FOSMC Control Mechanism For Solar and Battery based Microgrid System

被引:2
作者
Shaik, Silar Sahib [1 ]
Gudey, Sathis Kumar [1 ]
机构
[1] Gayatri Vidya Parishad Coll Engn Autonomous, Dept Elect Engn, Visakhapatnam, Andhra Pradesh, India
来源
2020 3RD INTERNATIONAL CONFERENCE ON ENERGY, POWER AND ENVIRONMENT: TOWARDS CLEAN ENERGY TECHNOLOGIES (ICEPE 2020) | 2021年
关键词
battery; fractional order sliding mode control; microgrid; solar; steady state error; settling time; tracking; voltage source inverter; SLIDING-MODE CONTROL;
D O I
10.1109/ICEPE50861.2021.94044515
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
This work presents the performance of fractional order sliding mode control (FOSMC) for a microgrid system (MG) consisting of solar and a battery feeding different loads. The proposed controller is used to track effectively the desired output voltage during changeover from solar to battery system. Using state space model of a voltage source inverter (VS1), the control input is obtained. The maximum power from the Solar PV system is harnessed using Perturb and Observe (P&O) MPPT algorithm. To step up the voltage of 200 V generated from the PV panel to 400 V as input to the 2.5 kVA rated VSI, a boost converter is utilized. PNVN1 switching pulses are generated to the 1GHT switches operating at 10 kHz for effective tracking of the reference load voltages. A 2.5 kW 0.8 pf lagging load and a single phase diode bridge rectifier as non-linear load is considered to be fed from the MG system. "fhe controller's performance in terms of steady state error, total harmonic distortion (THD), settling time is studied during the system operation. A comparison with the classical SMC is observed through its control energy is also presented. The control energy required in FOSMC for a stable system operation is 8 times less than that of SMC is realized. It is observed that FOSNIC performs well with less steady state error of 1.32 %, MD of 0.135 % and settling time of 0.16 ms. Simulations are performed in PSCADv4.6.
引用
收藏
页数:6
相关论文
共 19 条
[1]   Mitigation of transient overvoltages in microgrid including PV arrays [J].
Awad, Eman Ahmed ;
Badran, Ebrahim A. .
IET GENERATION TRANSMISSION & DISTRIBUTION, 2020, 14 (15) :2959-2967
[2]  
Bo Hou, 2016, 2016 IEEE 8th International Power Electronics and Motion Control Conference (IPEMC-ECCE Asia), P1269, DOI 10.1109/IPEMC.2016.7512471
[3]  
Buchade PC, 2014, 2014 INTERNATIONAL CONFERENCE ON CIRCUITS, SYSTEMS, COMMUNICATION AND INFORMATION TECHNOLOGY APPLICATIONS (CSCITA), P403, DOI 10.1109/CSCITA.2014.6839294
[4]   Single-Phase Consensus-Based Control for Regulating Voltage and Sharing Unbalanced Currents in 3-Wire Isolated AC Microgrids [J].
Burgos-Mellado, Claudio ;
Llanos, Jacqueline ;
Espina, Enrique ;
Saez, Doris ;
Cardenas, Roberto ;
Sumner, Mark ;
Watson, Alan .
IEEE ACCESS, 2020, 8 :164882-164898
[5]  
Chafekar N, 2019, 2019 FIFTH INDIAN CONTROL CONFERENCE (ICC), P201, DOI [10.1109/INDIANCC.2019.8715589, 10.1109/indiancc.2019.8715589]
[6]   Fractional Order Control - A Tutorial [J].
Chen, YangQuan ;
Petras, Ivo ;
Xue, Dingyue .
2009 AMERICAN CONTROL CONFERENCE, VOLS 1-9, 2009, :1397-+
[7]   Microgrid System with Emulated PV Sources for Parallel and Intentional Islanding Operations [J].
de Brito, Moacyr ;
Alves, Marcos ;
Canesin, Carlos .
IEEE LATIN AMERICA TRANSACTIONS, 2020, 18 (08) :1462-1469
[8]   Fractional-Order Sliding-Mode Control of Islanded Distributed Energy Resource Systems [J].
Delghavi, Mohammad B. ;
Shoja-Majidabad, Sajjad ;
Yazdani, Amirnaser .
IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2016, 7 (04) :1482-1491
[9]  
Gudey S K., TENCON 2014 IEEE REG, P1
[10]   Sliding Mode Control of Constrained Nonlinear Systems [J].
Incremona, Gian Paolo ;
Rubagotti, Matteo ;
Ferrara, Antonella .
IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 2017, 62 (06) :2965-2972