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A fast and precise simulation method for performance screening for high power converter designs

机译:用于高功率转换器设计的性能筛选的快速精确仿真方法

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For high power converter designs, a performance screening with hundreds or thousands of configuration combinations and operation points is typically required. Standard time-domain based circuit simulators are not efficient for such screening works because of the long computation time. In this paper, a modeling and simulation methodology is presented, which is ultra-fast compared to time-domain based simulators. The paper presents a generalized method to calculate the steady-state load response, even for complicated loads like machines. Afterwards, a powerful simulation program based on MATLAB m-files is introduced, which calculates the voltage / current waveforms, device power loss and thermal stress jointly. Due to the flexible structure, multiple multilevel topologies, modulation schemes, load types and devices can be configured for the performance screening without major modifications. The proposed method reaches the same steady-state accuracy as circuit simulators in about a factor of thousand reduced computation time. Because of these features, the methodology and the program developed in this paper are perfect for a wide-range performance screenings for high power converter designs.
机译:对于高功率转换器设计,通常需要具有数百或数千配置组合和操作点的性能筛选。由于长的计算时间,标准时间域基电电路模拟器对这种筛选工作不高效。在本文中,提出了一种建模和仿真方法,与基于时域的模拟器相比,这是超快速的。纸张呈现了一种计算稳态负荷响应的广义方法,即使对于类似机器的复杂负载。之后,引入了基于MATLAB M文件的强大仿真程序,其计算电压/电流波形,设备功率损耗和热应力。由于结构灵活,可以为性能筛选配置多个多级拓扑,调制方案,负载类型和设备而无需重大修改。该方法达到与电路模拟器相同的稳态精度,在千份的计算时间内大约一倍。由于这些功能,本文开发的方法和程序非常适合高功率转换器设计的广泛性能筛选。

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