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Investigation of Self-Excitation and Discharge Processes in an Air-Core Pulsed Alternator

机译:空心脉冲交流发电机自励和放电过程的研究

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摘要

The air-core pulsed alternator has advantages in the application of pulsed power region, such as in electromagnetic launchers. The self-excitation and discharge processes in an air-core alternator are more complicated than traditional iron-core generators. In this paper, a mathematical model of an air-core pulsed alternator is built and several critical problems are analyzed, such as the conditions for successful self-excitation, the time needed for self-excitation, the waveforms of electromagnetic torque, discharge current and load voltage, and the compensation action during discharge, the effect of triggered angles, the rotational speed curve, and the energy reclaiming. Investigation of self-excitation and discharge processes in an air-core pulsed alternator is helpful for understanding the operation principle, predicting the performance, and analyzing and designing the system.
机译:空心脉冲交流发电机在脉冲功率区域的应用中具有优势,例如在电磁发射器中。空芯交流发电机的自励和放电过程比传统的铁芯发电机要复杂得多。本文建立了空心脉冲交流发电机的数学模型,分析了自激成功的条件,自激所需的时间,电磁转矩的波形,放电电流和自激的几个关键问题。负载电压,放电过程中的补偿作用,触发角的影响,转速曲线和能量回收。对空心脉冲交流发电机的自激和放电过程进行研究有助于理解其工作原理,预测性能以及分析和设计系统。

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