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High-Efficiency Control Strategy of an Air-Core Pulsed Alternator Pair

机译:空心脉冲交流发电机对的高效控制策略

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摘要

As an attractive power supply for high energy level pulsed power applications, such as long range electromagnetic railgun, electromagnetic aircraft launch system, and high-energy laser, multiple pulsed alternators can not only meet the high energy level requirement of the load, but also lower the requirements of the power electronics in the system. Utilizing multiple pulsed alternators work together also makes the control strategy of the system more flexible. In order to improve the efficiency of the whole system, a novel control strategy of an air-core pulsed alternator pair is proposed in this paper. Like a single pulsed alternator, the whole work process of the pulsed alternator pair can also be divided into three subprocesses: the self-excitation process, the discharge process, and the energy reclamation process. In the self-excitation and energy reclamation processes, the armature windings of the pulsed alternator pair are connected in series, and the filed windings are connected in parallel. In order to illustrate the advantages of this control strategy, a comprehensive discussion of different connection topologies of the alternator pair has been made in this paper. A mathematical model based on the equivalent circuit of the air-core pulsed alternator considering the harmonic components was also established in this paper, which could help calculating the system efficiency more accurately. The results and conclusions of the analyses and simulations can offer guidance for the air-core pulsed alternator pair system design and optimization.
机译:作为用于高能级脉冲电源应用(例如远程电磁轨道炮,电磁飞机发射系统和高能激光)的有吸引力的电源,多脉冲交流发电机不仅可以满足负载的高能级要求,而且还可以降低负载系统中电力电子设备的要求。利用多个脉冲交流发电机一起工作还使系统的控制策略更加灵活。为了提高整个系统的效率,提出了一种新型的空心脉冲交流发电机对控制策略。像单个脉冲交流发电机一样,脉冲交流发电机对的整个工作过程也可以分为三个子过程:自励磁过程,放电过程和能量回收过程。在自励和能量回收过程中,脉冲交流发电机对的电枢绕组串联连接,场绕组并联连接。为了说明这种控制策略的优势,本文对交流发电机对的不同连接拓扑进行了全面的讨论。建立了基于空心脉冲交流发电机等效电路并考虑谐波分量的数学模型,有助于更准确地计算系统效率。分析和仿真的结果和结论可为空心脉冲交流发电机对系统的设计和优化提供指导。

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