Brief Review of Current Research on Electrical Grids

Main Article Content

Abdelhak Djoudi
Seddik Bacha
Ahmed Rennane
Samir Bellarbi
Amar Hadj Arab

Abstract

Electrical grids play a crucial role in the global energy transition by providing reliable energy transport. They must accommodate the integration of decentralized renewable energy systems (RESs), which vary in scale, generation rates, and intermittency. Ensuring this integration requires modern grids with enhanced performance and reliability. Today, various types of electrical grids are undergoing modernization, especially with the rise of electric vehicles. Traditional power grids are being equipped with advanced solutions across transmission, sub-transmission, and distribution networks. This modernization also extends to microgrids, high-voltage direct current (HVDC) systems, and wide-area synchronous grids, contributing to the emergence of new concepts such as supergrids and smart grids. This paper reviews rapidly the current state of research on electrical grids development, emphasizing critical concepts related to grids modernization and intellectualization. It aims to serve researchers, academics, and utility engineers interested in the latest advancements in the field. The aim of this work is unique and has not been addressed before, as the topics related to electrical grids are dispersed throughout the literature in large quantity, but they have not been reviewed as a cohesive whole.

Article Details

How to Cite
[1]
A. Djoudi, S. . Bacha, A. . Rennane, S. . Bellarbi, and A. . Hadj Arab, “Brief Review of Current Research on Electrical Grids”, J. Ren. Energies, vol. 27, no. 2, pp. 373 -, Dec. 2024.
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References

Ahmad, Tanveer & Zhang, Dongdong. (2021). Renewable energy integration/techno-economic feasibility analysis, cost/benefit impact on islanded and grid-connected operations: A case study. Renewable Energy, 2021, 180, p. 83-108.

Ahmethodzic, Lejla & Music, Mustafa. (2021). Comprehensive review of trends in microgrid control. Renewable Energy Focus, 2021, 38, p. 84-96.

Akeyo, Oluwaseun M., Patrick, Aron, & Ionel, Dan M. (2020). Study of renewable energy penetration on a benchmark generation and transmission system. Energies, 2020, 14, no 1, p. 169.

Alassi, Abdulrahman, Banales, Santiago, Ellabban, Omar, et al. (2019). HVDC transmission: technology review, market trends and future outlook. Renewable and Sustainable Energy Reviews, 2019, 112, p. 530-554.

Alghamdi, Baheej & Canizares, Claudio (2022). Frequency and voltage coordinated control of a grid of AC/DC microgrids. Applied Energy, 2022, 310, p. 118427.

Amin, Massoud, Annaswamy, A. M., Demarco, C. L., et al. (2013). IEEE Vision for Smart Grid Controls: 2030 and Beyond Reference Model. 2013.

Antoniadou-Plytaria, Kyriaki E., Kouveliotis-Lysikatos, Iasonas N., Georgilakis, Pavlos S., et al. (2017). Distributed and decentralized voltage control of smart distribution networks: Models, methods, and future research. IEEE Transactions on smart grid, 2017, 8(6), p. 2999-3008.

Anwar, Muhammad Bashar, Muratori, Matteo, Jadun, Paige, et al. (2022). Assessing the value of electric vehicle managed charging: a review of methodologies and results. Energy & Environmental Science, 2022.

Aranda, Jorge Arthur Schneider, Dos Santos Costa, Ricardo, De Vargas, Vitor Werner, et al. (2022). Context-aware Edge Computing and Internet of Things in Smart Grids: A systematic mapping study. Computers & Electrical Engineering, 2022, 99, p. 107826.

Archer, C. L., Simao, H. P., Kempton, W., et al. (2017). The challenge of integrating offshore wind power in the US electric grid. Part I: Wind forecast error. Renewable energy, 2017, 103, p. 346-360.

Barros, Julio, De Apraiz, Matilde & Diego, Ramon I (2019). Power quality in DC distribution networks. Energies, 2019, 12(5), p. 848.

