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Hamiltonian Point of View on Parallel Interconnection of Buck Converters

机译:哈密​​尔顿对平行互连降压转换器的观点

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In this article, parallel interconnection of dc/dc converters is considered. For this topology of converters feeding a common load, it has been recently shown that dynamics related to voltage regulation can be completely separated from the current distribution without considering frequency separation arguments, which inevitably limits achievable performance. Within the Hamiltonian framework, this article shows that this separation between current distribution and voltage regulation is linked to the energy conservative quantities: the Casimir functions. Furthermore, a robust control law is given in this framework to get around the fact that the load might be unknown. In this article, we also ensure that the system converges to the optimal current repartition, without requiring explicit expression of the optimal locus. Finally, resulting control law efficiency is assessed through experimental results.
机译:在本文中,考虑了DC / DC转换器的并行互连。对于馈送公共负载的转换器的这种拓扑,最近已经表明,与电压调节相关的动态可以完全与电流分布完全分开,而不考虑频率分离参数,这不可避免地限制可实现的性能。本文在Hamiltonian框架内,显示电流分布和电压调节之间的这种分离与节能数量相关联:Casimir功能。此外,在本框架中给出了强大的控制法,以解决负载可能未知的事实。在本文中,我们还确保系统会聚到最佳电流重置,而无需明确表达最佳基因座。最后,通过实验结果评估所产生的控制法效率。

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