A new shunt DC active filter of power supply in a steady high magnetic field facility

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2. Li, H., Chen, M., Gao, B. et al. Measurement of water quality in LHAASO-WCDA[J]. Radiation Detection Technology and Methods, 2023, 7(2): 192-199. doi: 10.1007/s41605-022-00362-0
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4. Hu, S., Huang, Y., Gao, C. et al. The Charge Calibration of LHAASO-WCDA[J]. Proceedings of Science, 2022.
5. Ma, X.-H., Bi, Y.-J., Cao, Z. et al. Chapter 1 LHAASO Instruments and Detector technology[J]. Chinese Physics C, 2022, 46(3): 030001. doi: 10.1088/1674-1137/ac3fa6
6. Aharonian, F., An, Q., Axikegu, Zhu, K.J. et al. Performance of LHAASO-WCDA and observation of the Crab Nebula as a standard candle[J]. Chinese Physics C, 2021, 45(8): 085002. doi: 10.1088/1674-1137/ac041b
7. Wang, X.J., Liao, W.Y., Cao, Z. et al. Gamma Hadron separation using single parameter method and multivariate algorithms with LHAASO-WCDA experiment[J]. Proceedings of Science, 2021.
8. Li, X., Liu, C., Zeng, Z. et al. Simulation and real data analysis of the LHAASO-WCDA dynamic range extension system[J]. Proceedings of Science, 2021.
9. Zha, M., Wu, H., Yao, Z. et al. Comparison of measured and simulated data with LHAASO-WCDA run data[J]. Proceedings of Science, 2021.
10. Wang, X.J., Liao, W.Y., Cao, Z. et al. Gamma Hadron separation using single parameter method and multivariate algorithms with LHAASO-WCDA experiment[J]. Proceedings of Science, 2019.
11. Zha, M., Wu, H., Yao, Z. et al. Comparison of measured and simulated data with LHAASO-WCDA run data[J]. Proceedings of Science, 2019.
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14. Li, H.C., Yao, Z.G., Chen, M.J. et al. Study on single-channel signals of water Cherenkov detector array for the LHAASO project[J]. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2017. doi: 10.1016/j.nima.2017.02.055
15. Li, X., Liu, C., Ding, X. et al. Simulation of the dynamic range extension system for the LHAASO-WCDA experiment[J]. Proceedings of Science, 2017. doi: 10.22323/1.301.0381
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WANG Lei, LIU Xiao-Ning and WANG Can. A new shunt DC active filter of power supply in a steady high magnetic field facility[J]. Chinese Physics C, 2011, 35(5): 494-499. doi: 10.1088/1674-1137/35/5/018
WANG Lei, LIU Xiao-Ning and WANG Can. A new shunt DC active filter of power supply in a steady high magnetic field facility[J]. Chinese Physics C, 2011, 35(5): 494-499.  doi: 10.1088/1674-1137/35/5/018 shu
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Received: 2010-07-06
Revised: 2010-09-28
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A new shunt DC active filter of power supply in a steady high magnetic field facility

Abstract: A DC active power filter is an indispensable part in a high power and high stability power supply system, especially in the power supply system of the Steady High Magnetic Field Facility, which requires that the current ripple should be limited to 50 parts per million. In view of the disadvantages of the series DC active power filter and shunt Pulse Width Modulation DC active filter, this paper puts forward a novel DC active filter by combining the advantages of the transistor regulator and the shunt type. The structure and principle of the new shunt linear active filter are introduced. Meanwhile, the design of several key components that construct the new shunt linear active filter is also analyzed. The simulation model and an experimental prototype of the shunt linear active filter are developed, and the results verify that the parameter design is reasonable and the shunt active filter has a good filter effect.

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