The ITER pulsed power supply system will be operated in non-ideal conditions including an asymmetric firing angle, an unbalanced AC supply and an unbalanced AC side impedance of the transformer. In this study the swit...The ITER pulsed power supply system will be operated in non-ideal conditions including an asymmetric firing angle, an unbalanced AC supply and an unbalanced AC side impedance of the transformer. In this study the switching functions approach is used to calcu- late non-characteristic harmonics in ITER, possibly caused by an AC-DC convertor in non-ideal conditions. A PSCAD simulation model is set up to study the non-characteristic harmonics in those non-ideal conditions. It is found that the non-characteristic harmonic does appear and the simulation result is in accordance with the calculating strategy.展开更多
基金supported by ITER power supply CN-PT of China,(075ETY2301)
文摘The ITER pulsed power supply system will be operated in non-ideal conditions including an asymmetric firing angle, an unbalanced AC supply and an unbalanced AC side impedance of the transformer. In this study the switching functions approach is used to calcu- late non-characteristic harmonics in ITER, possibly caused by an AC-DC convertor in non-ideal conditions. A PSCAD simulation model is set up to study the non-characteristic harmonics in those non-ideal conditions. It is found that the non-characteristic harmonic does appear and the simulation result is in accordance with the calculating strategy.
文摘±800 kV特高压直流输电换流站通常采用双12脉动换流的方式,理想运行工况下交流侧只含有12k±1次特征次谐波,但是近年来通过对特高压换流站的电能质量测试发现实际运行中交流侧非特征次谐波含量也较为明显。文章以宜宾—金华特高压直流输电金华换流站为例,采用分段时域法分析了换流变阻抗不平衡、晶闸管触发角偏差等因素对非特征次谐波的影响,并提出了一种级联H桥拓扑结构的有源滤波器(active power filter,APF)用于非特征次谐波的抑制,最后在PSCAD/EMTDC中搭建了±800 kV特高压直流输电和级联H桥APF的仿真模型,通过与传统无源滤波器滤波效果的对比,验证了级联H桥APF在抑制非特征次谐波上的有效性。