Field-Circuit Cosimulation of 500-kV Transformers in AC/DC Hybrid Power Grid

被引:6
|
作者
Zhang, Bo [1 ]
Deng, Wanting [1 ]
Ruan, Ling [1 ]
Wang, Tao [1 ]
Quan, Jiangtao [1 ]
Cao, Quanliang [2 ]
Teng, Yaqing [3 ]
Wang, Weihua [4 ]
Yuan, Yang [5 ]
Li, Liang [2 ]
机构
[1] State Grid Corp China, State Grid Hubei Elect Power Co, Key Lab High Voltage Field Test Tech, Hubei Elect Power Res Inst, Wuhan 430077, Peoples R China
[2] Huazhong Univ Sci & Technol, Wuhan Natl High Magnet Field Ctr, Wuhan 430074, Peoples R China
[3] Shanghai Ke Liang Informat Technol & Engn Co Ltd, Shanghai 200233, Peoples R China
[4] OPAL RT Technol Inc, Montreal, PQ H3K 1G6, Canada
[5] China Shipbuilding Ind Corp, Wuhan Inst Marine Elect Prop, Wuhan 430064, Peoples R China
关键词
DC bias; electromagnetic transient; field-circuit cosimulation; finite-element method; MAGNETIC-FIELD; CO-SIMULATION; INTEGRATION; 3-PHASE;
D O I
10.1109/TASC.2016.2529298
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
To achieve the communication between field and circuit network solvers in an actual large-scale ac/dc hybrid power grid, a cosimulation system of electromagnetic transient calculation, on-sitemeasured data, and finite-element simulation has been developed. A platform based on MATLAB is adopted for linking measured data, electromagnetic transient simulation in real-time I/O, and combining finite-element software offline. A dc bias on 500-kV transformer is analyzed with the cosimulation approach. Hypersim and Flux are used as electromagnetic transient and finite-element simulation software, respectively. A specific on-site measuring system is developed to obtain the dc bias current. With the platform, dc bias of 500-kV transformers is finally solved. The validity of the model is verified by no-load field testing in 100% and 110% rated voltage.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] A State-of-the-Art 500-kV Hybrid Circuit Breaker for a dc Grid: The World's Largest Capacity High-Voltage dc Circuit Breaker
    Zhang, Xiangyu
    Yu, Zhanqing
    Zeng, Rong
    Huang, Yulong
    Zhao, Biao
    Chen, Zhengyu
    Yang, Yuemin
    IEEE INDUSTRIAL ELECTRONICS MAGAZINE, 2020, 14 (02) : 15 - 27
  • [2] FIRST 500-KV AC TRANSMISSION-LINE DESIGNS FOR BONNEVILLE POWER ADMINISTEATIONS GRID
    OSIPOVICH, AA
    POLAND, MG
    IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1965, PA84 (01): : 28 - +
  • [3] Study of DC-bias Current Distribution in AC Power System Based on Direct Field-circuit Coupled Model
    Ruan J.
    Xu W.
    Ding Z.
    Wu Y.
    Sun X.
    Zou G.
    Xu, Wenjie (1789965541@qq.com), 1600, Science Press (43): : 1333 - 1340
  • [4] Study of DC-Bias Current Distribution in AC Power System Based on Direct Field-Circuit Coupled Model
    Xu, Wenjie
    Ruan, Jiangjun
    Wu, Yongcong
    Sun, Xiang
    Zou, Guoping
    2016 IEEE INTERNATIONAL CONFERENCE ON HIGH VOLTAGE ENGINEERING AND APPLICATION (ICHVE), 2016,
  • [5] Finite Element Analysis of Magnetic Field Distribution for 500-kV Power Transmission Systems
    Pao-la-or, P.
    Isaramongkolrak, A.
    Kulworawanichpong, T.
    ENGINEERING LETTERS, 2010, 18 (01)
  • [6] A transient cosimulation approach to performance analysis of hybrid excited doubly salient machine considering indirect field-circuit coupling
    Zhu, Xiaoyong
    Cheng, Ming
    Zhao, Wenxiang
    Liu, Chunhua
    Chau, K. T.
    IEEE TRANSACTIONS ON MAGNETICS, 2007, 43 (06) : 2558 - 2560
  • [7] Fault Sets Collection in AC/DC Hybrid Power Grid
    Chen, Shuyong
    Gao, Hongfei
    Qi, Yang
    Song, Yunting
    Ma, Shiying
    Zeng, Lingquan
    Wei, Tang
    Wang, Jingjing
    2016 INTERNATIONAL CONFERENCE ON POWER ENGINEERING & ENERGY, ENVIRONMENT (PEEE 2016), 2016, : 29 - 36
  • [8] Analysis of influence of a novel inductive fault current limiter on the circuit breaker in 500-kV power system
    Tang, Qiang
    Jia, Shenli
    Zhang, Yanzhe
    Xiu, Shixin
    Mo, Wenxiong
    Wang, Yong
    Su, Haibo
    HIGH VOLTAGE, 2021, 6 (06): : 997 - 1008
  • [9] Study of Switching Overvoltage of DC Circuit Breaker in 500 kV VSC-based DC Grid
    Han X.
    Yang M.
    Sima W.
    Yuan T.
    Fu Z.
    Gaodianya Jishu/High Voltage Engineering, 2019, 45 (01): : 72 - 81
  • [10] Coupled Magnetic Field-Circuit Analysis of Inductive Power Transfer in High-Potential Transformers
    Pokryvailo, Alex
    Dave, Wren
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2020, 48 (10) : 3279 - 3288