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Control Strategy to Achieve Input Voltage Sharing and Output Current Sharing for Input-Series-Output-Parallel Inverter

机译:实现输入串联输出平行逆变器实现输入电压共享和输出电流共用的控制策略

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The input-series output-parallel (ISOP) inverter, which consists of multiple inverter modules connected in series at input and parallel at output, is attractive solution for high input voltage and high output current applications. Input voltage sharing (IVS) and output current sharing (OCS) of the ISOP inverter are the basic design requirements. This paper reveals the relationship between IVS and OCS, and shows that if OCS is achieved, IVS is automatically achieved; and if IVS is achieved, only the active components of the output currents of the modules are identical, the root-mean-square (RMS) values or power factor angles of the module output currents should be equal in order to achieve OCS. However, the attempt to achieve OCS is not stable. A control strategy to achieve both IVS and equality of the power factor angles of all the module output currents is proposed in this paper, which ensures both IVS and OCS. A 2kVA prototype of two-module ISOP inverter is fabricated and tested in the lab and the experimental results verified the proposed control strategy.
机译:输入系列输出(ISOP)逆变器由输入和并联串联连接的多个逆变器模块,是高输入电压和高输出电流应用的吸引力解决方案。 ISOP变频器的输入电压共享(IVS)和输出电流共享(OCS)是基本的设计要求。本文揭示了IVS和OCS之间的关系,并表明,如果达到OC,则会自动实现IVS;如果实现了IVS,则只有模块的输出电流的活动分量相同,模块输出电流的根均线(RMS)值或功率因数应等于以实现OC。但是,实现OCS的尝试不稳定。本文提出了实现所有模块输出电流的IVS和功率因数角度的IVS和平等的控制策略,这确保了IVS和OC。在实验室中制造和测试了两模块ISOP逆变器的2KVA原型,实验结果验证了所提出的控制策略。

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