High Power Laser and Particle Beams, Volume. 31, Issue 5, 56002(2019)
Application of static var compensation and static var generator in dynamic reactive power compensation system of electric arc furnace
[9] [9] Li W, Zhao J, Chen W, et al. The 3-layer coordinated control of the hybrid operation of SVC and SVG[R]. IET Generation, Transmission & Distribution, 2016.
[12] [12] Pathak A K, Sharma M P, Gupta M. Modeling and simulation of SVC for reactive power control in high penetration wind power system[C]//12th IEEE India International Conference INDICON 2015 Electronics, Energy, Environment, Communications, Computer, Control(E3-C3). 2016.
[13] [13] Hu S G, Gao D Y, Wang S H, et al. Simulation study on three-phase three-wire system low voltage SVG in PSCAD[J]. Advanced Materials Research, 2014,1049/1050:703-707.
[14] [14] Wu Yanan, Xu Liuwei, Fu Peng, et al. Testing of SVC compensation and filtering performance with Tokamak PF converter[J]. Journal of Fusion Energy, 2014, 34(1):84-92.
[15] [15] Luo R, He Y, Liu J. Research on the unbalanced compensation of delta-connected cascaded h-bridge multilevel SVG[J]. IEEE Trans Industrial Electronics, 2018, 65(11): 8667-8676.
Get Citation
Copy Citation Text
Lu Jing, Mao Huafeng, Fu Peng, Li Jun, Shen Xianshun, Wu Ya’nan. Application of static var compensation and static var generator in dynamic reactive power compensation system of electric arc furnace[J]. High Power Laser and Particle Beams, 2019, 31(5): 56002
Category:
Received: Dec. 3, 2018
Accepted: --
Published Online: Jun. 10, 2019
The Author Email: