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首页> 外文期刊>Plasma Science & Technology >Simulation analysis of transmission-line impedance transformers for petawatt-class pulsed power accelerators
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Simulation analysis of transmission-line impedance transformers for petawatt-class pulsed power accelerators

机译:兆瓦级脉冲功率加速器传输线阻抗变压器的仿真分析

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摘要

Based on the transmission line code TLCODE, a 1D circuit model for a transmission-line impedance transformer was developed and the simulation results were compared with those in the literature. The model was used to quantify the efficiencies of voltage-transport, energy-transport and power-transport for a transmission-line impedance transformer as functions of ψ (the ratio of the output impedance to the input impedance of the transformer) and Γ (the ratio of the pulse width to the one-way transit time of the transformer) under a large scale of m (the coefficient of the generalized exponential impedance profile). Simulation results suggest that with the increase in Γ, from 0 to ∞, the power transport efficiency first increases and then decreases. The maximum power transport efficiency can reach 90% or even higher for an exponential impedance profile (m = 1). With a consideration of dissipative loss in the dielectric and electrodes of the transformer, two representative designs of the water-insulated transformer are investigated for the next generation of petawatt-class z-pinch drivers. It is found that the dissipative losses in the electrodes are negligibly small, below 0.1%, but the dissipative loss in the water dielectric is about 1% to 4%.
机译:基于传输线代码TLCODE,开发了用于传输线阻抗变压器的一维电路模型,并将仿真结果与文献进行了比较。该模型用于量化传输线阻抗互感器的电压传输,能量传输和功率传输的效率与ψ(变压器的输出阻抗与输入阻抗之比)和Γ(在较大的m值(广义指数阻抗曲线的系数)下,脉冲宽度与变压器的单向渡越时间之比)。仿真结果表明,随着Γ的增加(从0到∞),功率传输效率先增大然后减小。对于指数阻抗曲线(m = 1),最大功率传输效率可以达到90%甚至更高。考虑到变压器的电介质和电极中的耗散损耗,研究了下一代petawatt级z捏驱动器的水绝缘变压器的两种代表性设计。已经发现,电极中的耗散损耗很小,可以忽略不计,低于0.1%,但是水电介质中的耗散损耗约为1%至4%。

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