Basso, Thomas & Deblasio, Richard (2012). IEEE smart grid series of standards IEEE 2030 (interoperability) and IEEE 1547 (interconnection) status. National Renewable Energy Lab.(NREL), Golden, CO (United States), 2012.

Boretti, Alberto (2022). The perspective of enhanced geothermal energy integration with concentrated solar power and thermal energy storage. Energy Storage, 2022, 4(1), p. e303

Bouchekara, Houssem Rafik El-Hana, Javaid, Muhammad Sharjeel, Shaaban, Yusuf Abubakar, et al. (2021). Decomposition based multiobjective evolutionary algorithm for PV/Wind/Diesel Hybrid Microgrid System design considering load uncertainty. Energy Reports, 2021, 7, p. 52-69.

Buraimoh, Elutunji & Davidson, Innocent E. (2020). Overview of fault ride-through requirements for photovoltaic grid integration, design and grid code compliance. In : 2020 9th International Conference on Renewable Energy Research and Application (ICRERA). IEEE, 2020. p. 332-336.

Calmet Benoît (2009). Protection des réseaux de transport et de répartition : présentation, techniques de l’ingénieur, 2009.

Cao, Fangyuan & Zhang, Bo (2022). Calculation of DC current distribution in AC power system near HVDC grounding electrode in subregional layered soil. International Journal of Electrical Power & Energy Systems, 2022, 140, p. 108086.

Changizian, Mahmudreza, Mizani, Amirreza, & Shoulaie, Abbas (2022). A novel control method for restraining starting-up overcurrent in VSC-HVDC System. Electric Power Systems Research, 2022, 206, p. 107816.

Chen, Weidong, Feng, Bin, Tan, Zhiguang, et al. (2022). Intelligent fault diagnosis framework of microgrid based on cloud–edge integration. Energy Reports, 2022, 8, p. 131-139.

Chmielewski, Tomasz, Jarzyna, Wojciech, Zielinski, Dariusz, et al. (2021). Modified repetitive control based on comb filters for harmonics control in grid-connected applications. Electric Power Systems Research, 2021, 200, p. 107412.

Da Silva, Marcela A., Abreu, Thays, Santos-Junior, Carlos Roberto, et al. (2021). Load forecasting for smart grid based on continuous-learning neural network. Electric Power Systems Research, 2021, 201, p. 107545.

Dagar, Annu, Gupta, Pankaj, & Niranjan, Vandana (2021). Microgrid protection: A comprehensive review. Renewable and Sustainable Energy Reviews, 2021, 149, p. 111401.

Darabian, M., Jalilvand, A., Ashouri, A., et al. (2020). Stability improvement of large-scale power systems in the presence of wind farms by employing HVDC and STATCOM based on a non-linear controller. International Journal of Electrical Power & Energy Systems, 2020, 120, p. 106021.

Debnath, Suman, Qin, Jiangchao, Bahrani, Behrooz, et al. (2014a). Operation, control, and applications of the modular multilevel converter: A review. IEEE transactions on power electronics, 2014, 30(1), p.37-53.

Debnath, Uttam Kumar, Ahmad, Iftekhar, Habibi, Daryoush, et al. (2014b). Improving battery lifetime of guidable vehicles and system reliability in the smart grid. IEEE Systems Journal, 2014, 9(3), p. 989-999.

Debouza, Mahdi, Al-Durra, Ahmed, El-Fouly, Tarek HM, et al. (2022). Survey on microgrids with flexible boundaries: Strategies, applications, and future trends. Electric Power Systems Research, 2022, 205, p. 107765.

Djoudi, Abdelhak (2016). Contribution à la Conduite Robuste d’une Éolienne Basée sur une Machine Asynchrone à Double Alimentation, Connectée au Réseau Électrique. 2016. Thèse de doctorat. Ecole Nationale Polytechnique (ENP); Laboratoire de Génie Electrique de Grenoble (G2Elab).

Djoudi, Abdelhak, Bacha, Seddik, Chekireb, Hachemi, et al. (2017). Adaptive sensorless SM-DPC of DFIG-based WECS under disturbed grid: study and experimental results. IEEE Transactions on Sustainable Energy, 2017, 9(2), p. 570-581.

Djoudi, Abdelhak, Chekireb, Hachemi, Berkouk, E. M., et al. (2014). Stability analysis of DFIG stator powers control based on sliding mode approach. In : 2014 Ninth International Conference on Ecological Vehicles and Renewable Energies (EVER). IEEE, 2014. p. 1-6.

Doostinia, Mehdi, Beheshti, Mohammad TH, Alavi, Seyed Amir, et al. (2022). Distributed event-triggered average consensus control strategy with fractional-order local controllers for DC microgrids. Electric Power Systems Research, 2022, 207, p. 107791.

Doulet Alain (1997). Réseaux de distribution – Exploitation, techniques de l’ingénieur, 1997.

Dupriez Franck-Yves (2009). Postes à haute et très haute tensions - Installations de conduite et de contrôle, techniques de l’ingénieur, 2009.

Fan, Dongming, Ren, Yi, Feng, Qiang, et al. (2021) Restoration of smart grids: Current status, challenges, and opportunities. Renewable and Sustainable Energy Reviews, 2021, 143, p. 110909.

Gandoman, Foad H., Ahmadi, Abdollah, Sharaf, Adel M., et al. (2018). Review of FACTS technologies and applications for power quality in smart grids with renewable energy systems. Renewable and sustainable energy reviews, 2018, 82, p. 502-514.

Gao, Dian-Ce & Sun, Yongjun (2016). A GA-based coordinated demand response control for building group level peak demand limiting with benefits to grid power balance. Energy and buildings, 2016, 110, p. 31-40.

Gao, Yuyang, Wang, Jianzhou, & Yang, Hufang (2022). A multi-component hybrid system based on predictability recognition and modified multi-objective optimization for ultra-short-term onshore wind speed forecasting. Renewable Energy, 2022, 188, p. 384-401.

Garcés, Alejandro (2018). On the convergence of Newton's method in power flow studies for DC microgrids. IEEE Transactions on Power Systems, 2018, 33(5), p. 5770-5777.

Garcia, Enoque Dutra, Pereira, Paulo Ricardo, Canha, Luciane Neves, et al. (2018). Grid functional blocks methodology to dynamic operation and decision making in Smart Grids. International Journal of Electrical Power & Energy Systems, 2018, 103, p. 267-276.

Ghosh, Purboday, Eisele, Scott, Dubey, Abhishek, et al. (2020a). Designing a decentralized fault-tolerant software framework for smart grids and its applications. Journal of Systems Architecture, 2020, 109, p. 101759.

Ghosh, Sudipta, Isbeih, Younes J., Bhattarai, Rojan, et al. (2020b). A dynamic coordination control architecture for reactive power capability enhancement of the DFIG-based wind power generation. IEEE Transactions on Power Systems, 2020, 35(4), p. 3051-3064.

Hakimi, Seyed Mehdi, Hajizadeh, Amin, Shafie-Khah, Miadreza, et al. (2020). Demand response and flexible management to improve microgrids energy efficiency with a high share of renewable resources. Sustainable Energy Technologies and Assessments, 2020, 42, p. 100848.

Han, Yongxia, Tang, Li, Li, Licheng, et al. (2015). Influence of lightning flashover criterion on the calculated lightning withstand level of+800 kV UHVDC transmission lines at high altitude. IEEE Transactions on Dielectrics and Electrical Insulation, 2015, 22(1), p. 185-191.

Hookoom, Tavish, Bangarigadu, Kaviraj, & Ramgolam, Yatindra Kumar (2022). Optimisation of geographically deployed PV parks for reduction of intermittency to enhance grid stability. Renewable Energy, 2022, 187, p. 1020-1036.

Hossain, Tonmoy, Hossen, Zunaid, Badal, Faisal R., et al. (2024). Next generation power inverter for grid resilience: Technology review. Heliyon, 2024.

Hosseinzadeh, Mehdi & Salmasi, Farzad Rajaei (2015). Robust optimal power management system for a hybrid AC/DC microgrid. IEEE Transactions on Sustainable Energy, 2015, 6(3), p. 675-687.

Islam, Md Monirul, Zhong, Xiao, Sun, Zeyi, et al. (2019). Real-time frequency regulation using aggregated electric vehicles in smart grid. Computers & Industrial Engineering, 2019, 134, p. 11-26.

Itiki, Rodney, Manjrekar, Madhav, Di Santo, Silvio Giuseppe, et al. (2020). Technical feasibility of Japan-Taiwan-Philippines HVdc interconnector to the Asia Pacific Super Grid. Renewable and Sustainable Energy Reviews, 2020, 133, p. 110161.

Jahanpour-Dehkordi, Mohammad, Vaez-Zadeh, Sadegh, & Mohammadi, Jafar (2019). Development of a combined control system to improve the performance of a PMSG-based wind energy conversion system under normal and grid fault conditions. IEEE Transactions on Energy Conversion, 2019, 34(3), p. 1287-1295.

Jawad, Atik, et al. (2022). A systematic approach to estimate the frequency support from large-scale PV plants in a renewable integrated grid. Energy Reports, 2022, 8, p. 940-954.

Jha, Kanchan & Shaik, Abdul Gafoor (2023). A comprehensive review of power quality mitigation in the scenario of solar PV integration into utility grid. e-Prime-Advances in Electrical Engineering, Electronics and Energy, 2023, 3, p. 100103.

Jiang, Bingnan & Fei, Yunsi (2014). Smart home in smart microgrid: A cost-effective energy ecosystem with intelligent hierarchical agents. IEEE Transactions on Smart Grid, 2014, 6(1), p. 3-13.

Kebede, Abraham Alem, Kalogiannis, Theodoros, Van Mierlo, Joeri, et al. (2022). A comprehensive review of stationary energy storage devices for large scale renewable energy sources grid integration. Renewable and Sustainable Energy Reviews, 2022, 159, p. 112213.

Klyapovskiy, Sergey, You, Shi, Cai, Hanmin, et al. (2019). Incorporate flexibility in distribution grid planning through a framework solution. International Journal of Electrical Power & Energy Systems, 2019, 111, p. 66-78.

Kumar, Kothalanka Kameswara Pavan, Soren, Nirmala, Latif, Abdul, et al. (2022). Day-Ahead DSM-Integrated Hybrid-Power-Management-Incorporated CEED of Solar Thermal/Wind/Wave/BESS System Using HFPSO. Sustainability, 2022, 14(3), p. 1169.

Lagrotteria, Giuseppe, Pietribiasi, Davide, & Marelli, Marco (2019). HVDC Cables-The technology boost. In : 2019 AEIT HVDC International Conference (AEIT HVDC). IEEE, 2019. p. 1-5.

Li, Peng, Wu, Qiuwei, Yang, Ming, et al. (2020) Distributed distributionally robust dispatch for integrated transmission-distribution systems. IEEE Transactions on Power Systems, 2020, 36(2), p. 1193-1205.

Li, Le, Zhu, Donghai, Zou, Xudong, et al. (2023). Review of frequency regulation requirements for wind power plants in international grid codes. Renewable and Sustainable Energy Reviews, 2023, 187, p. 113731.

Li, Yunfeng, Tang, Guangfu, An, Ting, et al. (1974). Power compensation control for interconnection of weak power systems by VSC-HVDC. IEEE Transactions on Power Delivery, 2016, 32(4), p. 1964-1974.

Li, Qingsheng, Bian, Ruien, Fang, Xi, et al. (2022). Fast locating method of MMC lower tube IGBT open-circuit fault based median error between the actual and the predicted value of the capacitor voltage. Energy Reports, 2022, 8, p. 559-564.

Lin, Ding-Bing, Lin, Chang-Keng, Wang, Chia-Yu, et al. (2021). Design and Analysis of Dual-Band Resonance Inductive Coupling for Wireless Power Transfer and Near-Field Wireless Communication Applications. IEEE Transactions on Components, Packaging and Manufacturing Technology, 2021, 11(11), p. 1925-1934.

Liu, Yiqi, Jin, Yonglin, Chen, Jianlong, et al. (2020). A fault-tolerant strategy of hybrid modular multilevel converter based on level adjusting method. Energy Reports, 2020, 6, p. 312-320.

Liu, Bo, Chen, Zhong, Yang, Shaohua, et al. (2022). Primary frequency regulation scheme applicable to LCC–VSC series hybrid HVDC considering AC voltage stability at receiving end. International Journal of Electrical Power & Energy Systems, 2022, 140, p. 108071.

Lu, Tianguang, Chen, Xinyu, Mcelroy, Michael B., et al. (2020). A reinforcement learning-based decision system for electricity pricing plan selection by smart grid end users. IEEE Transactions on Smart Grid, 2020, 12(3), p. 2176-2187.

Madadi, S., Mohammadi-Ivatloo, B., & Tohidi, S. (2019). Decentralized optimal multi-area generation scheduling considering renewable resources mix and dynamic tie line rating. Journal of cleaner production, 2019, 223, p. 883-896.

Mahmud, Rasel, Hoke, Andy, & Narang, David (2020). Fault Response of Distributed Energy Resources Considering the Requirements of IEEE 1547-2018. In : 2020 IEEE Power & Energy Society General Meeting (PESGM). IEEE, 2020. p. 1-5.

Majumder, Irani, Dash, P. K., & Dhar, Snehamoy (2021). Real-time Energy Management for PV–battery–wind based microgrid using on-line sequential Kernel Based Robust Random Vector Functional Link Network. Applied Soft Computing, 2021, 101, p. 107059.

Marinelli, Mattia, Sevdari, Kristian, Calearo, Lisa, et al. (2021). Frequency stability with converter-connected resources delivering fast frequency control. Electric Power Systems Research, 2021, 200, p.107473.

Mayer, Peter F., Gordon, Mark, Huang, Wen-Cheng, et al. (2022). Improving gird strength in a wide-area transmission system with grid forming inverters. IET Generation, Transmission & Distribution, 2022.

Meng, Lexuan, Shafiee, Qobad, Trecate, Giancarlo Ferrari, et al. (2017). Review on control of DC microgrids and multiple microgrid clusters. IEEE journal of emerging and selected topics in power electronics, 2017, 5(3), p. 928-948.

Mogorovic, Marko & Dujic, Drazen (2018). Sensitivity analysis of medium-frequency transformer designs for solid-state transformers. IEEE Transactions on Power Electronics, 2018, 34(9), p.8356-8367.

Mohammadi, Fazel, Rouzbehi, Kumars, Hajian, Masood, et al. (2021). HVDC circuit breakers: a comprehensive review. IEEE Transactions on Power Electronics, 2021.

Mohtashami, Sara, Pudjianto, Danny, Et Strbac, Goran (2016). Strategic distribution network planning with smart grid technologies. IEEE Transactions on Smart Grid, 2016, 8(6), p. 2656-2664.

Montoya, Oscar Danilo, Giral-Ramirez, Diego Armando, & Grisales-Norena, Luis Fernando (2022). Optimal economic-environmental dispatch in MT-HVDC systems via sine-cosine algorithm. Results in Engineering, 2022, 13, p. 100348.

Moradi, Rahmat-Allah & Davarani, Roohalamin Zeinali (2022). Introducing a new index to investigate voltage stability of power systems under actual operating conditions. International Journal of Electrical Power & Energy Systems, 2022, 136, p. 107637.

