压%支持向量机
諧振接地繫統%單相接地故障%故障選線%零序電荷-零序電壓%支持嚮量機
해진접지계통%단상접지고장%고장선선%령서전하-령서전압%지지향량궤
resonant grounding system%phase-to-earth fault%fault line selection%charge and voltage of zero-sequence%support vector machine
提出了一种暂态零序电荷-零序电压(Q-U)特征与支持向量机(SVM)相结合的配电网谐振接地系统故障选线方法。为解决配电网故障选线不可靠的问题,从配电网暂态故障特征出发,研究单相接地故障后馈线暂态零序电荷与零序电压的故障特征关系。并以各条馈线零序电荷与电压相关系数作为选线特征输入量,通过结合支持小样本分类的支持向量机分类算法,建立了一套基于暂态零序 Q-U 特征的配电网故障选线流程。在 PSCAD/EMTDC 仿真软件下建立35 kV 的谐振接地系统模型,大量仿真结果表明该方法不受故障距离,故障时刻的影响,特别在高阻,电弧等工况下仍然能够实现正确故障选线。
提齣瞭一種暫態零序電荷-零序電壓(Q-U)特徵與支持嚮量機(SVM)相結閤的配電網諧振接地繫統故障選線方法。為解決配電網故障選線不可靠的問題,從配電網暫態故障特徵齣髮,研究單相接地故障後饋線暫態零序電荷與零序電壓的故障特徵關繫。併以各條饋線零序電荷與電壓相關繫數作為選線特徵輸入量,通過結閤支持小樣本分類的支持嚮量機分類算法,建立瞭一套基于暫態零序 Q-U 特徵的配電網故障選線流程。在 PSCAD/EMTDC 倣真軟件下建立35 kV 的諧振接地繫統模型,大量倣真結果錶明該方法不受故障距離,故障時刻的影響,特彆在高阻,電弧等工況下仍然能夠實現正確故障選線。
제출료일충잠태령서전하-령서전압(Q-U)특정여지지향량궤(SVM)상결합적배전망해진접지계통고장선선방법。위해결배전망고장선선불가고적문제,종배전망잠태고장특정출발,연구단상접지고장후궤선잠태령서전하여령서전압적고장특정관계。병이각조궤선령서전하여전압상관계수작위선선특정수입량,통과결합지지소양본분류적지지향량궤분류산법,건립료일투기우잠태령서 Q-U 특정적배전망고장선선류정。재 PSCAD/EMTDC 방진연건하건립35 kV 적해진접지계통모형,대량방진결과표명해방법불수고장거리,고장시각적영향,특별재고조,전호등공황하잉연능구실현정학고장선선。
A method of fault line selection in the resonant grounding system of distribution network based on the characteristics of the charge-voltage(Q-U) in the transient zero sequence and support vector machine(SVM) is proposed. In order to solve the problem that methods of fault line selection in the distribution network are unreliable, this paper researches the characteristic relationship between charge and voltage in the zero sequence from the point of the fault transients generated by phase-to-earth fault. With the classification algorithm of support vector machine that supports for small sample and taking the correlation coefficients of the charge and voltage in the zero sequence of every feeder as the characteristic input, a set of processes of the fault line selection in the distribution network based on the characteristics of the charge and voltage in the zero sequence is established. A 35 kV simulation model of resonant grounding system is established in the PSCAD/EMTDC. A large number of simulation results show that the method is not affected by fault distance and fault time. Especially, it is still be able to select fault line correctly in the condition of high impedance and arc fault.