Robust Stabilization of Load Frequency Control System Under Networked Environment附视频

被引:2
作者
Ashraf Khalil [1 ]
JiHong Wang [2 ]
Omar Mohamed [3 ]
机构
[1] Electrical and Electronics Engineering Department, University of Benghazi
[2] School of Engineering, University of Warwick
[3] King Abdullah Ⅱ Faculty of Engineering, Princess Sumaya University of
关键词
Load frequency control; load frequency control(LFC); Markov chains; networked control system; robust stabilization;
D O I
暂无
中图分类号
TP273 [自动控制、自动控制系统];
学科分类号
080201 ; 0835 ;
摘要
The deregulation of the electricity market made the open communication infrastructure an exigent need for future power system. In this scenario dedicated communication links are replaced by shared networks. These shared networks are characterized by random time delay and data loss. The random time delay and data loss may lead to system instability if they are not considered during the controller design stage. Load frequency control systems used to rely on dedicated communication links. To meet future power system challenges these dedicated networks are replaced by open communication links which makes the system stochastic. In this paper, the stochastic stabilization of load frequency control system under networked environment is investigated. The shared network is represented by three states which are governed by Markov chains. A controller synthesis method based on the stochastic stability criteria is presented in the paper. A one-area load frequency control system is chosen as case study. The effectiveness of the proposed method for the controller synthesis is tested through simulation. The derived proportion integration(PI) controller proves to be optimum where it is a compromise between compensating the random time delay effects and degrading the system dynamic performance. The range of the PI controller gains that guarantee the stochastic stability is determined. Also the range of the PI controller gains that achieve the robust stochastic stability is determined where the decay rate is used to measure the robustness of the system.
引用
收藏
页码:93 / 105
页数:13
相关论文
共 7 条
[1]  
An LMI approach to the design of robust delay-dependent overlapping load frequency control of uncertain power systems[J] . Adel Ahmadi,Mohammad Aldeen.International Journal of Electrical Power and Ene . 2016
[2]  
Communication time delay estimation for load frequency control in two-area power system[J] . Vijay P. Singh,Nand Kishor,Paulson Samuel.Ad Hoc Networks . 2015
[3]   H∞ load frequency control of interconnected power systems with communication delays [J].
Dey, Rajeeb ;
Ghosh, Sandip ;
Ray, G. ;
Rakshit, A. .
INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2012, 42 (01) :672-684
[4]   Application of GA optimization for automatic generation control design in an interconnected power system [J].
Golpira, H. ;
Bevrani, H. ;
Golpira, H. .
ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (05) :2247-2255
[5]  
Robust dissipative control for internet-based switching systems[J] . Magdi S. Mahmoud,Hazem N. Nounou,Yuanqing Xia.Journal of the Franklin Institute . 2009 (1)
[6]  
Robust state‐feedback stabilization of jump linear systems via LMIs[J] . Laurentel Ghaoui,MustaphaAit Rami.Int. J. Robust Nonlinear Control . 1998 (9‐1)
[7]  
Migrating electrical power network SCADA systems to TCP/IP and Ethernet networking .2 Kwok-Hong Mak,Holland,B.L. Power Engineering Journal . 2002