电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2011年
8期
18-25
,共8页
易强%周浩%计荣荣%苏菲%孙可%陈稼苗
易彊%週浩%計榮榮%囌菲%孫可%陳稼苗
역강%주호%계영영%소비%손가%진가묘
特高压%高抗补偿度%下限%潜供电流限制%空载线路电压
特高壓%高抗補償度%下限%潛供電流限製%空載線路電壓
특고압%고항보상도%하한%잠공전류한제%공재선로전압
UHV%compensation degree of HV shunt reactor%lower limit%restriction of secondary arc current%voltage of no-load line
分析了潜供电流限制、空载线路电压控制对高抗补偿度的要求,给出了从潜供电流限制与空载线路电压控制角度确定高抗补偿度下限的方法。结果表明,为达到限制潜供电流的目的,单回线路的高抗补偿容量应大于线路相问电容的无功功率,双回线路的高抗补偿容量则应大于线路相间电容无功功率和以及部分回间电容无功功率之和,故此类下限受到线路参数影响较为明显,在可能的参数变化范围内,单回线路和双回线路的此类下限最高约为55%和65%。而由空载线路电压控制所要求的高抗下限却随线路长度的增加而提高,且与线路两端落点类型关系密切。线路较短时,高抗补偿度下限一般由潜供电流限制决定;线路较长时,则由空载线路电压控制决定。
分析瞭潛供電流限製、空載線路電壓控製對高抗補償度的要求,給齣瞭從潛供電流限製與空載線路電壓控製角度確定高抗補償度下限的方法。結果錶明,為達到限製潛供電流的目的,單迴線路的高抗補償容量應大于線路相問電容的無功功率,雙迴線路的高抗補償容量則應大于線路相間電容無功功率和以及部分迴間電容無功功率之和,故此類下限受到線路參數影響較為明顯,在可能的參數變化範圍內,單迴線路和雙迴線路的此類下限最高約為55%和65%。而由空載線路電壓控製所要求的高抗下限卻隨線路長度的增加而提高,且與線路兩耑落點類型關繫密切。線路較短時,高抗補償度下限一般由潛供電流限製決定;線路較長時,則由空載線路電壓控製決定。
분석료잠공전류한제、공재선로전압공제대고항보상도적요구,급출료종잠공전류한제여공재선로전압공제각도학정고항보상도하한적방법。결과표명,위체도한제잠공전류적목적,단회선로적고항보상용량응대우선로상문전용적무공공솔,쌍회선로적고항보상용량칙응대우선로상간전용무공공솔화이급부분회간전용무공공솔지화,고차류하한수도선로삼수영향교위명현,재가능적삼수변화범위내,단회선로화쌍회선로적차류하한최고약위55%화65%。이유공재선로전압공제소요구적고항하한각수선로장도적증가이제고,차여선로량단낙점류형관계밀절。선로교단시,고항보상도하한일반유잠공전류한제결정;선로교장시,칙유공재선로전압공제결정。
To restrict both secondary arc current and no-load voltage of UHVAC transmission line, the relation between secondary arc current and compensation degree of HV shunt reactor and that between voltage of no-load line and the compensation degree are researched, and the method to determine the lower limit of compensation degree of HV shunt reactor in the viewpoint of restricting secondary arc cuffent and voltage of no-load line is given. Research results show that to restrict secondary arc current of single-circuit UHVAC line the capacity of HV shunt reactor should be higher than the capacitive power of interphase capacitance; the capacity of HV shunt reactor should be higher that the sum of capacitive power of interphase capacitance and partial capacity of inter-circuit capacitance; thus the lower limit of compensation degree of HV shunt reactor determined by the restriction of secondary arc current is evidently influenced by parameters of transmission line, and within possible parameter variation range of UHVAC transmission line, the lower limit of compensation degree of HV shunt reactor for single-circuit UHVAC line is 55% and that for double-circuit UHVAC line is 65%. The lower limit of compensation degree of HV shunt reactor determined by the restriction of voltage of no-load line should be increased with the increasing of the length of transmission line and is closely related to the type of drop-point of both ends of UHVAC line. For short UHVAC line the lower limit of compensation degree of HV shunt reactor can be determined by the restriction of secondary arc current in general; for long UHVAC line the lower limit of compensation degree of HV shunt reactor can be determined by the restriction of voltage of no-load line.