Moradi-Sepahvand, Mojtaba & Amraee, Turaj (2020). Hybrid AC/DC transmission expansion planning considering HVAC to HVDC conversion under renewable penetration. IEEE Transactions on Power Systems, 2020, 36(1), p. 579-591.

Muftau, Baruwa & Fazeli, Meghdad (2022). The Role of Virtual Synchronous Machines in Future Power Systems: A Review and Future Trends. Electric Power Systems Research, 2022, 206, p. 107775.

Muniappan, Mohan (2021). A comprehensive review of DC fault protection methods in HVDC transmission systems. Protection and Control of Modern Power Systems, 2021, 6(1), p. 1-20.

Ndlela, Nomihla W. & Davidson, Innocent E. (2022). Power Planning for a Smart Integrated African Super-Grid. In : 2022 30th Southern African Universities Power Engineering Conference (SAUPEC). IEEE, 2022. p. 1-6.

Neffati, Omnia Saidani, Sengan, Sudhakar, Thangavelu, Kalavathi Devi, et al. (2021). Migrating from traditional grid to smart grid in smart cities promoted in developing country. Sustainable Energy Technologies and Assessments, 2021, 45, p. 101125.

Netsanet, Solomon, Zheng, Dehua, Zhang, Wei, et al. (2022). Short-term PV power forecasting using variational mode decomposition integrated with Ant colony optimization and neural network. Energy Reports, 2022, 8.

Nkosi, N. R., Bansal, Ramesh C., Adefarati, T., et al. (2022). A review of small-signal stability analysis of DFIG-based wind power system. International Journal of Modelling and Simulation, 2022, p. 1-18.

Olasoji, Azeez O., Oyedokun, D. T. O., Omogoye, Samuel O., et al. (2024). Review of Frequency Response Strategies in Renewable-Dominated Power System Grids: Market Adaptations and Unit Commitment Formulation. Scientific African, 2024, p. e02357.

Owosuhi, Adedayo, Hamam, Yskandar, & Munda, Josiah (2023). Maximizing the Integration of a Battery Energy Storage System–Photovoltaic Distributed Generation for Power System Harmonic Reduction: An Overview. Energies, 2023, 16(6), p. 2549.

Pagani, Giuliano Andrea & Aiello, Marco (2013). The power grid as a complex network: a survey. Physica A: Statistical Mechanics and its Applications, 2013, 392(11), p. 2688-2700.

Pannala, Sanjeev, Patari, Niloy, Srivastava, Anurag K., et al. (2020). Effective control and management scheme for isolated and grid connected DC microgrid. IEEE Transactions on Industry Applications, 2020, 56(6), p. 6767-6780.

Park, Jae-Jun & Lee, Jae-Young (2021). Effects of SiC nanoparticles on space charge behaviors of LSR/nano-SiO2/nano-SiC composites for insulating material of HVDC cable joints. Materials Chemistry and Physics, 2021, 270, p. 124868.

Pearre, Nathaniel & Swan, Lukas (2020). Reimagining renewable electricity grid management with dispatchable generation to stabilize energy storage. Energy, 2020, 203, p. 117917.

Polanco, Ignacio & Dujic, Drazen (2021). Condition Health Monitoring of Modular Multilevel Converter Submodule Capacitors. IEEE Transactions on Power Electronics, 2021, 37(3), p. 3544-3554.

Prabhakaran, Prajof & Agarwal, Vivek (2019). Novel boost-SEPIC type interleaved DC–DC converter for mitigation of voltage imbalance in a low-voltage bipolar DC microgrid. IEEE Transactions on Industrial Electronics, 2019, 67(8), p. 6494-6504.

Pratt, Robert G., Balducci, Patrick J., Gerkensmeyer, Clint, et al. (2010). The smart grid: An estimation of the energy and CO2 benefits. Pacific Northwest National Lab. (PNNL), Richland, WA (United States), 2010.

