Electronic Science and Technology ›› 2023, Vol. 36 ›› Issue (7): 81-86.doi: 10.16180/j.cnki.issn1007-7820.2023.07.012
REN Yongda,XU Qiang,XIE Hongxing,ZHANG Jiahai,LU Hongmin
Received:
2022-03-17
Online:
2023-07-15
Published:
2023-06-21
Supported by:
CLC Number:
REN Yongda,XU Qiang,XIE Hongxing,ZHANG Jiahai,LU Hongmin. Modeling and Simulation Research of Electromagnetic Interference Source in Vehicle Electric Drive System[J].Electronic Science and Technology, 2023, 36(7): 81-86.
Table 1.
Common mode circuit component parameters"
子电路 单元 | R1/Ω | R2/Ω | L/H | C/F |
---|---|---|---|---|
常数项 与一次 项单元 | -12.223 0 | - | 6.610 0×10-8 | - |
实数极 点单元 | 1.083 9×104 14.215 4 | - - | - - | 4.885 2×10-8 4.957 3×10-10 |
共轭极 点单元 | -9.744 6 4.613 1 -6.028 1 -0.922 6 2.868 2 7.936 8×10-4 -0.021 0 | -259.115 2 -32.119 9 -103.288 8 0.964 1 -3.785 9 0.782 3 1.569 1 | -6.351 9×10-5 3.916 8×10-6 -2.980 1×10-6 -1.909 7×10-8 1.116 0×10-7 7.852 2×10-10 2.202 0×10-9 | -1.937 5×10-8 6.994 7×10-8 -2.204 5×10-8 -2.389 9×10-8 1.251 0×10-8 2.563 3×10-7 4.366 2×10-8 |
Table 2.
Component parameters of differential mode circuit"
子电路 单元 | R1/Ω | R2/Ω | L/H | C/F |
---|---|---|---|---|
常数项 与一次 项单元 | 57.531 1 | - | -5.240 3×10-8 | - |
实数极 点单元 | -24.880 2 -62.481 3 | - - | - - | -1.973 2×10-7 -9.239 7×10-11 |
共轭极 点单元 | 34.8995 4.576 4 19.656 2 -2.089 8 0.058 9 | 1.064 7×103 -70.882 1 428.014 2 26.201 6 -0.073 2 | 1.790 0×10-4 2.272 2×10-6 6.396 1×10-6 -3.768 6×10-7 2.503 2×10-10 | 7.018 6×10-9 2.711 8×10-8 1.444 7×10-9 -1.222 0×10-8 5.992 3×10-8 |
[1] | 范峻, Kim H, 蒲菠. 汽车电磁兼容中的建模挑战[J]. 安全与电磁兼容, 2021(6):9-14. |
Fan Jun, Kim H, Pu Bo. Modeling challenges in automotive EMC[J]. Safety & EMC, 2021(6):9-14. | |
[2] | Shim H, Kim H, Kwack Y, et al. Inverter modeling including non-ideal IGBT characteristics in Hybrid Electric Vehicle for accurate EMI noise prediction[C].Dresden: IEEE International Symposium on Electromagnetic Compatibility, 2015:691-695. |
[3] | Zhao H, Wang S, Min J J, et al. Systematic modeling for a three phase inverter with motor and long cable using optimization method[C].Milwaukee: Proceedings of the IEEE Energy Conversion Congress and Exposition, 2016:1-8. |
[4] | Tan R X, Ye S B, Deng C H, et al. Research on prediction modeling of EMI in multi-in-one electric drive system[C].Chongqing: International Conference on Energy, Electrical and Power Engineering, 2021:621-626. |
[5] |
Chen H L, Ye S Z. Modeling of common-mode impedance of an inverter-fed induction motor from online measurement[J]. IEEE Transactions on Electromagnetic Compatibility, 2018, 60(5):1581-1589.
doi: 10.1109/TEMC.15 |
[6] |
Zhai L, Zhang X Y, Bondarenko N, et al. Mitigation emission strategy based on resonances from a power inverter system in electric vehicles[J]. Energies, 2016, 9(6): 1-17.
