
博士后,上海交通大学电气工程系
联系方式
地址:上海市闵行区东川路800号智能电网中心楼206室,200240
邮箱:wuxiqi@sjtu.edu.cn
电化学储能技术,新能源发电功率变换,构网技术,高效率高功率密度电能转换,人工智能在电力电子中应用
2019.09-2024.12 上海交通大学,电气工程,博士
2015.09-2019.06 南京航空航天大学,电气工程,学士
2025.01至今 博士后,上海交通大学,电气工程系
论文:
[1] Xiqi. Wu, R. Li and X. Cai, " Grid-Forming Control and Experimental Validation for High Voltage Transformerless Battery Energy Storage System," in IEEE Transactions on Power Electronics, vol. 40, no. 4, pp. 4889-4901, April 2025.
[2] X. Wu, R. Li, C. Huang, H. Li and X. Cai, "Self-Adaptive and Optimal SOC Balancing Control for High Voltage Transformerless Battery Energy Storage System," in IEEE Transactions on Industrial Electronics Letter, early access,April 2025.
[3] Xiqi. Wu, R. Li and X. Cai," Nearest Level modulation for Battery Energy Storage System Based on Cascade H-bridge Converter," in CSEE Journal of Power and Energy Systems, early access, February 2025.
[4] Xiqi. Wu, R. Li and X. Cai, "A Novel Current Self-Balancing Method for High-Gain and High-Frequency Converter," in IEEE Transactions on Industrial Electronics, vol. 70, no. 5, pp. 4922-4930, May 2023, doi: 10.1109/TIE.2022.3183360.
[5] Xiqi. Wu, R. Li and X. Cai," Modified LLC Converter with LC Antiresonant Circuit in Parallel Branch for Wide Voltage Range Application," in IEEE Transactions on Power Electronics, vol. 37, no. 6, pp. 7387-7399, June 2022, doi: 10.1109/TPEL.2021.3138860.
[6] Xiqi. Wu, R. Li and X. Cai, "A Wide Output Voltage Range LLC Resonant Converter Based on Topology Reconfiguration Method," in IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 10, no. 1, pp. 969-983, Feb. 2022, doi: 10.1109/JESTPE.2021.3097738.
[7] Xiqi. Wu, C. Liu, R. Li, F. Wu and X. Cai, "Four Quadrant Operation Control for Cascade H-Bridge Converter-Based Battery Energy Storage System," in IEEE Journal of Emerging and Selected Topics in Industrial Electronics, vol. 5, no. 3, pp. 1181-1191, July 2024.
[8] X. Wu, S. Gao, Y. Liu, R. Li, X. Jiang and X. Cai, "Battery cluster fault-tolerant control for high voltage transformerless grid-tied battery energy storage system," in CPSS Transactions on Power Electronics and Applications, doi: 10.24295/CPSSTPEA.2025.00011.
[9] Xiqi. Wu, R. Li and X. Cai, "Four Quadrants Operation Control of High-voltage Transformerless BESS System," 2023 IEEE Energy Conversion Congress and Exposition (ECCE), Nashville, TN, USA, 2023, pp. 448-453, doi: 10.1109/ECCE53617.2023.10362821.
[10] 吴西奇,李睿等.兼具电池储能与无功补偿的高压直挂大容量系统四象限运行控制技术[J].中国电机工程学报,2024,44(04):1406-1419.DOI:10.13334/j.0258-8013.pcsee.221988.
[11] 吴西奇,黄超,刘畅等.高压直挂大容量电池储能系统电池簇故障容错运行控制策略[J].中国电机工程学报,2024,44(16):6470-6482.DOI:10.13334/j.0258-8013.pcsee.230500.
[12] 吴西奇,黄超,李睿,蔡旭等. 高压直挂电池储能系统自适应快速SOC均衡控制[J].高电压技术, 在线发表.
[13] 吴西奇,李睿,蔡旭等.一种新型宽电压增益直流充电模块拓扑及调制技术[J].中国电机工程学报,2021,41(23):8129-8139.DOI:10.13334/j.0258-8013.pcsee.201568.
[14] J. Yang, Xiqi. Wu, K. Ma, R. Li et al., "Extension of Zero-Voltage Switching Region of Wide Volage Ratio Range Dual-Active-Bridge Converter by LC Antiresonant Network," in IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 12, no. 1, pp. 172-185, Feb. 2024, doi: 10.1109/JESTPE.2023.3272616.
