基于多目标递阶模型预测理论的MMC能量协同控制研究

夏向阳, 徐雷, 易海淦, 陈凯平, 敬华兵, 刘放平

太阳能学报 ›› 2022, Vol. 43 ›› Issue (10) : 472-481.

PDF(3520 KB)
欢迎访问《太阳能学报》官方网站,今天是
PDF(3520 KB)
太阳能学报 ›› 2022, Vol. 43 ›› Issue (10) : 472-481. DOI: 10.19912/j.0254-0096.tynxb.2021-0498

基于多目标递阶模型预测理论的MMC能量协同控制研究

  • 夏向阳1, 徐雷1, 易海淦1, 陈凯平1, 敬华兵2, 刘放平2
作者信息 +

RESEARCH ON ENERGY COOPERATIVE CONTROL OF MMC BASED ON MULTI-OBJECTIVE RECURSIVE MODEL PREDICTION THEORY

  • Xia Xiangyang1, Xu Lei1, Yi Haigan1, Chen Kaiping1, Jing Huabing2, Liu Fangping2
Author information +
文章历史 +

摘要

基于模块化多电平换流器的高压直流输电系统(MMC-HVDC)具有广阔的发展前景,针对常规控制方法在不平衡网压下存在控制复杂且换流器内部能量难以控制等缺陷,提出基于多目标递阶模型预测理论的模块化多电平换流器(MMC)能量协同控制策略。该方法通过优化控制各桥臂的各电流分量来调节MMC功率分布,实现交流侧三相电流与换流器内部能量平衡的协同控制;为简化控制复杂度、降低控制计算量,对传统模型预测控制进行优化,建立相应的预测模型和目标函数,并将控制目标划分为内部和外部特性的分层控制,利用外部特性控制的最优解及内部特性分析结果,优化内部特性控制的寻优范围。最后,通过仿真和实验的结果验证所提出的控制策略能更快实现正常及交流侧不平衡工况下的换流器安全稳定运行。

Abstract

The high-voltage direct current transmission system based on modular multilevel converters has a broad development prospect. In view of the defects of conventional control methods such as complex control and difficult control of converter internal energy under unbalanced network voltage, a cooperative control strategy of modular multilevel converter energy based on multi-objective recursive model prediction theory is proposed. By optimizing the control of arm current, the coordinated control on the AC side and the internal energy balance of the converter are realized. In order to simplify the control complexity, this paper optimizes the predictive control in traditional model, establishs the corresponding predictive model and objective function, and divides the control objectives into hierarchical control of internal and external characteristics. Basically, the optimal solution of external characteristics control and the results of internal characteristics analysis are introduced to optimize the range of internal characteristics control. Finally, the results of simulation and experiment verify that the proposed control strategy is able to quickly realize the safe and stable operation of the converter under normal and unbalanced AC side conditions.

关键词

电力电子 / 直流输电 / 模型预测控制 / 模块化多电平换流器 / 能量平衡

引用本文

导出引用
夏向阳, 徐雷, 易海淦, 陈凯平, 敬华兵, 刘放平. 基于多目标递阶模型预测理论的MMC能量协同控制研究[J]. 太阳能学报. 2022, 43(10): 472-481 https://doi.org/10.19912/j.0254-0096.tynxb.2021-0498
Xia Xiangyang, Xu Lei, Yi Haigan, Chen Kaiping, Jing Huabing, Liu Fangping. RESEARCH ON ENERGY COOPERATIVE CONTROL OF MMC BASED ON MULTI-OBJECTIVE RECURSIVE MODEL PREDICTION THEORY[J]. Acta Energiae Solaris Sinica. 2022, 43(10): 472-481 https://doi.org/10.19912/j.0254-0096.tynxb.2021-0498
中图分类号: TM48   

