致力于电磁兼容性和能源效率的全球方法

Jean-Paul Gonnet, J. Guichon, A. Anglade, N. Maizi, V. Mazauric, J. Roudet, P. Wendling
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引用次数: 2

摘要

电磁学的局部规律是通过对整个电网中交换的全局机械功率的优化推导出来的。确定了两种设备:(i)专用于功率转换的设备;及其在传输线、配电母线、电缆和连接中所涉及的联轴器。在前者中,有限元法似乎是自然的设计工具,而在后者中,所谓的PEEC方法更为合适。在低频框架内回顾了其最近的改进,包括(i)铁磁材料的反电动势(屏蔽);㈡减少焦耳损失或磁通密度水平的优化方法;(iii)整合到CAE包中
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward a global approach dedicated to electromagnetic compatibility and energy efficiency
The local laws of electromagnetism are derived from the optimization of the global mechanical power exchanged throughout the electrical network. Two kinds of devices are identified: (i) those dedicated to power conversion; and their (ii) couplings involved in transmission lines, distribution busways, cablings and connections. While the finite element method appears to be the natural design tool in the former, the so-called PEEC method is the more suitable in the latter. Its recent improvements are reviewed within the low-frequency framework including (i) back emf of ferromagnetic materials (shielding); (ii) optimization methods to reduce Joule losses or flux density levels; and (iii) integration into a CAE package
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