[1] |
Prajapati B, Chudasama M C. Modeling of grid connected PMSG based WECS [C]//2020 IEEE International Power and Renewable Energy Conference. IEEE, 2020:1-6.
|
[2] |
Mi D, Wang T, Gao M, et al. Small signal stability analysis of PMSG-VSG and optimal design for control parameters [C]//2020 IEEE Power & Energy Society General Meeting (PESGM). IEEE, 2020:1-5.
|
[3] |
Sun B, Chen Z, Gao C, et al. A power decoupling control for wind power converter based on series-connected MMC and open-winding PMSG [J]. IEEE Transactions on Industrial Electronics, 2021,69(8):8091-8101.
|
[4] |
刘巨,姚伟,文劲宇,等. 大规模风电参与系统频率调整的技术展望[J]. 电网技术,2014,38(3):638-646.
|
[5] |
张旭,陈云龙,岳帅,等. 风电参与电力系统调频技术研究的回顾与展望[J]. 电网技术,2018,42(6):1793-1803.
|
[6] |
Zhong Q C,Weiss G. Synchronverters: Inverters that mimic synchronous generators[J].IEEE Transactionson Industrial Electronics,2011,58(4):1259-1267.
|
[7] |
罗兰,王渝红,陈诗昱,等. 基于虚拟同步发电机控制策略的多端柔性直流系统自适应下垂控制[J]. 科学技术与工程,2021,21(17) : 7116-7121.
|
[8] |
宋平岗,杨声弟,钟润金,等. 基于虚拟同步机电力电子变压器直流电压平衡控制策略[J]. 科学技术与工程,2021,21(4):1402-1408.
|
[9] |
Rathore B,Chakrabarti S,Srivastava L. A self-regulated virtual impedance control of VSG in a microgrid [J].Electric Power Systems Research,2021,197:107289.
|
[10] |
杜燕,苏建徽,张榴晨,等.一种模式自适应的微网调频控制方法[J]. 中国电机工程学报,2013,33(19):67-75.
|
[11] |
Feng K, Liu C. Distributed hierarchical control for fast frequency restoration in VSG-Controlled islanded microgrids [J]. IEEE Open Journal of the Industrial Electronics Society, 2022,3:496-506.
|
[12] |
Ma Y,Yang L,Zhou X,et al. Second-order linear active disturbance rejection control and stability analysis of energy storage gridconnected Inverter [J].IEEE Access,2020,8:160738-160748.
|
[13] |
江法洋,郑丽君,宋建成,等. LCL 型并网逆变器重复双闭环控制方法[J].中国电机工程学报,2017,37 (10):2944-2954.
|
[14] |
马成松,赵耀.基于双机并联虚拟同步机系统的自适应控制策略研究[J].电测与仪表,2022,59(4):191-200.
|
[15] |
赵慧敏,帅智康,沈阳,等.基于深度学习的多虚拟同步机微电网在线暂态稳定评估方法[J].电力系统自动化,2022,46(9):109-117.
|
[16] |
水为涟,王成亮,杨庆胜,等.基于动态均衡原理的并联VSG参数匹配方法[J].电力电子技术,2020,54(8):19-21.
|
[17] |
张波,颜湘武,黄毅斌,等.虚拟同步机多机并联稳定控制及其惯量匹配方法[J].电工技术学报,2017,32(10):42-52.
|
[18] |
秦本双,徐永海,贾焦心.多VSG功频环路间交互影响的定量分析[J].电网技术,2022,46(2):757-764.
|
[19] |
Ge S, Zhiyu Z, Jin L. Study on control strategy of circulation suppression in parallel with multiple VSG[C]//2018 13th IEEE Conference on Industrial Electronics and Applications (ICIEA). IEEE, 2018:1326-1331.
|
[20] |
周雪松,尹博文.基于自抗扰控制的并网逆变器环流抑制策略[J/OL].电测与仪表:1-10(2022-05-30)[2023-02-20].http://kns.cnki.net//kcms/detail/23.1202.TH.20220527.1650.002.html.
|
[21] |
万晓凤,詹子录,丁小华,等.基于虚拟同步发电机的多逆变器并联改进控制策略[J].电机与控制学报,2020,24(2):118-127.
|
[22] |
姬秋华,韦徵,茹心芹,等.电压源型虚拟同步机并联系统均流控制方法[J].电力电子技术,2020,54(6):39-41,69.
|
[23] |
曹山秀,文传博.分布式一致性控制的虚拟同步发电机多机并联功率均分策略[J].上海电机学院学报,2021,24(6):311-317,324.
|
[24] |
陈哲,张序轩,刘春强,等.基于比例谐振型自抗扰控制的永磁同步电机电流解耦及谐波抑制策略研究[J].中国电机工程学报,2022,42(24):9062-9072.
|
[25] |
Fang J, Li H, Tang Y. A magnetic integrated LLCL filter for grid-connected voltage-source converters [J]. IEEE Transactions on Power Electronics, 2016, 32(3): 1725-1730.
|
[26] |
陈良亮,胡文斌,严仰光.逆变器并联运行两种环流抑制方法比较[R]. 南京:南京航空航天大学航空电源重点实验室,2002.
|
[27] |
李红萍,杨洪耕,曾巧燕,等.孤岛型微电网中改进下垂控制策略[J].电力系统及其自动化学报,2017,29(4):49-54.
|
[28] |
梁建钢,金新民,吴学智,等.基于下垂控制的微电网变流器并网运行控制方法改进 [J]. 电力系统自动化设备,2014,34(4):59-65.
|
[29] |
Oucheriah S, Guo L. PWM-based adaptive sliding-mode control for boost DC–DC converters [J]. IEEE Transactions on industrial electronics,2013,60(8):3291-3294.
|
[30] |
Zhang Y, Zhang Q, Zhang J, et al. Sliding mode control for fuzzy singular systems with time delay based on vector integral sliding mode surface [J]. IEEE Transactions on Fuzzy Systems,2020,28(4): 768-782.
|