脉冲氙灯瞬态放电电流诊断单元设计分析
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Design and analysis of diagnosis unit for pulsed xenon lamp transient discharge current
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    摘要:

    脉冲氙灯瞬态放电电流诊断单元是惯性约束聚变(ICF)激光装置中能源系统的重要组成部分,基于对其面临的强电磁干扰、噪声耦合、多路并行采集电路拓扑约束等问题的分析,提出了一种多级隔离和基于现场可编程门阵列(FPGA)的多路并行架构的诊断单元设计方法,并依据该方法完成了样机研制。实验表明,诊断单元的电流测量范围为0~25 kA,采样率为200 kHz,测量准确度优于±0.5%,满足31 kV工作点电压下20路脉冲氙灯放电电流的同步诊断需求。相比传统设计,该方法具备更强的电磁兼容性和更高的并行采集设计集成度。

    Abstract:

    The diagnostic unit of pulsed xenon lamp transient discharge current is an important part of the energy system in an Inertial Confinement Fusion(ICF) laser device. Based on the analysis of problems such as strong electromagnetic interference, noise coupling, and topological constraints of multiple parallel acquisition circuits, a design method of multi-level isolation and Field Programmable Gate Array(FPGA)-based multi-channel synchronous parallel architecture is proposed and the prototype is developed. Experiments show that the current measurement range of the diagnostic unit is 0-25 kA, the sampling rate is 200 kHz, and the measurement accuracy is better than ±0.5%. This design meets the requirements of synchronous diagnosis of the discharge current of 20 pulsed xenon lamps under 31 kV of working point voltage. Compared with traditional design, this method has stronger electromagnetic compatibility and higher integration of parallel acquisition design.

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苏 东,陈德怀,张公全,张雄军,沈 昊,赖贵友,唐海波.脉冲氙灯瞬态放电电流诊断单元设计分析[J].太赫兹科学与电子信息学报,2021,19(2):342~346

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  • 收稿日期:2019-11-19
  • 最后修改日期:2020-01-14
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  • 在线发布日期: 2021-05-07
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