Design of a damped sinusoidal oscillator system

J. M. Lee, H. Kwon, S. M. Hwang, J. Ahn
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引用次数: 6

Abstract

A damped sinusoidal (DS) oscillator system has been designed and fabricated in our laboratory. The system consists of a primary power source, a Marx generator, a transmission line oscillator, and a helical antenna. A Marx generator is used to feed 300kV high voltage pulse to the DS oscillator. The designed characteristic impedance and average switching voltage of the DS oscillator is 6.3 ohm and 300kV respectively. The axial mode helical antenna is designed to operate at a frequency around 250MHz. The whole DS oscillator system has been simulated using FEMM, Pspice and CST MWS. The measured maximum horizontal electric field is 18kV/m at a range of 10m when the transmission line oscillator is charged with 230kV. This paper describes works performed in initial design stage, computer simulation stage, and test results of our manufactured DS system.
阻尼正弦振荡器系统的设计
本文设计并制作了一个阻尼正弦(DS)振荡器系统。该系统由主电源、马克思发生器、传输线振荡器和螺旋天线组成。采用马克思发生器向DS振荡器输入300kV高压脉冲。设计的DS振荡器特性阻抗为6.3欧姆,平均开关电压为300kV。轴向模式螺旋天线的设计工作频率约为250MHz。利用FEMM、Pspice和CST MWS对整个DS振荡器系统进行了仿真。当传输线振荡器充电230kV时,在10m范围内测得的最大水平电场为18kV/m。本文介绍了自制的DS系统在初始设计阶段、计算机仿真阶段所做的工作和测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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