全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
电网技术  2009 

可控串联补偿的滑模PID控制器设计

, PP. 84-88

Keywords: 可控串联补偿(TCSC),直接反馈线性化,滑模PID控制,暂态稳定

Full-Text   Cite this paper   Add to My Lib

Abstract:

为抑制电力系统中可控串联补偿装置的非线性及外部扰动影响,文中应用直接反馈线性化方法和滑模比例–积分–微分(proportional-integral-differential,PID)控制理论,设计了可控串联补偿的新型非线性控制器。利用直接反馈线性化方法对非线性模型精确线性化,采用滑模变结构理论与常规PID的复合控制策略,设计的可控串联补偿控制规律简洁,易于工程实现且鲁棒性好。仿真结果表明,与传统的控制方式相比,滑模PID控制器能有效地阻尼系统振荡,提高系统的暂态稳定性,对运行点变化也具有较好的适应性。

References

[1]  王辉,韦泽垠,王耀南.可控串补自适应模糊阻尼控制策略研究[J].电力系统自动化设备,2006,26(10):13-16. Wang Hui,Wei Zeyin,Wang Yaonan.Study of self-adaptive fuzzy damping control strategy of TCSC[J].Electric Power Automation Equipment,2006,26(10):13-16(in Chinese).
[2]  李文磊,张智焕,井元伟,等.基于自适应Backstepping设计的TCSC非线性鲁棒控制器[J].控制理论与应用,2005,22(1):153-156. Li Wenlei,Zhang Zhihuan,Jing Yuanwei,et al.Nonlinear robust control based on adaptive Backstepping design for TCSC[J].Control Theory & Applications,2005,22(1):153-156(in Chinese).
[3]  林宇峰,徐政,黄莹.TCSC功率振荡阻尼控制器的设计[J].电网技术,2005,29(22):35-39. Lin Yufeng,Xu Zheng,Huang Ying.Design of TCSC auxiliary controller for inter-area power oscillation damping[J].Power System Technology,2005,29(22):35-39(in Chinese).
[4]  郑旭.基于反馈线性化的TCSC非线性PID控制[J].电力自动化设备,2006,26(9):86-88. Zheng Xu.Nonlinear PID controller for TCSC based on feedback linearization[J].Electric Power Automation Equipment,2006,26(9):86-88(in Chinese).
[5]  Zhou X,Liang J.Overview of control schemes for TCSC to enhance the stability of power system[J].IEE Proc-Gener Transm Distrib,1999,145(2):125-130.
[6]  Paserba J J,Miller N W,Larsen E V,et al.A thyristor controlled series compensation model for power system stability analysis[J].IEEE Trans on Power Delivery,1995,10(3):1471-1478.
[7]  徐桂芝,武守远,王宇红,等.用TCSC装置抑制电力系统低频振荡的研究[J].电网技术,2004,28(15):45-47. Xu Guizhi,Wu Shouyuan,Wang Yuhong,et al.Damping low frequency oscillation in power system by TCSC[J].Power System Technology,2004,28(15):45-47(in Chinese).
[8]  李可军,赵建国,靳晓凌.用于TCSC阻抗控制的免疫反馈PID控制方法[J].电网技术,2005,29(17):49-52. Li Kejun,Zhao Jianguo,Jin Xiaoling.Immune feedback PID control method for impedance control of TCSC[J].Power System Technology,2005,29(17):49-52(in Chinese).
[9]  郭春林,童陆园.基于在线辨识的可控串补自适应控制[J].中国电机工程学报,2004,24(7):7-12. Guo Chunlin,Tong Luyuan.Self-tuning phase-compensation control based on online identification of TCSC[J].Proceedings of the CSEE,2004,24(7):7-12(in Chinese).
[10]  张风营,朱守真.基于网络实时动态等值的自适应可控串补控制器[J].电网技术,2006,30(5):38-42. Zhang Fengying,Zhu Shouzhen.An adaptive TCSC controller based on network real-time dynamic equivalence[J].Power System Technology,2006,30(5):38-42(in Chinese).
[11]  Zhou X X,Liang J.Nonlinear adaptive control of TCSC to improve the performance of power systems[J].IEE Proc-Gener Transm Distrib,1999,146(3):310-315.
[12]  李可军,赵建国,冯忠才.可控串补模糊变结构控制器[J].山东大学学报,2003,33(1):14-17. Li Kejun,Zhao Jianguo,Feng Zhongcai.Fuzzy variable structure controller for thyristor controlled series capacitor[J].Journal of Shandong University,2003,33(1):14-17(in Chinese).
[13]  何飞跃,段献忠.基于广域测量的TCSC滑模控制器设计[J].电网技术,2006,30(23):50-54. He Feiyue,Duan Xianzhong.Design of wide-area measurement based on sliding-mode TCSC controller[J].Power System Technology,2006,30(23):50-54(in Chinese).
[14]  于占勋,陈德树,尹项根.可控串联补偿装置的智能变结构控制[J].电力系统自动化,1998,22(6):8-10. Yu Zhanxun,Chen Deshu,Yin Xianggen.Intelligence variable structure control of controllable series compensator [J].Automation of Electric Power Systems,1998,22(6):8-10(in Chinese).
[15]  卜仁祥,刘正江,李铁山.船舶航向非线性迭代滑模变结构PID控制[J].大连海事大学学报,2006,32(2):9-11. Bu Renxiang,Liu Zhengjiang,Li Tieshan.Nonlinear iterative sliding mode-PID control and its application to ship autopilot[J].Journal of Dalian Maritime University,2006,32(2):9-11(in Chinese).
[16]  张春朋,林飞,宋文超,等.基于反馈线性化的异步电动机非线性控制[J].中国电机工程学报,2003,23(2):99-102. Zhang Chunpeng,Lin Fei,Song Wenchao,et al.Nonlinear control of induction motors based on direct feedback linearization [J].Proceedings of the CSEE,2003,23(2):99-102(in Chinese).
[17]  马幼捷,周雪松,迟正刚.基于直接反馈线性化理论的微机非线性励磁控制器[J].控制理论与应用,1997,14(6):857-861. Ma Youjie,Zhou Xuesong,Chi Zhenggang.Microcomputer-based nonlinear excitation controller designed by direct feedback linearization theory[J].Control Theory & Applications,1997,14(6):857-861(in Chinese).
[18]  卜仁祥,许琪,李铁山.船舶航向高阶线性变结构控制[C].航海技术及航海教育论文集,大连,2005.
[19]  卜仁祥.欠驱动水面船舶非线性反馈控制研究[D].大连:大连海事大学,2007.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133