Optimum design of dry-type air-core reactor based on design variable reconstruction

被引:0
|
作者
Chen, Feng [1 ]
Zhao, Yan-Zhen [1 ]
Ma, Xi-Kui [1 ]
机构
[1] State Key Lab. of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, Shaanxi Province, China
关键词
Electric power systems;
D O I
暂无
中图分类号
学科分类号
摘要
According to the optimum design model, a new algorithm based on design variable reconstruction is proposed for solving nonlinear constrained optimization, which can be used in the optimum design of dry-type air-core reactor. This algorithm constructs a set of linear equations. As a result, the relation of the reconstructed design variables and the original design variables is derived, the variable number of optimum design is decreased from m + n + 2 to 4, and the equality constraint optimization problem is converted into reduced- dimension no equality constraint optimization problem. In practical design, the proposed algorithm can be implemented by firstly using the traversal algorithm to make an optimization of the reconstructed design variables and then obtaining optimum value of the original design variables based on the relation of the reconstructed design variables and the original design variables. Moreover, on the premise of reconstructed design variables remaining constraint, a method of optimizing the reactor performance is proposed by fine tuning design parameters, and it makes up the defect of primary design results. Finally, a calculation example is carried out and the results show that the algorithm proposed has the advantages of quick calculation, high efficiency and minimal manual intervention. © 2009 Chin. Soc. for Elec. Eng.
引用
收藏
页码:99 / 106
相关论文
共 50 条
  • [21] Research and Application of On-line Monitoring Device for Dry-type Air-core Reactor
    Zhu, Yongcan
    Xue, Zhipeng
    Zhou, Yan
    Hu, Jie
    Liu, Junjun
    Li, Zhiwen
    2019 IEEE INTERNATIONAL CONFERENCE ON ELECTRON DEVICES AND SOLID-STATE CIRCUITS (EDSSC), 2019,
  • [22] High voltage dry-type air-core shunt reactors
    Papp, K.
    Sharp, M. R.
    Peelo, D. F.
    ELEKTROTECHNIK UND INFORMATIONSTECHNIK, 2014, 131 (08): : 349 - 354
  • [23] An embedded FBG strain sensor used in the dry-type air-core reactor health monitoring
    Zhou, Yan-Hui
    Zhao, Zhen-Gang
    Li, Ying-Na
    Zhang, Chang-Sheng
    Xie, Tao
    Cui, Zhi-Gang
    Wang, Ke
    Tan, Xiang-Yu
    Li, Chuan
    Guangdianzi Jiguang/Journal of Optoelectronics Laser, 2015, 26 (03): : 422 - 426
  • [24] Process deviation detection method for dry-type air-core reactor based on power factor frequency characteristics
    Wang, Yonghong
    Ge, Xingyu
    Zhuang, Yu
    Meng, Zihe
    Zhao, Chunming
    IET SCIENCE MEASUREMENT & TECHNOLOGY, 2024, : 564 - 577
  • [25] Common accidents and precautions of Dry-type Air-core reactors
    Xie, Xinnan
    Zhang, Jingyi
    Tao, Shuyi
    Xu, Mei
    Li, Feng
    Hang, Yanhai
    Zhang, Lei
    Tang, Hui
    Miao, Hui
    Li, Ying
    PROCEEDINGS OF THE 2017 5TH INTERNATIONAL CONFERENCE ON MACHINERY, MATERIALS AND COMPUTING TECHNOLOGY (ICMMCT 2017), 2017, 126 : 973 - 977
  • [26] Research of the power frequency magnetic fields distribution around Dry-type Air-core Reactor
    Yan, Zhang
    Quandi, Wang
    Bin, Li
    Yi, Zhao
    Liu Qingsheng
    Refai, Hazem H.
    2008 WORLD AUTOMATION CONGRESS PROCEEDINGS, VOLS 1-3, 2008, : 1303 - 1306
  • [27] Research on turn-to-turn insulation test method of dry-type air-core reactor
    Wei, XL
    Cheng, SK
    Wu, J
    Wang, YH
    PROCEEDINGS OF THE 6TH INTERNATIONAL CONFERENCE ON PROPERTIES AND APPLICATIONS OF DIELECTRIC MATERIALS, VOLS 1 & 2, 2000, : 1058 - 1061
  • [28] Study on Fault Characteristics of Layer Short Circuit of Dry-Type Air-Core Series Reactor
    Guo, Yang
    Xian, Richang
    Leng, Xuebing
    Hao, Yan
    Li, Zhi
    MOBILE INFORMATION SYSTEMS, 2022, 2022
  • [30] Diagnostic Criterion of Turn-to-turn Overvoltage Test in Dry-type Air-core Reactor
    Guo S.
    Niu Z.
    Li H.
    Mao T.
    Ma J.
    Long K.
    Gaodianya Jishu/High Voltage Engineering, 2018, 44 (03): : 804 - 811