[15] K. Bian, Xiqi. Wu, H. Li, C. Huang and X. Cai, "A Power Decoupling Control Stragegy for CHB-BESS Based on NLM," 2024 9th Asia Conference on Power and Electrical Engineering (ACPEE), Shanghai, China, 2024, pp. 2664-2668.
[16] Y. Ma, X. Wu and R. Li, "Hybrid Modulation Strategy for Dual Active Bridge LLC Resonant Converter," 2024 CPSS & IEEE International Symposium on Energy Storage and Conversion (ISESC), Xi'an, China, 2024, pp. 798-801, doi: 10.1109/ISESC63657.2024.10785344.
[17] 刘畅,吴西奇,姜新宇等.高压直挂大容量储能系统的电池堆分割方法[J].中国电机工程学报,2023,43(19):7483-7497.DOI:10.13334/j.0258-8013.pcsee.220429.
[18] 卞凯,吴西奇,刘畅,等.模块化多电平高压直挂电池储能系统[J/OL].电力自动化设备:1-17[2024-05-10].https://doi.org/10.16081/j.epae.202403008. 1
[19] 杨佳涛,吴西奇,李睿等.中压直挂光伏发电系统模块间电压–功率自主跟踪控制方法研究[J].中国电机工程学报,2021,41(08):2815-2825.DOI:10.13334/j.0258-8013.pcsee.200982.
[20] 刘畅,吴胜兵,吴西奇等.35 kV高压直挂大容量电池储能系统[J/OL].高电压技术:1-15[2024-02-15].https://doi.org/10.13336/j.1003-6520.hve.20221577.
专利:
[1] 吴西奇,李睿. 一种基于级联全桥的均流电路及其控制方法[P]. 上海市:CN113965091B,2023-10-27. (专利状态:授权)
[2] 吴西奇,李睿. 一种宽电压增益电池储能型双向直流变换电路及方法[P]. 上海市:CN113708636B,2023-07-21. (专利状态:授权)
[3] 吴西奇,李睿. 谐振网络、变压器及隔离型直流变换器及其参数设计方法[P]. 上海市:CN112600414B,2022-10-25. (专利状态:授权)
[4] 吴西奇,李睿. 一种直流变换电路及其宽电压范围下的模式切换控制方法[P]. 上海市:CN112636605B,2022-04-26. (专利状态:授权)
[5] 蔡旭,吴西奇,周党生等. 高压直挂电池储能系统及其控制方法[P]. 上海市:CN114447970B,2022-10-25. (专利状态:授权)
[6] 蔡旭,吴西奇,李睿等. 高压直挂电池储能系统容量利用率提升方法[P]. 上海市:CN115395605B,2023-07-07. (专利状态:授权)
[7] 蔡旭,吴西奇,李睿等..构网型高压直挂储能系统暂态过电流能力提升方法及系统[P]. 上海市:CN119051139B.2024-11-29.(专利状态:授权)
[8] 蔡旭,吴西奇,王富文,李睿等.构网型高压直挂电池储能系统及方法[P]. 上海市:CN119070363A.2024-12-03.(专利状态:公开)
[9] 李睿,谢弘洋,吴西奇,蔡旭.电力电子化智能电池单元[P]. 上海市:CN112366795B.2022-12-09.(专利状态:授权)
[10] 李睿,吴西奇,蔡旭. 双向谐振网络、双向直流变换器及其参数设计方法[P]. 上海市:CN112600415B,2022-10-21. (专利状态:授权)
[11] 李睿,杨佳涛,吴西奇.并联电池簇状态管理方法及系统[P]. 上海市:CN114204648B.2024-11-29.(专利状态:授权)
[12] 蔡旭,吴西奇. 支撑风电场电压源运行的高压直挂电池储能系统控制方法及系统[P]. 上海市:CN116961055A,2023-10-27. (专利状态:公开)
[13] 蔡旭,吴西奇,李睿等. 无功补偿与储能一体化的高压直挂系统[P]. 上海市:CN114884078A,2022-08-09. (专利状态:授权)
[14] 蔡旭,吴西奇, 李睿等.高压直挂电池储能系统电池故障容错控制方法、系统[P].上海市:CN202310411499.4,2024-10-22. (专利状态:公开)
[15] 蔡旭,刘畅,李睿,吴西奇等.高压直挂电池储能系统设计方法[P].上海市:CN114884312B.2024-11-15.(专利状态:授权)
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