A new active power filter topology based on a chopper circuit
Active power filters (APFs) are widely used for their outstanding performance in current and voltage rip- ple compensation. As modern high-energy accelerators are demanding much more stringent current ripple guidelines, APFs are used in the magnet power supply (MPS) in accelerator systems. However,...
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Published in | Chinese physics C Vol. 40; no. 1; pp. 129 - 133 |
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Format | Journal Article |
Language | English |
Published |
IOP Publishing
2016
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Abstract | Active power filters (APFs) are widely used for their outstanding performance in current and voltage rip- ple compensation. As modern high-energy accelerators are demanding much more stringent current ripple guidelines, APFs are used in the magnet power supply (MPS) in accelerator systems. However, conventional APFs have many drawbacks due to the traditional topology, such as complex structure, nonadjustable working voltage, requirement of power supply, and so on. This paper proposes a new APF topology, which works as two types of chopper circuits. This APF does not need extra electricity, but uses the power of the MPS current ripple to realize ripple depression. Experimental results prove its feasibility and effectiveness. |
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AbstractList | Active power filters (APFs) are widely used for their outstanding performance in current and voltage rip- ple compensation. As modern high-energy accelerators are demanding much more stringent current ripple guidelines, APFs are used in the magnet power supply (MPS) in accelerator systems. However, conventional APFs have many drawbacks due to the traditional topology, such as complex structure, nonadjustable working voltage, requirement of power supply, and so on. This paper proposes a new APF topology, which works as two types of chopper circuits. This APF does not need extra electricity, but uses the power of the MPS current ripple to realize ripple depression. Experimental results prove its feasibility and effectiveness. Active power filters (APFs) are widely used for their outstanding performance in current and voltage ripple compensation. As modern high-energy accelerators are demanding much more stringent current ripple guidelines, APFs are used in the magnet power supply (MPS) in accelerator systems. However, conventional APFs have many drawbacks due to the traditional topology, such as complex structure, nonadjustable working voltage, requirement of power supply, and so on. This paper proposes a new APF topology, which works as two types of chopper circuits. This APF does not need extra electricity, but uses the power of the MPS current ripple to realize ripple depression. Experimental results prove its feasibility and effectiveness. |
Author | 郭晓玲 程健 张波 张旌 黄远 |
AuthorAffiliation | Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China Dongguan Neutron Science Center, Dongguan 523803, China BoXingKeYuan Electronic Technology Co., Ltd., Beijing 101300, China |
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Copyright | 2016 Chinese Physical Society and the Institute of High Energy Physics of the Chinese Academy of Sciences and the Institute of Modern Physics of the Chinese Academy of Sciences and IOP Publishing Ltd |
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Notes | active power filter, magnet power supply, current ripple compensation Xiao-Ling Guo Jian Cheng Bo Zhang Jing Zhang Yuan Huang (1 Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China 2 Dongguan Neutron Science Center, Dongguan 523803, China 3 BoXingKeYuan Electronic Technology Co., Ltd., Beijing 101300, China) 11-5641/O4 Active power filters (APFs) are widely used for their outstanding performance in current and voltage rip- ple compensation. As modern high-energy accelerators are demanding much more stringent current ripple guidelines, APFs are used in the magnet power supply (MPS) in accelerator systems. However, conventional APFs have many drawbacks due to the traditional topology, such as complex structure, nonadjustable working voltage, requirement of power supply, and so on. This paper proposes a new APF topology, which works as two types of chopper circuits. This APF does not need extra electricity, but uses the power of the MPS current ripple to realize ripple depression. Experimental results prove its feasibility and effectiveness. ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
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References | Tanner L. (4) Sasaki H. (2) 1971; 90 Bird B. M. (3) 1969; 116 Guo X. L. (1) 2014; 38 |
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Snippet | Active power filters (APFs) are widely used for their outstanding performance in current and voltage rip- ple compensation. As modern high-energy accelerators... Active power filters (APFs) are widely used for their outstanding performance in current and voltage ripple compensation. As modern high-energy accelerators... |
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SubjectTerms | Accelerators active power filter Circuits current ripple compensation Electric potential Electric power generation magnet power supply Power supplies Ripples Topology Voltage 工作电压 拓扑结构 斩波电路 有源滤波器 有源电力滤波器 电流纹波 磁铁电源 高能加速器 |
Title | A new active power filter topology based on a chopper circuit |
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