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Synchrogenverter — Hybrid generation system

机译:Synchrogenverter —混合发电系统

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The paper describes new topology of a generation system that consists of wound rotor synchronous generator and parallel connected power electronic converter. The wound rotor synchronous generator operates as AC voltage source whereas the power electronic converter as fully controllable current source. The converter with embedded energy storage delivers active and reactive power. The first main role of the converter is to deliver reactive power, what results in zero reactive power demanded from the synchronous generator. Thus the synchronous generator moves from cosϕ = 0.8 to cosϕ = 1. So if the generator keeps its rated current and unity power factor than its active power rises about 25%. Moreover the operation with cosϕ = 1 results in significant reduction of its excitation current. Additionally the ability of quick production of the active and reactive power, by the parallel connected converter, keeps voltage and frequency stability in transients and so it permits to accept step load. Such a generation system that consists of the wound rotor synchronous generator, the parallel power electronic converter and common control of power flow is called “Synchrogenverter”. Paper presents theory and computer simulation study related to high power Synchrogenverter operating off grid (autonomously).
机译:本文介绍了由绕线转子同步发电机和并联的电力电子转换器组成的发电系统的新拓扑。绕线转子同步发电机用作交流电压源,而功率电子转换器则作为完全可控的电流源。具有嵌入式能量存储的转换器可提供有功和无功功率。转换器的第一个主要作用是提供无功功率,这导致同步发电机要求的无功功率为零。因此,同步发电机从cos = 0.8移到cos =1。因此,如果发电机保持其额定电流和单位功率因数,则其有功功率将上升约25%。此外,cosϕ = 1的操作会显着降低其励磁电流。此外,通过并联的转换器,可以快速产生有功和无功功率,从而保持瞬态电压和频率的稳定性,因此可以承受阶跃负载。这种由绕线转子同步发电机,并联功率电子转换器和潮流共同控制组成的发电系统称为“同步发电机”。论文介绍了与大功率同步逆变器(自主运行)相关的理论和计算机仿真研究。

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