doi: 10.3390/en9010001 |
[7] | 谭若兮, 叶尚斌, 邓承浩, 等. 多合一电驱系统电磁干扰预测模型研究[J]. 安全与电磁兼容, 2021(1):74-79. |
Tan Ruoxi, Ye Shangbin, Deng Chenghao, et al. Research on prediction modeling of electromagnetic interference in multi-in-one electric drive system[J]. Safety & EMC, 2021(1):74-79. | |
[8] | Wang K B, Lu H M, Xiong Y. Modeling of system-level conducted EMI of the high-voltage electric drive system in electric vehicles[J]. IEEE Transactions on Electromagnetic Compatibility, 2022(3):99-100. |
[9] |
肖培, 王珏, 凌明祥, 等. 场线路多耦合下电机及其驱动系统辐射电磁干扰预测方法研究[J]. 电子学报, 2017, 45(10):2449-2456.
doi: 10.3969/j.issn.0372-2112.2017.10.020 |
Xiao Pei, Wang Jue, Ling Mingxiang, et al. An efficient approach for predicting electromagnetic interference emission of motor and its driver system under field-circuit and TL coupling[J]. Acta Electronica Sinica, 2017, 45(10):2449-2456.
doi: 10.3969/j.issn.0372-2112.2017.10.020 |
|
[10] | Jeschke S, Loos J, Kleinen M, et al. Impact of highly efficient power electronics on the EMC in electric vehicles with autonomous driving functions[C]. Dortmund: Proceedings of the Automotive Meets Electronics; Eleventh GMM-Symposium, 2020:1-4. |
[11] | 解旭彤, 路宏敏, 胡宽, 等. 新能源充电线缆的高空核电磁脉冲响应[J]. 电子科技, 2020, 33(2):1-5. |
Xie Xutong, Lu Hongmin, Hu Kuan, et al. Response of high-altitude electromagnetic pulse to new energy rechargeable cable[J]. Electronic Science and Technology, 2020, 33(2):1-5. | |
[12] | 宋丙鑫, 路宏敏, 李敏玥, 等. 一种车载通信设备电磁兼容性预测方法[J]. 电子科技, 2021, 34(5):7-12. |
Song Bingxin, Lu Hongmin, Li Minyue, et al. An EMC prediction method of vehicular communication equipment[J]. Electronic Science and Technology, 2021, 34(5):7-12. | |
[13] |
陈鹏荣, 陈为, 李榜. 基于矢量拟合法的永磁同步电机EMI模型[J]. 电源学报, 2021, 19(5):126-133.
doi: 10.13234/j.issn.2095-2805.2021.2.126 |
Chen Pengrong, Chen Wei, Li Bang. EMI model of permanent magnet synchronous motor based on vector-fitting method[J]. Journal of Power Supply, 2021, 19(5):126-133.
doi: 10.13234/j.issn.2095-2805.2021.2.126 |
|
[14] | Xiong Y, Chen X, Zong L Y, et al. An electric drive system modelling method based on module behavior[C].Guangzhou: Proceedings of the International Conference on Microwave and Millimeter Wave Technology, 2019:1-3. |
[15] | Rao H, Zhou B R, Zhang F, et al. Electromagnetic compatibility of power electronic devices in electric vehicle drive system[C].Chengdu: Proceedings of the IEEE Fourth International Conference on Electronics Technology, 2021:509-512. |
[16] |
Bi C, Jia K L, Wu Y Z, et al. High-frequency electric-motor modelling for conducted common-mode current prediction in adjustable speed drive system[J]. IET Power Electronics, 2018, 11(7):1257-1265.
doi: 10.1049/pel2.v11.7 |
[17] |
Antonini G. SPICE equivalent circuits of frequency-domain responses[J]. IEEE Transactions on Electromagnetic Compatibility, 2003, 45(3):502-512.
doi: 10.1109/TEMC.2003.815528 |
[18] | 汪泉弟, 郑亚利. 电动汽车的电磁兼容原理、仿真模型及建模技术[M]. 北京: 科学出版社, 2017:28-46. |
Wang Quandi, Zheng Yali. Electromagnetic compatibility principle, simulation model and modeling technique of electric vehicle[M]. Beijing: Science Press, 2017:28-46. | |
[19] |
Zhai L, Bondarenko N, Xu B J, et al. A measurement-based model of the electromagnetic emissions from a power inverter[J]. IEEE Transactions on Power Electronics, 2015, 30(10):5522-5531.