参考文献

[1] 徐政. 柔性直流输电系统[M]. 北京: 机械工业出版社, 2012.
XU Z.Flexible direct current transmission system[M]. Beijing: China Machine Press, 2012.
[2] 夏向阳, 周云, 帅智康. 高压直流输电系统中模块化多电平换流器的重复预测控制[J]. 中国电机工程学报, 2015, 35(7): 1637-1643.
XIA X Y, ZHOU Y, SHUAI Z K.Repeat predictive control of a modular multilevel converter for HVDC system[J]. Proceedings of the CSEE, 2015, 35(7): 1637-1643 .
[3] 胡畔, 陈红坤, 陈孟忻, 等. 基于动态相量法的改进多端模块化多电平换流器HVDC小干扰稳定模型[J]. 电工技术学报, 2017, 32(24): 193-204.
HU P, CHEN H K, CHEN M X, et al.Advanced small-signal stability model for multi-terminal modular multilevel converter-HVDC systems based on dynamic phasors[J]. Transactions of China Electrotechnical Society, 2017, 32(24): 193-204.
[4] 董云龙, 凌卫家, 田杰, 等. 舟山多端柔性直流输电控制保护系统[J]. 电力自动化设备, 2016, 36(7): 169-175.
DONG Y L, LING W J, TIAN J, et al.Control protection system for zhoushan multi-terminal VSC-HVDC[J]. Electric power automation equipment, 2016, 36(7): 169-175.
[5] 王曦, 李兴源, 魏巍, 等. 柔性直流和常规直流互联输电系统协调控制策略[J]. 电力自动化设备, 2016, 36(12): 102-108.
WANG X, LI X Y, WEI W, et al.Coordinated control strategy for interconnected transmission system of VSC-HVDC and LCC-HVDC[J]. Electric power automation equipment, 2016, 36(12): 102-108.
[6] XIA X Y, XU L, ZHAO X X, et al.Modular multilevel converter predictive control strategy based on energy balance[J]. Journal of power electronics, 2021, 21(2): 757-767.
[7] 荣飞, 黄韬, 饶宏, 等. MMC换流阀最优三次谐波注入方法研究[J]. 高压电器, 2019, 55(7): 20-26.
RONG F, HUANG T, RAO H, et al.Optimal method of third harmonic injection to MMC value[J]. High voltage apparatus, 2019, 55(7): 20-26.
[8] 姚骏, 谭义, 裴金鑫, 等. 模块化多电平变流器高压直流输电系统直流故障改进控制策略[J]. 电工技术学报, 2018, 33(14): 3306-3318.
YAO J, TAN Y, PEI J X, et al.Improved control strategy for dc fault in modular multi-level converter-HVDC system[J]. Transactions of China Electrotechnical Society, 2018, 33(14): 3306-3318.
[9] 孔明, 汤广福, 贺之渊, 等. 不对称交流电网下MMC-HVDC输电系统的控制策略[J]. 中国电机工程学报, 2013, 33(28): 41-49, 8.
KONG M, TANG G F, HE Z Y, et al.A control strategy for modular multilevel converter based HVDC of unbalanced ac systems[J]. Proceeding of the CSEE, 2013, 33(28): 41-49, 8.
[10] 周月宾, 江道灼, 胡鹏飞, 等. 一种MMC-HVDC的直流电压波动抑制新方法[J]. 中国电机工程学报, 2013, 37(27): 36-43, 7.
ZHOU Y B, JIANG D Z, HU P F, et al.A new approach for suppressing DC voltage ripples of MMC-HVDC[J]. Proceeding of the CSEE, 2013, 37(27): 36-43, 7.
[11] 梁营玉, 张涛, 刘建政, 等. 不平衡电网电压下模块化多电平换流器的环流抑制策略[J]. 电工技术学报, 2016, 31(9): 120-128.
LIANG Y Y, ZHANG T, LIU J Z, et al.A circulating current suppressing method for modular multilevel converter under unbalanced grid voltage[J]. Transactions of China Electrotechnical Society, 2016, 31(9): 120-128.
[12] TU Q R, XU Z, XU L.Reduced switching-frequency modulation and circulating current suppression for modular multilevel converters[J]. IEEE transactions on power delivery, 2011, 26(3): 2009-2017.
[13] QIN J C, SAEEDIFARD M.Predictive control of a modular multilevel converter for a back-to-back HVDC system[J]. IEEE transactions on power delivery, 2012, 27(3): 1538-1547.
[14] MARQUARDT R.Modular multilevel converter topologies with DC-short circuit current limitation[C]//2011 IEEE 8th International Conference on Power Electronics-ECCE Asia, Jeju, Korea, 2011: 1425-1431.
[15] 周月宾, 江道灼, 郭捷, 等. 交流系统不对称时模块化多电平换流器的控制[J]. 电网技术, 2013, 37(3): 622-628.
ZHOU Y B, JIANG D Z, GUO J, et al.Control of modular multilevel converter under imbalance of ac power system[J]. Power system technology, 2013, 37(3): 622-628.
[16] 孙伟莎, 程启明, 程尹曼, 等. 不平衡电网电压下MMC滑模变结构控制策略[J]. 太阳能学报, 2020, 41(9): 310-317.
SUN W S, CHENG Q M, CHENG Y M, et al.MMC control strategy based on sliding mode variable structure under unbalance grid voltage[J]. Acta energiae solaris sinica, 2020, 41(9): 310-317.
[17] PRIETO-ARAUJO E, JUNYENT-FERRÉ A, COLLADOS-RODRÍGUEZ C, et al. Control design of modular multilevel converters in normal and ac fault conditions for HVDC grids[J]. Electric power systems research, 2017, 152(3): 424-437.
[18] 梁营玉, 杨奇逊, 刘建政, 等. 电网电压不平衡时MMCHVDC的无差拍直接功率控制[J]. 电工技术学报, 2015, 30(15): 15-25.
LIANG Y Y, YANG Q X, LIU J Z, et al.Deadbeat direct power control for MMC-HVDC under unbalanced grid voltages[J]. Transactions of China Electrotechnical Society, 2015, 30(15): 15-25.
[19] AHMADIJOKANI M, MEHRASA M, SLEIMAN M, et al.A back-stepping control method for modular multilevel converters[J]. IEEE transactions on industrial electronics, 2021, 68(1): 443-453.
[20] JUNYENT-FERRE A, CLEMOW P, MERLIN M, et al.Operation of HVDC modular multilevel converters under dc pole imbalances[C]// European Conference on Power Electronics and Applications, IEEE,Lappeenranta, Finland, 2014.
[21] PRIETO-ARAUJO E, JUNYENT-FERRE A, CLARIANA-COLET G, et al.Control of modular multilevel converters under singular unbalanced voltage conditions with equal positive and negative sequence components[J]. IEEE transactions on power systems, 2017, 32(3): 2131-2141.
[22] CORTES P, KOURO S, ROCCA B L, et al.Guidelines for weighting factors design in model predictive control of power converters and drives[C]//IEEE International Conference on Industrial Technology, IEEE, Churchill, VIC, Australia, 2009.
[23] 夏向阳, 黄智, 赵昕昕. 交流侧故障下MMC-HVDC 能量平衡控制策略[J]. 湖南大学学报(自然科学版), 2019, 46(10): 101-108.
XIA X Y, HUANG Z, ZHAO X X.Energy balancing control strategy of MMC-HVDC under AC fault[J]. Journal of Hunan University(natural sciences), 2019, 46(10): 101-108.

基金

国家自然科学基金(51977014); 湖南省自然科学基金(2020JJ6054)

PDF(3520 KB)

Accesses

Citation

Detail

段落导航
相关文章

/