Analysis and Suppression of Voltage Oscillation for DC Bus in Static Adjustment Test of EMU
Zhou Xuesong1, Hu Yifan1, Ma Youjie1, Qu Shijian2, Song Guanyu3
1. Tianjin Key Laboratory for Control Theory and Application in Complicated Systems Tianjin University of Technology Tianjin 300384 China; 2. CRRC DALIAN R&D Co. Ltd Dalian 116052 China; 3. Key Laboratory of Smart Grid of Ministry of Education Tianjin University Tianjin 300072 China
Abstract:In the static adjustment test in the factory, the traction converter of the high-speed EMU has a large voltage oscillation in the intermediate DC link under the simulated traction condition. Therefore, a virtual resistance control method with compensation link was proposed for the single-phase rectifier at the source side. Based on the dq coordinate mathematical model of the single-phase PWM rectifier, this paper built the equivalent output impedance model of the source-side rectifier in parallel with the secondary resonant circuit and the equivalent input impedance model of the traction inverter unit and the auxiliary converter. Then, the reason for voltage oscillations in the DC link was revealed by combining Bode diagram and Nyquist curve, that is, the interaction between the secondary resonant circuit and the constant power load will lead to the voltage oscillation in the intermediate DC link. The proposed oscillation suppression method uses virtual resistance to increase the load-side input impedance, so that the system gain can meet the exclusion zone stability criterion, and the stability margin of the system can be improved. Finally, simulation and experimental results verify the effectiveness of the analysis and the proposed control method.
周雪松, 胡一凡, 马幼捷, 曲诗健, 宋关羽. 动车组静调试验中直流母线电压振荡分析与抑制[J]. 电工技术学报, 2022, 37(14): 3701-3712.
Zhou Xuesong, Hu Yifan, Ma Youjie, Qu Shijian, Song Guanyu. Analysis and Suppression of Voltage Oscillation for DC Bus in Static Adjustment Test of EMU. Transactions of China Electrotechnical Society, 2022, 37(14): 3701-3712.
[1] 牟岩. 城轨车辆牵引系统耦合振荡研究[J]. 机车电传动, 2019(3): 111-116, 135. Mu Yan.Study on coupling oscillation of urban rail vehicle traction system[J]. Electric Drive for Locomo-tives, 2019(3): 111-116, 135. [2] Francés A, Asensi R, García Ó, et al.Modeling electronic power converters in smart DC microgrids-an overview[J]. IEEE Transactions on Smart Grid, 2018, 9(6): 6274-6287. [3] Song Wensheng, Jiao Shilei, Li Yunwei, et al.High-frequency harmonic resonance suppression in high-speed railway through single-phase traction converter with LCL filter[J]. IEEE Transactions on Trans-portation Electrification, 2016, 2(3): 347-356. [4] Dragičević T, Lu Xiaonan, Vasquez J C, et al.DC microgrids-part I: a review of control strategies and stabilization techniques[J]. IEEE Transactions on Power Electronics, 2016, 31(7): 4876-4891. [5] Wu Mingfei, Lu D D C. A novel stabilization method of LC input filter with constant power loads without load performance compromise in DC microgrids[J]. IEEE Transactions on Industrial Electronics, 2015, 62(7): 4552-4562. [6] Wu Wenhua, Chen Yandong, Zhou Leming, et al.A virtual phase-lead impedance stability control strategy for the maritime VSC-HVDC system[J]. IEEE Transa-ctions on Industrial Informatics, 2018, 14(12): 5475-5486. [7] 庄绪州, 张勤进, 刘彦呈, 等. 船舶全电力推进系统恒功率负载有源阻尼控制策略[J]. 电工技术学报, 2020, 35(增刊1): 101-109. Zhuang Xuzhou, Zhang Qinjin, Liu Yancheng, et al.An active damping control of constant power load for all-electric ships[J]. Transactions of China Electro-technical Society, 2020, 35(S1): 101-109. [8] Prabhakaran P, Goyal Y, Agarwal V.Novel nonlinear droop control techniques to overcome the load sharing and voltage regulation issues in DC microgrid[J]. IEEE Transactions on Power Electronics, 2018, 33(5): 4477-4487. [9] 许加柱, 郝铭轩, 王涛, 等. 直交型电力机车直流侧电压稳定控制及改善方法[J]. 电力自动化设备, 2019, 39(7): 64-69, 106. Xu Jiazhu, Hao Mingxuan, Wang Tao, et al.Stability control and improvement strategy for DC side voltage of DC-AC electric locomotives[J]. Electric Power Automation Equipment, 2019, 39(7): 64-69, 106. [10] 张颖, 王惠民, 葛兴来. 基于前馈电压补偿的地铁牵引变流器直流侧振荡抑制方法[J]. 中国电机工程学报, 2018, 38(9): 2728-2735, 2842. Zhang Ying, Wang Huimin, Ge Xinglai.DC-link stabilization method for metro traction converter-motor system based on feedforward voltage com-pensation[J]. Proceedings of the CSEE, 2018, 38(9): 2728-2735, 2842. [11] 陈杰, 李军, 邱瑞昌, 等. 轨道交通牵引系统空间矢量脉宽调制同步过调制策略研究[J]. 