首页> 外文会议>2017 IEEE 21st International Conference on Pulsed Power >A constant power capacitor charging structure for flicker mitigation in high power long pulse klystron modulators
【24h】

A constant power capacitor charging structure for flicker mitigation in high power long pulse klystron modulators

机译:用于减轻大功率长脉冲速调管调制器中的闪烁的恒定功率电容器充电结构

获取原文
获取原文并翻译 | 示例

摘要

In order to generate high voltage high pulsed power, klystron modulators necessarily contain at least one capacitor bank charging structure supplying the energy to be released during the pulse. Conventional charging structures are based on AC/DC front-end units typically based on diode rectifiers combined with on/off controlled power charging structures as a second stage, producing prohibitive levels of grid flicker and harmonic contents on the AC grid side while operating at suboptimal power factor; problems usually corrected by both costly and spacious external grid compensators. Today, the increased demand on both accelerator peak power and pulse length (translating into higher average power), in conjunction with stricter regulations and standards represent additional challenges also in modulators' design. An alternative method for capacitor bank charging, implying use of a combination of a grid connected Active Front End (AFE) and a DC/DC buck converter is proposed. The AFE controls the AC line current to be sinusoidal (reducing harmonic content) and in phase with the AC line voltage (minimizing reactive power). The DC/DC converter is regulated in current mode for instantaneous constant power charging by measuring capacitor bank voltage and adjusting the current reference to match the exact average power consumed by the load over a pulse repetition cycle, allowing in steady state for complete reduction of the grid flicker despite the heavily pulsed loads. This paper explains in detail the working principle behind the proposed power electronic structure and associated control methodology, and provides successful power quality results obtained both in simulation and from experiments carried out on a klystron modulator prototype delivering long pulses (3.5 ms), high voltage (115 kV), and high pulsed power (peak power > 2 MW).
机译:为了产生高压高脉冲功率,速调管调制器必须包含至少一个电容器组充电结构,以提供在脉冲期间释放的能量。常规的充电结构基于AC / DC前端单元,通常基于二极管整流器并结合开/关控制的充电结构作为第二阶段,从而在交流电网侧产生次要水平的电网闪烁和谐波含量,同时以次优状态运行功率因数通常由昂贵且宽敞的外部电网补偿器来解决问题。如今,对加速器峰值功率和脉冲长度(转换为更高的平均功率)的需求不断增加,再加上更严格的法规和标准,也构成了调制器设计中的其他挑战。提出了一种用于电容器组充电的替代方法,这意味着使用并网连接的有源前端(AFE)和DC / DC降压转换器的组合。 AFE将交流线路电流控制为正弦波(降低谐波含量),并与交流线路电压同相(使无功功率最小)。通过测量电容器组电压并调节电流参考值以匹配负载在脉冲重复周期内消耗的确切平均功率,可以在电流模式下将DC / DC转换器调节为瞬时恒定功率充电,从而允许在稳态下完全降低功率损耗。尽管负载脉冲很大,但电网闪烁。本文详细解释了所提出的功率电子结构和相关控制方法背后的工作原理,并提供了在仿真和速调调制器原型上进行的实验中获得的成功电能质量结果,调速调制器原型可提供长脉冲(3.5 ms),高电压( 115 kV)和高脉冲功率(峰值功率> 2 MW)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号