Optimizing Load Frequency Control in Standalone Marine Microgrids Using Meta-Heuristic Techniques

被引:9
作者
Alahakoon, Sanath [1 ]
Roy, Rajib Baran [1 ]
Arachchillage, Shantha Jayasinghe [2 ,3 ]
机构
[1] Cent Queensland Univ, Sch Engn & Technol, Rockhampton 4701, Australia
[2] Australian Energy Market Operator, Melbourne 3000, Australia
[3] Univ Tasmania, Australian Maritime Coll, Launceston 7250, Australia
关键词
marine microgrid; load frequency controller; PID; hybrid PSO-BFO algorithm; ITAE; ITSE; HIL; AUTOMATIC-GENERATION CONTROL; RENEWABLE SOURCES; POWER-SYSTEMS; OPTIMIZATION; STRATEGIES; DESIGN; STATE;
D O I
10.3390/en16134846
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Integrating renewable resources into the electrical systems of marine vessels achieves the dual goal of diversifying energy resources and reducing greenhouse gas emissions. The presence of intermittent renewable sources and sudden nonlinear load changes can cause frequency deviations in isolated hybrid marine microgrids. To address this issue, the paper proposes a conventional PID (proportional-integral-derivative)-controller-based LFC (load frequency controller) which is optimized by meta-heuristic optimization algorithms, namely, PSO (particle swarm optimization), GWO (grey wolf optimization) and hybrid PSO-GWO. The proposed LFC was designed using transfer functions of various microgrid components, with ITAE (integral time absolute error) and ITSE (integral time square error) serving as performance indices. The proposed LFC's validation was performed through HIL (hardware-in-loop) real-time simulation using a DS 1104 R & D controller board, with simulation results showing the better performance of the optimized frequency response compared to the nonoptimized LFC controller in terms of rise time, fall time, slew rate and overshoot. The hybrid PSO-GWO algorithm performs better than the other optimization algorithms. The simulation results demonstrate the stability and robustness of the proposed controller. In summary, the proposed PID-controller-based LFC can regulate frequency deviation in standalone hybrid marine microgrids effectively.
引用
收藏
页数:23
相关论文
共 88 条
[1]   Optimal controller tuning for P&O maximum power point tracking of PV systems using genetic and cuckoo search algorithms [J].
Ahmed, Nabil A. ;
Abdul Rahman, Salahuddin ;
Alajmi, Bader N. .
INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2021, 31 (10)
[2]  
Ahshan R., 2013, THESIS MEMORIAL U NE
[3]   Noise identification based on spectral analysis and noisy transfer function approach for fuel cells [J].
Akinci, Tahir Cetin ;
Seker, Serhat ;
Dursun, Erkan ;
Kilic, Osman .
NOISE MAPPING, 2020, 7 (01) :14-20
[4]   A new load frequency variable structure controller using genetic algorithms [J].
Al-Hamouz, ZM ;
Al-Duwaish, HN .
ELECTRIC POWER SYSTEMS RESEARCH, 2000, 55 (01) :1-6
[5]  
Al-Mashakbeh A.S.O., 2009, AUST J BASIC APPL SC, V3, P4267
[6]   A suitable model plant for control of the set fuel cell-DC/DC converter [J].
Andujar, J. M. ;
Segura, F. ;
Vasallo, M. J. .
RENEWABLE ENERGY, 2008, 33 (04) :813-826
[7]   Robust frequency control in a standalone microgrid: An adaptive fuzzy based fractional order cascade PD-PI approach [J].
Annamraju, Anil ;
Bhukya, Laxman ;
Nandiraju, Srikanth .
Advanced Control for Applications: Engineering and Industrial Systems, 2021, 3 (03)
[8]   A novel fuzzy tuned multistage PID approach for frequency dynamics control in an islanded microgrid [J].
Annamraju, Anil ;
Nandiraju, Srikanth .
INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2020, 30 (12)
[9]  
[Anonymous], 2015, SSRG INT J ELECT ELE
[10]  
[Anonymous], DESIGN INTEGRAL SMC