针对实际电网电压中存在实时动态变化的谐波运行环境,提出电压源型并网变流器广义谐波下的滑模变结构直接功率控制(sliding-mode-based direct power control,SMCDPC)策略;其实施是针对所有次数谐波,该控制策略不需实时精确的电网谐波...针对实际电网电压中存在实时动态变化的谐波运行环境,提出电压源型并网变流器广义谐波下的滑模变结构直接功率控制(sliding-mode-based direct power control,SMCDPC)策略;其实施是针对所有次数谐波,该控制策略不需实时精确的电网谐波次数和相位检测,具有实际工程应用价值。在以往研究成果的基础上,建立了广义畸变电网环境中的并网电压源型变流器(grid-connected voltage-sourced converters,VSC)的完整数学模型,提出3种该运行环境下的控制目标:正弦形输出电流,消除有功功率波动和无功功率波动。完成了滑模变结构直接功率控制设计。仿真结果表明,相比传统滑模变结构直接功率控制,改进的滑模变结构直接功率控制增强了电压源型并网变流器在实际电网广义电压谐波下环境中的运行能力。展开更多
This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma ...This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies.展开更多
文摘针对实际电网电压中存在实时动态变化的谐波运行环境,提出电压源型并网变流器广义谐波下的滑模变结构直接功率控制(sliding-mode-based direct power control,SMCDPC)策略;其实施是针对所有次数谐波,该控制策略不需实时精确的电网谐波次数和相位检测,具有实际工程应用价值。在以往研究成果的基础上,建立了广义畸变电网环境中的并网电压源型变流器(grid-connected voltage-sourced converters,VSC)的完整数学模型,提出3种该运行环境下的控制目标:正弦形输出电流,消除有功功率波动和无功功率波动。完成了滑模变结构直接功率控制设计。仿真结果表明,相比传统滑模变结构直接功率控制,改进的滑模变结构直接功率控制增强了电压源型并网变流器在实际电网广义电压谐波下环境中的运行能力。
基金supported within the framework of the "Broader Approach Internationals Agreement"
文摘This paper describes an asymmetric control method for the firing angle and a start/stop timing shift control of four thyristor converters called "Booster PS" to minimize the reactive power fluctuation during plasma initiation in JT-60SA. From the simulation using the "PSCAD/EMTDC" code, it is found that these control methods can drastically reduce the reac- tive power induced by the four units of the "Booster PS". In addition, the voltage fluctuation of the motor-generator connected to the "Booster PS" is expected to be suppressed. This can also contribute to achieve stable control of the JT-60SA magnet power supplies.