He Xu, Jiang Xiaofeng, Sun Fengju, Wang Zhiguo, Jiang Hongyu, Qiu Aici
State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.
State Key Laboratory of Intense Pulsed Radiation Simulation and Effect, Northwest Institute of Nuclear Technology, Xi'an 710024, China.
Rev Sci Instrum. 2022 Aug 1;93(8):083505. doi: 10.1063/5.0095141.
Linear transformer driver (LTD) technology allows a pulsed-power generator to be transportable due to its salient features in compactness and modular design. To further reduce the footprint of an MA-class pulsed-power generator, nested transmission lines were designed and tested for current adding in a four-stage gas-insulated LTD module. The current adder assembly contained two modules that were charged in opposite polarities. Each module held two LTD cavities that shared a common electrode of the nested transmission line with deionized water insulation. Post-hole convolutes were installed for the aggregation of the output current of different modules. More specifically, numerical simulations were conducted to calculate the nested line inductance, which revealed that the total system inductance was ∼10 nH in the nested geometry. Experimentally, testing on the four-stage LTD prototype showed that the LTD module can deliver a 1.2 MA current peak with a rise time of 140 ns to a short circuit load under the charging voltage of ±50 kV, which validated the applicability of using nested lines for current adding in an MA-class LTD module.
线性变压器驱动器(LTD)技术因其在紧凑性和模块化设计方面的显著特点,使脉冲功率发生器具有可运输性。为了进一步减小兆安级脉冲功率发生器的占地面积,设计并测试了用于四级气体绝缘LTD模块中电流叠加的嵌套传输线。电流叠加器组件包含两个以相反极性充电的模块。每个模块包含两个LTD腔,它们与去离子水绝缘的嵌套传输线共用一个公共电极。安装了后孔盘锥以聚集不同模块的输出电流。更具体地说,进行了数值模拟以计算嵌套线电感,结果表明在嵌套结构中系统总电感约为10 nH。通过实验,对四级LTD原型进行测试表明,在±50 kV充电电压下,LTD模块可向短路负载输送1.2 MA的电流峰值,上升时间为140 ns,这验证了在兆安级LTD模块中使用嵌套线进行电流叠加的适用性。