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Development and Analysis of a Novel Cascaded Brushless Self-Excited Air-Core Compensated Pulsed Alternator With Squirrel-Cage Rotor Winding

机译:用松鼠笼转子绕组的新型级联无刷自激空心补偿脉冲发电机的开发与分析

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摘要

Brushless structure is beneficial for air-core compensated pulsed alternator (ACPA) because its field current and rotation speed are too large for the slip rings and carbon brushes. To achieve the brushless structure, a cascaded brushless self-excited ACPA (CBSACPA), which consists of an exciter and a generator in cascade, is proposed, in this article. The exciter and generator have a common rotor. A novel squirrel-cage rotor winding (SCRW), which can eliminate the end winding compared with conventional wound rotor winding (WRW), is proposed to simplify the rotor structure and improve the performance. First, the structure of the CBSACPA with the SCRW is introduced. Second, the operation principles of the machine are elaborated. Third, the dynamic mathematical model is presented. Fourth, the operation principles are demonstrated by the finite-element method. In addition, the performance of the SCRW is compared with the WRW as well. Finally, a prototype of CBSACPA is developed and tested to validate the analyses and simulations. In conclusion, this study gives detailed introduction, analyses, and validation about the CBSACPA, which provides a new solution to achieve a brushless structure for the ACPA.
机译:无刷结构有利于空心补偿脉冲交流发电机(ACPA),因为其场电流和转速对于滑环和碳刷来说太大。为了实现无刷结构,在本文中提出了一种级联无刷自我激发ACPA(CBSACPA),其包括梯级的激励器和发电机组成。激励器和发电机具有普通转子。提出了一种新型鼠笼式转子绕组(SCRW),其可以消除与传统的伤口转子绕组(WRW)相比的端部绕组,以简化转子结构并提高性能。首先,介绍了CBSACPA与SCRW的结构。其次,阐述了机器的操作原理。第三,提出了动态数学模型。第四,通过有限元方法证明了操作原理。此外,SCRW的性能也与WRW进行了比较。最后,开发并测试了CBSACPA的原型以验证分析和模拟。总之,本研究提供了关于CBSACPA的详细介绍,分析和验证,为实现ACPA实现无刷结构的新解决方案。

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