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Design of a 6-MW Solid-State Pulse Modulator Using Marx Generator for the Medical Linac

机译:使用马克思发生器的直线加速器设计6兆瓦固态脉冲调制器

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The linear accelerators (linacs) producing high energy and high power of electron-beam or X-ray beam have been used in medicine, industry, national security, etc. In the linac, the electrons are generated by the electron gun and accelerated in the accelerating column with the high-power RF fields. The high-voltage pulses from the pulse modulator are supplied to the RF power source and the electron gun. The pulse modulator is one of the big and expensive components in the linac. The commercial medical linacs commonly use the pulse modulator based on the thyratron-switched pulse-forming network. In order to improve the power efficiency, achieve the system compactness, and optimize the cost and space, the solid-state pulse modulator based on the Marx generator was proposed. The low-power solid-state pulse modulator was developed for the electron gun operation. The conceptual design and functional results were confirmed. In order to apply it to the RF power source, such as a magnetron or a klystron, the 6-MW pulse modulator with the same Marx scheme is proposed. It consists of 40 storage-switch stages and one high-voltage pulse transformer, producing the pulse of 50 kV and 120 A required by the magnetron in the medical linac. A storage-switch stage was designed for insulated gate bipolar transistors to switch high current of 280 A and 720 V and to use the capacitor of which was chosen for the voltage droop of 10% with the pulsewidth of . The prototype system with eight storage-switch stages was fabricated and tested with a load system. The performance results show that it can be extended to be the 6-MW solid-state pulse modulator. In this paper, we describe the design features, and discuss the results and also the future plan to optimize the solid-state pulse modulator in the medical linac.
机译:线性加速器(线性加速器)可产生高能量和高功率的电子束或X射线束,已用于医药,工业,国家安全等领域。在线性加速器中,电子由电子枪产生并在电子枪中加速大功率射频场的加速柱。来自脉冲调制器的高压脉冲被提供给RF电源和电子枪。脉冲调制器是直线加速器中大型且昂贵的组件之一。商业医用直线加速器通常使用基于晶闸管开关脉冲形成网络的脉冲调制器。为了提高电源效率,实现系统紧凑,优化成本和空间,提出了一种基于马克思发生器的固态脉冲调制器。低功率固态脉冲调制器是为电子枪操作而开发的。概念设计和功能结果得到确认。为了将其应用于诸如磁控管或速调管之类的射频电源,提出了具有相同马克思方案的6兆瓦脉冲调制器。它由40个存储开关级和1个高压脉冲变压器组成,可产生50 kV和120 A的脉冲,这是医疗直线加速器中磁控管所需的。为绝缘栅双极型晶体管设计了一个存储开关级,以切换280 A和720 V的高电流,并使用其电容器为10%的电压降选择,脉冲宽度为。制造了具有八个存储开关级的原型系统,并使用负载系统进行了测试。性能结果表明,它可以扩展为6兆瓦固态脉冲调制器。在本文中,我们描述了设计特征,并讨论了结果以及优化医疗直线加速器中固态脉冲调制器的未来计划。

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