旋转变压器的半解析损耗模型

H. Krupp, A. Mertens
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引用次数: 0

摘要

在现代驱动系统中,电激励机器(ESM)已成为替代永磁体激励的有趣选择。励磁绕组通常由滑环系统提供(在汽车应用中),必须防止潮湿,油和灰尘等环境影响。为了提高ESM的功率密度,基于旋转对称变压器(图1b)的无刷励磁系统开始取代滑环。与滑环相比,它们对环境影响不敏感是其主要优势。为了使二次侧相对于一次侧运动,需要有气隙。随着车辆驱动应用的重点,它们必须设计(气)间隙宽度在0.5 mm到1.0 mm之间,或容纳公差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Semi-analytical loss model for rotary transformers
In modern drive systems, electrically excited machines (ESM) have become an interesting alternative to those excited by permanent magnets. The excitation winding is normally supplied by a slip ring system that (in automotive applications) has to be protected against environmental influences like wetness, oil and dust. To increase the power density of ESM, brushless excitation systems based on rotationally symmetric transformers (fig. 1 b) begin to replace slip rings. Their insusceptibility to environmental influences is their major advantage compared to slip rings. To allow the movement of the secondary against the primary side, air gaps are needed. With the focus on vehicle drive applications, they must be designed with (air) gap widths between 0.5 mm and 1.0 mm, or accommodation of tolerances.
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