doi: 10.1109/TPEL.63 |
[1] | REN Zihao, TIAN Engang. Intelligent Equalization Method of Battery Pack Based on Two-Level Equalization Circuit [J]. Electronic Science and Technology, 2024, 37(7): 9-15. |
[2] | LI Tingting, LOU Ke, WANG Yuan, XU Huachao. Research on Optimal Charging Strategy of Electric Vehicle Based on Multi-Objective Particle Swarm Optimization [J]. Electronic Science and Technology, 2024, 37(3): 51-56. |
[3] | SHAO Wenfeng, HE Yu, WEN Yongjun, NIE Xianglun, ZHANG Tangqian, KAN Chao. Bi-Level Optimal Scheduling Strategy of Integrated Energy System Considering EV [J]. Electronic Science and Technology, 2024, 37(11): 85-94. |
[4] | ZHANG Tangqian, HE Yu, JIANG Muning, QIN Tingxiang, ZHU Zhaoqiang, CHEN Zeshuang. Distributionally Robust Low-Carbon Economic Dispatch Considering New Energy Output [J]. Electronic Science and Technology, 2024, 37(10): 40-47. |
[5] | WANG Changsong,CHEN Hui,WANG Licheng,QU Feng. Abnormal Data Detection and SOC Estimation Algorithm for Lithium Battery Considering Measured Outliers [J]. Electronic Science and Technology, 2023, 36(5): 34-40. |
[6] | XU Zhijiang,TAN Kangbo,LI Min,ZHAO Ziwen,CHEN Tongshan. Research on EMI Synergy Analysis of New Energy Vehicle Motor Drive System [J]. Electronic Science and Technology, 2023, 36(10): 24-31. |
[7] | Jianpeng WAN,Hongmin LU,Guohua LIU,Min LI. EMI Margin Assessment of Vehicular Communication System [J]. Electronic Science and Technology, 2022, 35(4): 1-7. |
[8] | JIANG Chengcheng,ZHU Jian'an,ZHU Chengming,WANG Ke,ZHANG Wenjun. Research on EV Modeling in V2G Mode [J]. Electronic Science and Technology, 2022, 35(2): 74-78. |
[9] | WANG Wen,LU Hongmin,ZHANG Guangshuo,CHEN Chongchong,ZHANG Shiwei. Quantitative Analysis and Evaluation of the Disturbance Degree of Vehicle-Mounted VHF Radio [J]. Electronic Science and Technology, 2022, 35(11): 1-6. |
[10] | LU Huan. Research on Improving the Efficiency of Parallel Charger Based on Constraint Optimizations [J]. Electronic Science and Technology, 2020, 33(8): 53-58. |
[11] | XIE Xutong,LU Hongmin,HU Kuan,SONG Bingxin,MENG Xiaojiao. Response of High-Altitude Electromagnetic Pulse to New Energy Rechargeable Cable [J]. Electronic Science and Technology, 2020, 33(2): 1-5. |
[12] | SHI Xun,YI Yingping,WANG Xiaoli. Research on Flux Weakening Control Technology of Interior Permanent Magnet Synchronous Motor [J]. Electronic Science and Technology, 2020, 33(2): 14-19. |
[13] | JIANG Qin,ZHANG Xuanxiong. Parameter Identification and State of Charge Estimation of Lithium Ion Battery Model for Electric Vehicles [J]. Electronic Science and Technology, 2020, 33(2): 32-36. |
[14] | SHAN Zhifei,SUN Yuxuan,ZHANG Xiang,CHEN Qiang,ZHENG Zhiyi. Research on Optimization Management of Electric Vehicle Charging and Discharging [J]. Electronic Science and Technology, 2019, 32(6): 64-69. |
[15] | LI Gang,HU Xu. Dimension Synthesis Method of Suspended Substrate Stripline Filter [J]. Electronic Science and Technology, 2019, 32(4): 20-23. |
|