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Comparison Between Self-Excitation and Pulse-Excitation in Air-Core Pulsed Alternator Systems

机译:空芯脉冲交流发电机系统中自励磁和脉冲励磁的比较

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Air-core pulsed alternators greatly enhance the power density capabilities of pulsed power supply for electromagnetic launchers. Compared with iron-core electric machines, they require very high-excitation currents. Usually, the self-excitation mode is adopted in these systems. However, the self-excitation mode is a positive feedback process that should be precisely controlled to avoid the system being destroyed. The excitation losses are very large during the process of establishing the large field current. To solve these problems, a new excitation mode, the pulse-excitation mode, is presented in this paper. The main idea is that a pulsed current charges the field coil so that the field coil and the armature coil conduct only for a short time around the main discharge pulse. This will avoid the machine being overheated and the risk of positive feedback process. Compared with the self-excitation mode, the pulsed alternator can be operated in a higher discharge frequency and the circuit schematic of the system is simpler. A larger field capacitor is used that charges the field coil to the desired current just by a pulse. As the energy density of pulse capacitor is enhanced rapidly, the volume and mass of the field capacitor are acceptable. The pulse-excitation mode is a combination of pulsed alternator and pulsed capacitor. In this paper, the characteristics of self-excitation and pulse-excitation are analyzed, respectively. The performances of both systems are simulated, and the main waveforms are presented. Finally, there is a practical comparison between them.
机译:空心脉冲交流发电机极大地增强了电磁发射器脉冲电源的功率密度能力。与铁芯电机相比,它们需要非常高的励磁电流。通常,在这些系统中采用自激模式。但是,自激模式是一个正反馈过程,应对其进行精确控制,以免损坏系统。在建立大的励磁电流的过程中,励磁损耗非常大。为了解决这些问题,本文提出了一种新的激励模式,即脉冲激励模式。主要思想是脉冲电流为励磁线圈充电,以便励磁线圈和电枢线圈仅在主放电脉冲附近短时间导通。这样可以避免机器过热和正反馈过程的风险。与自励磁模式相比,脉冲交流发电机可以以更高的放电频率运行,并且系统的电路图更加简单。使用较大的励磁电容器,仅通过脉冲即可将励磁线圈充电至所需电流。由于脉冲电容器的能量密度迅速提高,因此可以接受现场电容器的体积和质量。脉冲激励模式是脉冲交流发电机和脉冲电容器的组合。本文分别分析了自励磁和脉冲励磁的特性。仿真了两个系统的性能,并给出了主要波形。最后,它们之间有实际的比较。

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