Optimal Model Predictive Control for Virtual Inertia Control of Autonomous Microgrids

被引:10
|
作者
Saleh, Amr [1 ]
Hasanien, Hany M. [1 ]
A. Turky, Rania [2 ]
Turdybek, Balgynbek [3 ]
Alharbi, Mohammed [4 ]
Jurado, Francisco [3 ]
Omran, Walid A. [5 ]
机构
[1] Ain Shams Univ, Fac Engn, Elect Power & Machines Dept, Cairo 11517, Egypt
[2] Future Univ Egypt, Fac Engn & Technol, Elect Engn Dept, Cairo 11835, Egypt
[3] Univ Jaen, Super Polytech Sch Linares, Dept Elect Engn, Linares 23700, Spain
[4] King Saud Univ, Coll Engn, Elect Engn Dept, Riyadh 11421, Saudi Arabia
[5] German Univ Cairo, Fac Engn & Mat Sci, Cairo 16482, Egypt
关键词
model predictive control; virtual inertia; African vultures optimizer; microgrid; renewable energy; LOAD FREQUENCY CONTROL; BATTERY ENERGY-STORAGE; SYSTEM; OPTIMIZATION; STABILITY; ALGORITHM;
D O I
10.3390/su15065009
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
For the time being, renewable energy source (RES) penetration has significantly increased in power networks, particularly in microgrids. The overall system inertia is dramatically decreased by replacing traditional synchronous machines with RES. This negatively affects the microgrid dynamics under uncertainties, lowering the microgrid frequency stability, specifically in the islanded mode of operation. Therefore, this work aims to enhance the islanded microgrid frequency resilience using the virtual inertia frequency control concept. Additionally, optimal model predictive control (MPC) is employed in the virtual inertial control model. The optimum design of the MPC is attained using an optimization algorithm, the African Vultures Optimization Algorithm (AVOA). To certify the efficacy of the proposed controller, the AVOA-based MPC is compared with a conventional proportional-integral (PI) controller that is optimally designed using various optimization techniques. The actual data of RES is utilized, and a random load power pattern is applied to achieve practical simulation outcomes. Additionally, the microgrid paradigm contains battery energy storage (BES) units for enhancing the islanded microgrid transient stability. The simulation findings show the effectiveness of AVOA-based MPC in improving the microgrid frequency resilience. Furthermore, the results secure the role of BES in improving transient responses in the time domain simulations. The simulation outcomes are obtained using MATLAB software.
引用
收藏
页数:25
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