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METHOD FOR MINIMIZING A NETWORK FEEDBACK OF A PV PARK, INVERTER, AND PV PARK

机译:最小化光伏园区,逆变器和光伏园区的网络反馈的方法

摘要

A method and associated system for minimizing grid feedback of a PV park to an energy supply grid connected to a point of common coupling is disclosed, wherein the PV park has a plurality of inverters divided into groups. The method includes, for at least a first inverter of each group, determining a first parameter representative of a first coupling impedance between the first inverter and the point of common coupling and determining a second parameter representative of a second coupling impedance between the group containing the first inverter and the point of common coupling. The method further includes storing the first parameter and the second parameter in an operating control unit of the first inverter, and, in daytime operation of the PV park, feeding in reactive power by the first inverter depending on the first parameter, said reactive power corresponding to the magnitude of a reactive power drawn by the respective underlying first coupling impedance. The method also includes, in night-time operation, deactivating all the inverters of a group with the exception of the first inverter and feeding in reactive power by the first inverter depending on the second parameter, wherein the reactive power fed in corresponds to a magnitude of a reactive power drawn by the respective underlying second coupling impedance.
机译:公开了一种用于最小化光伏电站对连接至公共耦合点的能量供应电网的电网反馈的方法和相关系统,其中光伏电站具有被分成组的多个逆变器。该方法包括,对于每个组中的至少第一逆变器,确定代表第一逆变器和公共耦合点之间的第一耦合阻抗的第一参数,以及确定代表包含第二组逆变器的组之间的第二耦合阻抗的第二参数。第一逆变器和公共耦合点。该方法还包括将第一参数和第二参数存储在第一逆变器的操作控制单元中,并且在光伏园区的白天运行中,第一逆变器根据第一参数馈入无功功率,所述无功功率对应于到由相应的下面的第一耦合阻抗汲取的无功功率的大小。该方法还包括:在夜间运行中,停用组中的所有逆变器(第一逆变器除外),并根据第二参数由第一逆变器馈入无功功率,其中馈入的无功功率对应于幅度由相应的下面的第二耦合阻抗汲取的无功功率的变化。

著录项

  • 公开/公告号US2018212429A1

    专利类型

  • 公开/公告日2018-07-26

    原文格式PDF

  • 申请/专利权人 SAM SOLAR TECHNOLOGY AG;

    申请/专利号US201815928507

  • 发明设计人 DENIS MENDE;THORSTEN BUELO;

    申请日2018-03-22

  • 分类号H02J3/18;H02J3/38;

  • 国家 US

  • 入库时间 2022-08-21 12:58:15

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