A novel adaptive model predictive controller for load frequency control of power systems integrated with DFIG wind turbines

被引:0
作者
Mohamed A. Mohamed
Ahmed A. Zaki Diab
Hegazy Rezk
Tao Jin
机构
[1] Fuzhou University,Department of Electrical Engineering
[2] Minia University,Electrical Engineering Department, Faculty of Engineering
[3] Prince Sattam Bin Abdulaziz University,College of Engineering at Wadi Addawaser
来源
Neural Computing and Applications | 2020年 / 32卷
关键词
Adaptive model predictive control; Load frequency control; Power system inertia; Online model estimation; Wind turbines; Power system control;
D O I
暂无
中图分类号
学科分类号
摘要
With the rapid growth of renewable energy resources, wind energy system is getting more interest everywhere throughout the world. However, its extensive use in power systems prompts many power system dynamics and stability problems. Load variation and anomalous operating conditions prompt inconsistencies in frequency and planned power trades. These inconsistencies should be remedied by load frequency control. This paper introduces a novel frequency control system utilizing a mix of adaptive model predictive controller (AMPC) and recursive polynomial model estimator (RPME) integrated with double fed induction generator wind turbines. Inside each control duration, the RPME is identifying a discrete-time online autoregressive exogenous model. The latter is used through the AMPC to update the interior plant model in order to achieve a successful nonlinear control. The performance of the proposed system has been verified and contrasted with the conventional MPC system through a computer simulation-based MATLAB/SIMULINK. The simulation results demonstrated the superiority of the proposed system as for the conventional MPC system.
引用
收藏
页码:7171 / 7181
页数:10
相关论文
共 90 条
  • [1] Mohamed MA(2019)Partial shading mitigation of PV systems via different meta-heuristic techniques Renew Energy 130 1159-1175
  • [2] Diab AAZ(2017)Load management as a smart grid concept for sizing and designing of hybrid renewable energy systems Eng Optim 49 1813-1828
  • [3] Rezk H(2013)New software for hybrid renewable energy assessment for ten locations in Saudi Arabia J Renew Sustain Energy 5 033126-2105
  • [4] Eltamaly AM(2017)Research on the impact of DFIG virtual inertia control on power system small-signal stability considering the phase-locked loop IEEE Trans Power Syst 32 2094-5139
  • [5] Mohamed MA(2017)Distributed model predictive load frequency control of the multi-area power system after deregulation IEEE Trans Ind Electron 64 5129-598
  • [6] Al-Saud MS(2017)A new load frequency control strategy for micro-grids with considering electrical vehicles Electr Power Syst Res 143 585-6309
  • [7] Alolah AI(2017)Optimal load-side control for frequency regulation in smart grids IEEE Trans Autom Control 62 6294-35
  • [8] Eltamaly AM(2004)Power system frequency response from fixed speed and doubly fed induction generator-based wind turbines Wind Energy Int J Prog Appl Wind Power Convers Technol 7 21-1503
  • [9] Addoweesh KE(2005)The inertial response of induction-machine-based wind turbines IEEE Trans Power Syst 20 1496-609
  • [10] Bawah U(2018)Robust adaptive tracking control for quadrotors by combining PI and self-tuning regulator IEEE Trans Control Syst Technol 51 604-1083