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首页> 外文期刊>IEEE Transactions on Energy Conversion >Switching Time Model Updating for the Real-Time Simulation of Power-Electronic Circuits and Motor Drives
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Switching Time Model Updating for the Real-Time Simulation of Power-Electronic Circuits and Motor Drives

机译:用于电力电子电路和电动机驱动器实时仿真的开关时间模型更新

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摘要

The main hurdle in achieving real-time performance for the simulation of power-electronic circuits is the large calculation effort required to update the model after a discontinuous change in switch impedance. The method presented here suggests that by separating the switch model from the rest of the circuit, only a much smaller equation set needs updating. Thus, it reduces the update effort to a level where it is no longer the bottleneck of the overall simulation loop. Unlike previous works on this issue, the method is independent on both the simulation approach and the circuit topology. The method has been tested on a variety of circuits with impressive results, two of which are presented here. First, there is a complete HVdc system, representing the higher limit in size and complexity. Second, a pulse-width-modulated motor drive with an external controller in a hardware-in-the-loop configuration represents a higher limit in performance requirements. Both test circuits are simulated in real time on a low-cost off-the-shelf personal computer, using the xPC technology from Simulink and automatic generation of optimized code, and are compared to a very precise variable step offline simulation.
机译:实现电力电子电路仿真的实时性能的主要障碍是在开关阻抗不连续变化后更新模型所需的大量计算工作。此处提出的方法表明,通过将开关模型与电路的其余部分分离,仅需要更新更小的方程组。因此,它将更新工作减少到不再是整个模拟循环的瓶颈的水平。与以前在该问题上的工作不同,该方法既独立于仿真方法,又独立于电路拓扑。该方法已在各种电路上进行了测试,并获得了令人印象深刻的结果,此处介绍其中两个。首先,有一个完整的HVdc系统,代表了更大的尺寸和复杂度。其次,采用硬件在环配置的带有外部控制器的脉宽调制电机驱动器代表了更高的性能要求极限。使用Simulink的xPC技术和自动生成的优化代码,在低成本的现成个人计算机上实时仿真这两个测试电路,并与非常精确的可变步长离线仿真进行比较。

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