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高压保护开关缓冲电路参数优化设计
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作者 李志恒 马少翔 +4 位作者 张鸿淇 朱帮友 张明 于克训 潘垣 《强激光与粒子束》 CAS CSCD 北大核心 2024年第2期58-69,共12页
目前的高压保护开关缓冲电路参数设计缺乏相关理论设计方法,同时缓冲电路方案由于设计过程中并未考虑分布电容影响,因此均为等参数设计方案,这种方法均压效果不够理想。为了解决目前参数设计中存在的问题,首先建立了含缓冲电路和杂散电... 目前的高压保护开关缓冲电路参数设计缺乏相关理论设计方法,同时缓冲电路方案由于设计过程中并未考虑分布电容影响,因此均为等参数设计方案,这种方法均压效果不够理想。为了解决目前参数设计中存在的问题,首先建立了含缓冲电路和杂散电感的MOSFET模型并对其关断过程进行了分析,从而得到了抑制电压尖峰的缓冲电路理论设计方法及表达式。针对串联均压未考虑分布电容的问题,通过构造等电位点,建立了含有分布电容的等效电路并进行分析,根据电荷方程等式得到了缓冲电路非等参数设计方法及表达式,该参数设计方法可以补偿分布电容造成的电压分布不均,并更好地指导高压保护开关的均压方案设计。为了验证参数设计的合理性进行了仿真分析,结果表明,最终得到的整体设计方案可以满足尖峰抑制以及均压的设计要求。 展开更多
关键词 高压开关 缓冲电容 缓冲电阻 分布电容 均压
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DC active power filter based on model predictive control for DC bus overvoltage suppression of accelerator grid power supply 被引量:1
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作者 张鸿淇 朱帮友 +3 位作者 马少翔 李志恒 张明 潘垣 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第6期1-13,共13页
The China Fusion Engineering Test Reactor plans to build a 200 k V/25 A acceleration grid power supply(AGPS)for the negative-ion-based neutral beam injector prototype system.The AGPS uses a rectifier-inverter-isolated... The China Fusion Engineering Test Reactor plans to build a 200 k V/25 A acceleration grid power supply(AGPS)for the negative-ion-based neutral beam injector prototype system.The AGPS uses a rectifier-inverter-isolated step-up structure.There is a DC bus between the rectifier and the inverter.In order to limit DC bus voltage ripple and transient fluctuations,a large number of capacitors are used,which degrades the reliability of the power supply and occupies a large amount of space.This work finds that due to the difference in the turn-off time of the rectifier and the inverter,the capacitance mainly depends on the rectifier current when the inverter is turned off.On this basis,an active power filter(APF)scheme is proposed to absorb the current.To enhance the dynamic response ability of the APF,model predictive control is adopted.In this paper,the circuit structure of the APF is introduced,the prediction model is deduced,the corresponding control strategy and signal detection method are proposed,and the simulation and experimental results show that APF can track the transient current of the DC bus and reduce the voltage fluctuation significantly. 展开更多
关键词 CFETR NBI accelerator grid power supply power active filter model predictive control
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Fault diagnosis algorithm for 3-phase passive rectifiers based on frequency-domain analysis for acceleration grid power supply in CFETR NBI system
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作者 Bangyou ZHU Shaoxiang MA +3 位作者 Hongqi ZHANG Zhiheng LI Ming ZHANG Yuan PAN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第12期40-54,共15页
The acceleration grid power supply(AGPS) is a crucial part of the Negative-ion Neutral Beam Injection system in the China Fusion Engineering Test Reactor,which includes a 3-phase passive(diode) rectifier.To diagnose a... The acceleration grid power supply(AGPS) is a crucial part of the Negative-ion Neutral Beam Injection system in the China Fusion Engineering Test Reactor,which includes a 3-phase passive(diode) rectifier.To diagnose and localize faults in the rectifier,this paper proposes a frequencydomain analysis-based fault diagnosis algorithm for the rectifier in AGPS.First,time-domain expressions and spectral characteristics of the output voltage of the TPTL-NPC inverter-based power supply are analyzed.Then,frequency-domain analysis-based fault diagnosis and frequency-domain analysis-based sub-fault diagnosis algorithms are proposed to diagnose open circuit(OC) faults of diode(s),which benefit from the analysis of harmonics magnitude and phase-angle of the output voltage.Only a fundamental period is needed to diagnose and localize exact faults,and a strong Variable-duration Fault Detection Method is proposed to identify acceptable ripple from OC faults.Detailed simulations and experimental results demonstrate the effectiveness,quickness,and robustness of the proposed algorithms,and the diagnosis algorithms proposed in this article provide a significant method for the fault diagnosis of other rectifiers and converters. 展开更多
关键词 fault diagnosis 3-phase passive rectifier acceleration grid power supply(AGPS) fault localization
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