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首页> 外文期刊>Plasma Science, IEEE Transactions on >Optimal Design of a Modular Series Parallel Resonant Converter for a Solid State 2.88 MW/115-kV Long Pulse Modulator
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Optimal Design of a Modular Series Parallel Resonant Converter for a Solid State 2.88 MW/115-kV Long Pulse Modulator

机译:固态2.88 MW / 115kV长脉冲调制器的模块化串联并联谐振转换器的优化设计

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Modern accelerator driven experiments like linear colliders or spallation sources are supplied by RF amplifiers using klystrons. The cathode voltage for these klystrons can be generated by long pulse modulators generating highly accurate voltage pulses in the length of milliseconds. Conventional designs using pulse transformers become huge for long pulses. The series-parallel resonant converter (SPRC) topology avoids this drawback as the transformer is operating at high frequencies. This paper presents a comprehensive design approach for SPRC modules, which is based on an optimization procedure containing an electrical model of the resonant circuit and a thermal model of the semiconductors. In addition, an insulation and a leakage design procedure and a thermal model of the transformer are also presented. Finally, this procedure provides the optimal design parameters of the resonant circuit elements. With these parameters, a global optimizer chooses the optimum amount of modules connected in series and/or in parallel to fulfill the given restrictions. The efficiency of a basic SPRC-module is 94.7% with a pulsed power density of 4.63 kW/l.
机译:使用速调管的RF放大器提供了现代加速器驱动的实验,例如线性对撞机或散裂源。这些速调管的阴极电压可以通过长脉冲调制器生成,该调制器会在毫秒的长度内生成高度精确的电压脉冲。对于长脉冲,使用脉冲变压器的常规设计变得巨大。串联并联谐振转换器(SPRC)拓扑避免了此缺点,因为变压器在高频下工作。本文提出了一种针对SPRC模块的综合设计方法,该方法基于优化程序,该程序包含谐振电路的电模型和半导体的热模型。此外,还介绍了变压器的绝缘和泄漏设计程序以及热模型。最后,该过程提供了谐振电路元件的最佳设计参数。使用这些参数,全局优化器可以选择最佳数量的串联和/或并联连接模块,以满足给定的限制。基本SPRC模块的效率为94.7%,脉冲功率密度为4.63 kW / l。

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