Modeling of magnetically saturation controllable reactor based on multi-winding transformer models of MATLAB

被引:0
|
作者
Tian, Mingxing [1 ]
Yang, Xiuchuan [1 ]
Yang, Xuesong [1 ]
机构
[1] Lanzhou Jiaotong University
来源
Dianli Zidonghua Shebei/Electric Power Automation Equipment | 2014年 / 34卷 / 03期
关键词
Computer simulation; Controllable reactor; Magnetic saturation; MATLAB; Model buildings; Multi-winding transformer;
D O I
10.3969/j.issn.1006-6047.2014.03.013
中图分类号
学科分类号
摘要
According to the structural features of MSCR(Magnetically Saturation Controllable Reactor), a method is presented for the MSCR modeling based on the multi-winding transformer models of MATLAB. The basic parameter relationships and the core magnetization saturation characteristics of MSCR are analyzed and the quantitative relationships between the rated capacity, rated voltage, rated frequency, turns ratio and winding resistance of MSCR and the parameters of multi-winding transformer models of MATLAB are obtained, based on which, the method for the parameter setting of the MSCR simulation model based on the multi-winding transformer models of MATLAB is proposed. Simulative results show that, the established MSCR model can be used to simulate the current and voltage of MSCR components, such as winding, thyristor, diode and so on, as well as the commutation process between thyristor and diode. The established model is intuitive, simple, accurate, effective and immune to MSCR structural parameters.
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页码:78 / 81+88
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共 17 条
  • [1] Golovchan V.D., Dorozhko L.L., Serokin V.M., Comparison of controllable reactor and thyristor devices, Elektrotekhanika, 65, 1, pp. 28-36, (1994)
  • [2] Aleksandrov G.N., Kashina V.A., Lisochina T.V., Economic efficiency of AC power transmission with controlled shunt reactors, Elektrotekhanika, 62, 2, pp. 6-11, (1991)
  • [3] Belyaev A.N., Smolovik S.V., Steady-state and transient stability of 500 kV long-distance AC transmission lines with magnetically controlled shunt reactors, Power Tech, 2005 IEEE Russia, pp. 1-6, (2005)
  • [4] Chen X., Chen B., Tian C., Et al., Optimization technique of harmonic suppression for TSMCR, Electric Power Automation Equipment, 31, 5, pp. 71-75, (2011)
  • [5] Ni C., Liu Z., Hybrid reactive power compensation and filtering device based on dual tuning filter and TSC, Electric Power Automation Equipment, 32, 7, pp. 124-128, (2012)
  • [6] Tian M., Li Q., Magnetic saturation type and transformer type controllable shunt reactor, High Voltage Engineering, 29, 7, pp. 26-27, (2003)
  • [7] Zhang L., Xu Y., Application and development of shunt reactors in EHV & UHV transmission lines, Electric Power Automation Equipment, 27, 4, pp. 75-78, (2007)
  • [8] Liu W., Luo L., Dong S., Et al., Overview of power controllable reactor technology, Energy Procedia, 17, PART A, pp. 483-491, (2012)
  • [9] Huang X., Shi H., Tian C., Et al., Reactive power and voltage control based on MCR in substations, Electric Power Automation Equipment, 31, 8, pp. 99-107, (2011)
  • [10] Deng Z., Wang X., Zhou F., Et al., Modeling of extra-high voltage magnetically controlled shunt reactor, Proceedings of the CSEE, 28, 36, pp. 108-113, (2008)