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Tradeoffs Between AC Power Quality and DC Bus Ripple for 3-Phase 3-Wire Inverter-Connected Devices Within Microgrids

机译:微电网中三相3线逆变器连接设备的交流电源质量和直流母线波纹之间的权衡

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Visions of future power systems contain high penetrations of inverters which are used to convert power from dc (direct current) to ac (alternating current) or vice versa. The behavior of these devices is dependent upon the choice and implementation of the control algorithms. In particular, there is a tradeoff between dc bus ripple and ac power quality. This study examines the tradeoffs. Four control modes are examined. Mathematical derivations are used to predict the key implications of each control mode. Then, an inverter is studied both in simulation and in hardware at the 10 kVA scale, in different microgrid environments of grid impedance and power quality. It is found that voltage-drive mode provides the best ac power quality, but at the expense of high dc bus ripple. Sinusoidal current generation and dual-sequence controllers provide relatively low dc bus ripple and relatively small effects on power quality. High-bandwidth dc bus ripple minimization mode works well in environments of low grid impedance, but is highly unsuitable within higher impedance microgrid environments and/or at low switching frequencies. The findings also suggest that the certification procedures given by G5/4, P29 and IEEE 1547 are potentially not adequate to cover all applications and scenarios.
机译:未来电力系统的愿景包含逆变器的高普及率,这些逆变器用于将功率从dc(直流电)转换为ac(交流电),反之亦然。这些设备的行为取决于控制算法的选择和实现。特别是,直流母线纹波和交流电源质量之间需要权衡。本研究考察了权衡。检查了四种控制模式。数学推导用于预测每种控制模式的关键含义。然后,在电网阻抗和电能质量的不同微电网环境中,以10kVA规模对逆变器进行了仿真和硬件研究。发现电压驱动模式可提供最佳的交流电源质量,但以高直流总线纹波为代价。正弦电流产生和双序列控制器可提供较低的直流总线纹波,并且对电能质量的影响较小。高带宽直流总线纹波最小化模式在低电网阻抗的环境下效果很好,但在高阻抗微电网环境和/或低开关频率下非常不适合。研究结果还表明,G5 / 4,P29和IEEE 1547给出的认证程序可能不足以涵盖所有应用程序和场景。

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