1. 电工材料电气绝缘全国重点实验室(西安交通大学),西安,710049
2. 西北核技术研究所强脉冲辐射模拟与效应全国重点实验室,西安,710024
纸质出版:2025
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降宏瑜, 姜晓峰, 王志国, 等. 单路LTD脉冲源触发时序优化方法[J]. 高电压技术, 2025,51(12):6085-6093.
降宏瑜, 姜晓峰, 王志国, et al. 单路LTD脉冲源触发时序优化方法[J]. 2025, 51(12): 6085-6093.
降宏瑜, 姜晓峰, 王志国, 等. 单路LTD脉冲源触发时序优化方法[J]. 高电压技术, 2025,51(12):6085-6093. DOI: 10.13336/j.1003-6520.hve.20241760.
降宏瑜, 姜晓峰, 王志国, et al. 单路LTD脉冲源触发时序优化方法[J]. 2025, 51(12): 6085-6093. DOI: 10.13336/j.1003-6520.hve.20241760.
调节每级开关触发时序可调控直线型变压器驱动源(linear transformer driver,LTD)输出波形。针对特定负载输出波形要求,建立反映每级开关触发导通闭合时间和次级电磁波传输过程的全电路模型,结合搜索优化算法,实现开关触发时序自动优化,是利用LTD脉冲源开展相关应用实验的前提。为此建立了基于贝杰龙算法和粒子群引力搜索算法的单路LTD脉冲源触发时序优化方法,在给定脉冲源电路参数和输出波形要求下,优化计算得到LTD开关平均触发时序系数,计算结果与12级LTD脉冲源级联触发实验相符,计算迭代次数 < 10,验证了该方法的有效性。结果表明,12级LTD脉冲源充电±60 kV,平均触发时序系数范围为0.96~1.39,脉冲源输出电流幅值为(766±8) kA,前沿在96~109.6 ns范围内可调。该优化方法可为大型LTD脉冲功率装置波形调控提供关键的触发时序参数。
Adjusting the switch trigger timing of each stage can realize the output waveform control of the Linear Transformer driver (LTD). Establishment of a full-circuit model which reflects the switch triggered close time of each stage and secondary electromagnetic wave transmission process
as well as the automatic optimization of switch trigger timing for specific output waveform by combining with the search optimization algorithm
is the basis of LTD application experiments. In this paper
the trigger timing optimization method of single-module LTD based on the Bergeron algorithm and particle swarm optimization gravitation search algorithm is established. Under the conditions of given pulsed source circuit parameters and output waveform requirements
the trigger timing coefficients are optimized. The calculated results are in agreement with the cascade-triggering experiment of the 12-stage LTD pulsed source
which verifies the effectiveness of the proposed method
and the number of iterations per calculation is less than 10. The results show that
when the 12-stage LTD pulsed source is charged ±60 kV
the trigger timing coefficient ranges from 0.96 to 1.39
the output current amplitude of the pulsed source is (766±8) kA
and the output current front is adjustable from 96 to 109.6 ns. The optimization method can provide the crucial trigger timing parameters for waveform control of large-scale LTD pulsed power devices.
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