Research on Voltage Balance Control and Simulation of Chain-Type APF in High Magnetic Field

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Abstract:

Steady-state magnetic field superconducting magnet power adopted double-inverse-star thyristor rectifier solutions, it is a typical non-linear load which will bring great reactive power impact and harmonic pollution at runtime. In this paper, according to the scheme of scientific facility chain-type high voltage active power filter (APF), a three-grade voltage balance control of capacitor method was proposed. Considering the non-linear characteristics of APF, we using fractional order PI controller instead of ordinary PI controller. The solution of fractional order calculus is realized based on the improved Oustaloup algorithm. Finally, the working effect of fractional order PI controller and ordinary PI controller are comparative analysis through simulation and experimental results, the results show that the DC voltage balance control strategy used in this paper is correct, and has a certain reference value.

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680-687

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February 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] National Development and Reform Commission approved the high magnetic field experimental facility, project proposals[J]. China Basic Science, 2007, 6(2)42.

Google Scholar

[2] Fu Wei, Liu Xiaoning, Li Jun. Design of 2. 5V/18kA Superconducting Magnet Model Coil Power Supply[J]. Power Electronics, 2012, 46(2): 10-12.

Google Scholar

[3] WANG Lei, LIU Xiaoning. Analysis of DC Active Filter for High Magnetic Field Stable Power Supply[J]. High Voltage Engineering. 2008, 34 (4): 723-727.

Google Scholar

[4] LONG Jiaojiao, WU Jinglin, LIU XiaoNing, CHEN Siming, CHEN Zijian. Simulation and Design of Fast Charging and Discharging of Bi-directional DC-DC Converter for the Active Power Filter [J], High Voltage Engineering. 2013, 39 (7): 1792-1797.

Google Scholar

[5] WANG Cong, ZHANG Guopeng, WANG Jun, CAI Yingying. A Novel Modulation Method for Fast Balancing DC-Link Capacitor Voltages of Cascaded H-Bridge Rectifier[J]. Transactions of China Electrotechnical Society, 2013, 28(8): 120-127.

DOI: 10.1109/iecon.2012.6388822

Google Scholar

[6] Zhang Chong-wei, Zhang Xing. PWM rectifier and its control [M] Beijing: Machinery Industry Press, 2003: 81-83.

Google Scholar

[7] Wang Zhao-an, Yang Jun, Liu-Jinjun, Wang Yue. Harmonic suppression and reactive power compensation [M]. Beijing: Mechanical Industry Press, 2005: 221-225.

Google Scholar

[8] Zhang Chong-wei, Zhang Xing. PWM rectifier and its control [M] Beijing: Machinery Industry Press, 2003: 81-83.

Google Scholar

[9] SUN Yichao, ZHAO Jianfeng, JI Zhendong, YAO Xiaojun. A Balance Control Strategy of DC-Link Voltages for Single Phase Cascaded STATCOM Based on d-q Coordinates [J]. Power System Technology, 2013, 37 (9): 2501-2505.

DOI: 10.1109/peds.2013.6527210

Google Scholar

[10] Yu Fang, Qiu Xun, Xing Yan, Hu Yuwen. Three-phase High Power Factor Voltage Source PWM Rectifier Modeling and Simulation [J]. Electrotechnical Society, 2006, 21 (10): 44-46.

Google Scholar

[11] Miao Tao. Design and Realization of Shunt Active Power FilterBased on Fractional Order PID Control[D] , Nanjing: Nanjing University of Technology, (2011).

Google Scholar

[12] QIN Chang mao, QI Naiming, SONG Zhiguo, Lu Rui, Zhu Kai. Adrc Fractional Order PID controller design of Hypersonic Flight Vehicle[J]. Transactions of Nanjing Univ ersity of Aeronautics & Astro nautics. 2011, 28(3): 240-245.

DOI: 10.1109/cmce.2010.5610285

Google Scholar

[13] QI Naiming, SONG Zhiguo, QIN Changmao. Tuning of Fractional PID Controllers Based on Oustaloup[J]. Control Engineering of China. 2012, 9(2): 283-285.

DOI: 10.1109/cmce.2010.5610285

Google Scholar

[14] WANG Jiesheng, WANG Jincheng, WANG Wei Self-tuning of PID parameters based on particle swarm optimization[J] Control and Decision, 2005. 20(1): 75-77.

Google Scholar