Artificial Neural Network with 3-Port Dc-Dc Converter Based Energy Management Scheme in Sustainable Energy Sources
Creators
- 1. Assistant Professor, Department of Electrical and Electronics Engineering, Maria College of Engineering and Technology, Attoor (Tamil Nadu), India.
- 2. Assistant Professor, Department of Electrical and Electronics Engineering, CSI Institute of Technology, Thovalai (Tamil Nadu), India.
Contributors
Contact person:
- 1. Assistant Professor, Department of Electrical and Electronics Engineering, Maria College of Engineering and Technology, Attoor (Tamil Nadu), India.
Description
Abstract: In micro grids, energy management is referred to as an information and control system that offers the essential functionality to ensure that the energy supply from the generation and distribution systems occurs at the lowest possible operational cost. Energy management systems (EMS) support distributed energy resource utilization in micro grids, especially when variable generation and pricing are present. In this paper, an Artificial Neural Network (ANN)-based energy management approach for a hybrid wind, solar and Battery Storage System (BSS) is presented. To sustain the DC voltage, a 3 Port DC-DC Converter is also proposed. While renewable energy systems have numerous advantages, one of the challenges they face is the intermittency of power generation, leading to fluctuations in the power supply to the grid. Therefore, EMS aims to reduce these variations. Another goal is to maintain the battery state of charge (SOC) within the allowed ranges to extend the battery life. The implementation is carried out in Simulink/Matlab platform. To demonstrate the efficacy of the suggested approach, we compare the Total Harmonic Distortion (THD) of the proposed controller (1.52%) with that of conventional controllers, including the ZSI-based PID controller (3.05%), PI controller (4.02%), and FO-PI (3.32%) controller.
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- Journal article: 2249-8958 (ISSN)
References
- M. Madrigal, M. Bhatia, G. Elizondo, A. Sarkar, and M. Kojima, "Twin peaks: Surmounting the global challenges of energy for all and greener, more efficient electricity services," IEEE Power and Energy Magazine, Vol. 10, No. 3, pp. 20-29, 2012. https://doi.org/10.1109/MPE.2012.2188666
- P. Singh and J.S. Lather, "Power management and control of a grid-independent DC microgrid with hybrid energy storage system," Sustainable Energy Technologies and Assessments, Vol. 43, pp. 100924, 2021. https://doi.org/10.1016/j.seta.2020.100924
- T.S Babu, K.R.Vasudevan, V. K Ramachandaramurthy, S. B. Sani, S. Chemud, and R. M. Lajim, "A comprehensive review of hybrid energy storage systems: Converter topologies, control strategies and future prospects," IEEE Access, Vol. 8, pp. 148702-148721, 2020.9 https://doi.org/10.1109/ACCESS.2020.3015919
- K. A. Khan and M. Khalid, "Improving the transient response of hybrid energy storage system for voltage stability in DC microgrids using an autonomous control strategy, "IEEE Access, Vol. 9, pp. 10460-10472, 2021 https://doi.org/10.1109/ACCESS.2021.3051144
- T. A.Fagundes, G. H. F. Fuzato, P. G. B Ferreira, M. Biczkowski, and R. Q. Machado, "Fuzzy controller for energy management and soc equalization in dc microgrids powered by fuel cell and energy storage units," IEEE Journal of Emerging and Selected Topics in Industrial Electronics, Vol. 3, No. 1, pp. 90-100, 2021. https://doi.org/10.1109/JESTIE.2021.3088419
- Chaouachi A., Kamel R. M., Andoulsi R., andNagasaka K.,"Multiobjective intelligent energy management for a microgrid," IEEE transactions on Industrial Electronics, Vol. 60, No. 4, pp. 1688-1699, 2012. https://doi.org/10.1109/TIE.2012.2188873
- M. Hamzeh, H. Mokhtari, and A. Karimi, "Reactive power management in an islanded multi-bus MV microgrid, "Can. J. Electr.Comput.Eng, Vol. 36, pp. 18-25, 2013. https://doi.org/10.1109/CJECE.2013.6544468
- D. Arcos-Aviles, J. Pascual, F. Guinjoan, L. Marroyo, P. Sanchis, and M. P. Marietta, "Low complexity energy management strategy for grid profile smoothing of a residential grid-connected microgrid using generation and demand forecasting," Applied energy, Vol. 205, pp. 69-84, 2017. https://doi.org/10.1016/j.apenergy.2017.07.123
- B. V. Solanki, A. Raghurajan, K. Bhattacharya, and C. A. Canizares, "Including smart loads for optimal demand response in integrated energy management systems for isolated microgrids," IEEE Transactions on Smart Grid, Vol. 8, No. 4, pp. 1739-1748, 2015. https://doi.org/10.1109/TSG.2015.2506152
- H. Moussa, A. Shahin, J. P. Martin, S. Pierfederici, and N. Moubayed, "Optimal angle droop for power sharing enhancement with stability improvement in islanded microgrids," IEEE Transactions on Smart Grid, Vol. 9, No. 5, pp. 5014-5026, 2017. https://doi.org/10.1109/TSG.2017.2678686
- Y. Wang, W. Wen, C. Wang, H. Liu, X. Zhan, and X. Xiao, "Adaptive voltage droop method of multi terminal VSC-HVDC systems for DC voltage deviation and power sharing," IEEE Transactions on Power Delivery, Vol. 34, No. 1, pp. 169-176, 2018. https://doi.org/10.1109/TPWRD.2018.2844330
- A. Azizi, S. Peyghami, H. Mokhtari, and F. Blaabjerg, "Autonomous and decentralized load sharing and energy management approach for DC microgrids," Electric Power Systems Research, Vol. 177, pp. 106009, 2019. https://doi.org/10.1016/j.epsr.2019.106009
- R. Razi, H. Iman-Eini, and M. Hamzeh, "An Impedance-Power Droop Method for Accurate Power Sharing in Islanded Resistive Microgrids," IEEE J. Emerg. Sel. Top. Power Electron, Vol. 8, pp. 3763–3771, 2020. https://doi.org/10.1109/JESTPE.2019.2926319
- P. S. Kumar, R. P. S. Chandrasena, V. Ramu, G. N. Srinivas, and K. V. S. M. Babu, "Energy management system for small scale hybrid wind solar battery based microgrid," IEEE Access, Vol. 8, pp. 8336-8345, 2020. https://doi.org/10.1109/ACCESS.2020.2964052
- S. Rostami, V. Abbasi, and M. Parastesh, "Design and implementation of a multiport converter using Z-source converter," IEEE Transactions on Industrial Electronics, Vol. 68, No. 10, pp. 9731-9741, 2020. https://doi.org/10.1109/TIE.2020.3022538
- D. Kirubakaran and S. Kamalakannan, "Power quality enhancement of on grid solar PV system with Z source inverter," Journal of Engineering Science and Technology Special Issue on SU18, pp.135 – 143, 2019.
- Girgin Ozgun, and Mustafa Hadi Sarul," A hybrid control strategy for Z-source inverter DG systems,"Automatikavol, Vol. 60, No. 4, pp. 500-509, 2019. https://doi.org/10.1080/00051144.2019.1652000
- M. Lakshmi and S. Hemamalini, "Decoupled control of grid connected photovoltaic system using fractional order controller," Ain Shams Engineering Journal, Vol.9, No. 4, pp. 927-937, 2018 https://doi.org/10.1016/j.asej.2016.06.002
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- ISSN: 2249-8958 (Online)
- https://portal.issn.org/resource/ISSN/2249-8958#
- Retrieval Number:100.1/ijeat.F42490812623
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- Publisher: Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP)
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