电工技术学报, 2020, 35(增刊1): 91-100. Chen Jie, Li Jun, Qiu Ruichang, et al.Research on space vector PWM synchronous overmodulation in rail transit traction system[J]. Transactions of China Electrotechnical Society, 2020, 35(S1): 91-100. [12] Zhang Guinan, Liu Zhigang, Yao Shulong, et al.Suppression of low-frequency oscillation in traction network of high-speed railway based on auto-disturbance rejection control[J]. IEEE Transactions on Transportation Electrification, 2016, 2(2): 244-255. [13] 朱进权, 葛琼璇, 王晓新, 等. 基于自抗扰和负载功率前馈的高速磁悬浮系统PWM整流器控制策略[J]. 电工技术学报, 2021, 36(2): 320-329. Zhu Jinquan, Ge Qiongxuan, Wang Xiaoxin, et al.Control strategy for PWM rectifier of high-speed maglev based on active disturbance rejection control and load power feed-forward[J]. Transactions of China Electrotechnical Society, 2021, 36(2): 320-329. [14] 韩京清. 从PID技术到“自抗扰控制”技术[J]. 控制工程, 2002, 9(3): 13-18. Han Jingqing.From PID technique to active dis-turbances rejection control technique[J]. Control Engineering of China, 2002, 9(3): 13-18. [15] Ang K H, Chong G, Li Yun.PID control system analysis, design, and technology[J]. IEEE Transa-ctions on Control Systems Technology, 2005, 13(4): 559-576. [16] Tian Hao, Li Yunwei.Virtual resistor based second-order ripple sharing control for distributed bidirectional DC-DC converters in hybrid AC-DC microgrid[J]. IEEE Transactions on Power Electronics, 2021, 36(2): 2258-2269. [17] Rodríguez-Cabero A, Roldán-Pérez, Prodanovic M, et al.Coupling of AC grids via VSC-HVDC intercon-nections for oscillation damping based on differential and common power control[J]. IEEE Transactions on Power Electronics, 2020, 35(6): 6548-6558. [18] Wang Yizhen, Wen Weijie, Wang Chengshan, et al.Adaptive voltage droop method of multiterminal VSC-HVDC systems for DC voltage deviation and power sharing[J]. IEEE Transactions on Power Delivery, 2019, 34(1): 169-176. [19] 钟志宏, 方晓春, 林飞, 等. MTPA控制下逆变器-IPMSM系统直流侧电压稳定性研究[J]. 电工技术学报, 2017, 32(21): 34-43. Zhong Zhihong, Fang Xiaochun, Lin Fei, et al.DC voltage stability studies with IPMSM system under the control of MTPA[J]. Transactions of China Elec-trotechnical Society, 2017, 32(21): 34-43. [20] 王迎晨, 杨少兵, 宋可荐, 等. 基于滑模结构无源控制的车网耦合系统低频振荡抑制方法[J] 电工技术学报, 2020, 35(3): 553-563. Wang Yingchen, Yang Shaobing, Song Kejian, et al.An approach based on SMS to suppress low-frequency oscillation in the EMUs and traction network coupling system using PBC[J]. Transactions of China Elec-trotechnical Society, 2020, 35(3): 553-563. [21] 刘龙. 机车单相PWM整流器的研究与实现[D]. 武汉: 华中科技大学, 2016. [22] Liu Jinjun, Feng Xiaogang, Lee F C, et al.Stability margin monitoring for DC distributed power systems via perturbation approaches[J]. IEEE Transactions on Power Electronics, 2003, 18(6): 1254-1261. [23] 许加柱, 夏静, 杨雅倩, 等. 抑制直流电压振荡的虚拟阻感超前控制策略[J]. 电力电子技术, 2019, 53(12): 43-47. Xu Jiazhu, Xia Jing, Yang Yaqian, et al.The virtual inductive-resistive leading control strategy for suppressing DC voltage oscillation[J]. Power Electronics, 2019, 53(12): 43-47. [24] 汪春江, 孙建军, 宫金武, 等. 并网逆变器与电网阻抗交互失稳机理及阻尼策略[J]. 电工技术学报, 2020, 35(增刊2): 503-511. Wang Chunjiang, Sun Jianjun, Gong Jinwu, et al.Mechanism and damping strategy of interactive instability between grid-connected inverter and grid impedance[J]. Transactions of China Electrotechnical Society, 2020, 35(S2): 503-511. [25] 陈燕平, 忻力, 李中浩. 单相电压型脉冲整流器中二次谐振电路的研究[J]. 机车电传动, 2010(2): 28-32. Chen Yanping, Xin Li, Li Zhonghao.Research on the secondary resonant circuit of single-phase voltage-pulse rectifier[J]. Electric Drive for Locomotives, 2010(2): 28-32. [26] 唐欣, 张凯峰, 许强, 等. 提高VSC-HVDC系统供电无源网络的传输容量的控制方法[J]. 电工技术学报, 2016, 31(5): 44-51. Tang Xin, Zhang Kaifeng, Xu Qiang, et al.Control strategy for enlarging the transmission capacity of VSC-HVDC systems supplying passive networks[J]. Transactions of China Electrotechnical Society, 2016, 31(5): 44-51. [27] 陈杰, 章新颖, 闫震宇, 等. 基于虚拟阻抗的逆变器死区补偿及谐波电流抑制分析[J]. 电工技术学报, 2021, 36(8): 1671-1680. Chen Jie, Zhang Xinying, Yan Zhenyu, et al.Dead-time effect and background grid-voltage harmonic suppression methods for inverters with virtual impedance control[J]. Transactions of China Electro-technical Society, 2021, 36(8): 1671-1680. [28] 黄远胜, 刘和平, 苗轶如, 等. 基于并联虚拟电阻的级联DC-DC变换器稳定控制方法[J]. 电工技术学报, 2020, 35(18): 3927-3937. Huang Yuansheng, Liu Heping, Miao Yiru, et al.Cascaded DC-DC converter stability control method based on paralleling virtual resistor[J]. Transactions of China Electrotechnical Society, 2020, 35(18): 3927-3937.