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Real time digital harmonic modeling and simulation: an advanced tool for understanding power system harmonics mechanisms

机译:实时数字谐波建模和仿真:了解电力系统谐波机制的高级工具

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Off-line computation and sometimes full transient time domain simulation has been the tool of choice for modeling power system harmonic phenomena in the past. Due to significant advances in real-time digital network simulation technologies, both in decreasing time step size and increased model complexity, this tool becomes more attractive for advanced harmonic analysis. This paper proposes the use of hardware-in-loop (HIL) simulations to investigate complex practical power quality problems. The principle of HIL experiments in power system simulations is explained. Taking the cycloconverter based all-electric ship propulsion system of the US coast guard icebreaker "Healy" as an example a unique HIL experiment is described. Distorted voltages measured at the "Healy's" 6.6 kV AC bus are compared with simulation results. It is concluded, that real-time simulation with HIL capability leads to better understanding of power quality problems, particularly on closed coupled systems such as ship power systems.
机译:过去,离线计算以及有时完整的瞬态时域仿真一直是建模电力系统谐波现象的首选工具。由于实时数字网络仿真技术的显着进步(既减少了时间步长又增加了模型的复杂性),该工具对于高级谐波分析变得更具吸引力。本文提出使用硬件在环(HIL)仿真来研究复杂的实际电能质量问题。解释了电力系统仿真中HIL实验的原理。以美国海岸警卫队破冰船“ Healy”的基于循环变流器的全电船舶推进系统为例,描述了一个独特的HIL实验。将在“ Healy's” 6.6 kV AC总线上测得的失真电压与仿真结果进行比较。结论是,具有HIL功能的实时仿真可以更好地理解电能质量问题,尤其是在封闭耦合系统(例如船舶动力系统)上。

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