Preda, Traian-Nicolae, Uhlen, Kjetil, & Nordgard, Dag Eirik (2012). An overview of the present grid codes for integration of distributed generation. In : CIRED 2012 Workshop: Integration of Renewables into the Distribution Grid. IET, 2012. p. 1-4.

Qais, Mohammed H., Hasanien, Hany M., & Alghuwainem, Saad (2021). A novel LMSRE-based adaptive PI control scheme for grid-integrated PMSG-based variable-speed wind turbine. International Journal of Electrical Power & Energy Systems, 2021, 125, p. 106505.

Qiang Li, Bixing Ren, Weijia Tang, et al. (2022). Analyzing the inertia of power grid systems comprising diverse conventional and renewable energy sources. Energy Reports, 2022, 8, p. 15095.

Qin, Yu, Wen, Minghao, Yin, Xianggen, et al. (2022). A novel distance protection for MMC-HVDC lines based on the equivalent capacitance voltage. International Journal of Electrical Power & Energy Systems, 2022, 137, p. 107850.

Racz, Levente, Szabo, David, Göcsei, Gabor, et al. (2018). Grid management technology for the integration of renewable energy sources into the transmission system. In : 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA). IEEE, 2018. p. 612-617.

Rafique, Zimran, Khalid, Haris M., Muyeen, S. M., et al. (2022). Bibliographic review on power system oscillations damping: An era of conventional grids and renewable energy integration. International Journal of Electrical Power & Energy Systems, 2022, 136, p. 107556.

Rana, Md Masud, Uddin, Moslem, Sarkar, Md Rasel, et al. (2023). Applications of energy storage systems in power grids with and without renewable energy integration—A comprehensive review. Journal of energy storage, 2023, 68, p. 107811.

Rey, Juan M., Jiménez-Vargas, Ivan, Vergara, Pedro P., et al. (2022). Sizing of an autonomous microgrid considering droop control. International Journal of Electrical Power & Energy Systems, 2022, 136, p. 107634.

Rotering, Niklas, Kellermann, Jan, & Moser, Albert (2021). Algorithm for simultaneous medium voltage grid planning and electric vehicle scheduling. IEEE Transactions on Smart Grid, 2021, 12(4), p.3305-3313.

Safaei, Arman, Zolfaghari, Mahdi, Gilvanejad, Mojtaba, et al. (2020). A survey on fault current limiters: Development and technical aspects. International Journal of Electrical Power & Energy Systems, 2020, 118, p. 105729.

Sambaiah, Kola Sampangi & Jayabarathi, Thangavelu (2020). Loss minimization techniques for optimal operation and planning of distribution systems: A review of different methodologies. International Transactions on Electrical Energy Systems, 2020, 30(2), p. e12230.

Sandelic, Monika, Peyghami, Saeed, Sangwongwanich, Ariya, et al. (2022). Reliability aspects in microgrid design and planning: Status and power electronics-induced challenges. Renewable and Sustainable Energy Reviews, 2022, 159, p. 112127.

Sepehrzad, Reza, Rahimi, Mostafa Khojasteh, Al-Durra, Ahmed, et al. (2022). Optimal energy management of distributed generation in micro-grid to control the voltage and frequency based on PSO-adaptive virtual impedance method. Electric Power Systems Research, 2022, 208, p. 107881.

Stai, Eleni, Wang, Cong, & Le Boudec, Jean-Yves (2020). Online Battery Storage Management via Lyapunov Optimization in Active Distribution Grids. IEEE Transactions on Control Systems Technology, 2020, 29(2), p. 672-690.

Stevanoni, Charline, De Grève, Zacharie, Vallée, François, et al. (2018). Long-term planning of connected industrial microgrids: a game theoretical approach including daily peer-to-microgrid exchanges. IEEE Transactions on Smart Grid, 2018, 10(2), p. 2245-2256.

Sun, Guangzeng, Li, Gengyin, Li, Panpan, et al. (2021). Coordinated Operation of Hydrogen-Integrated Urban Transportation and Power Distribution Networks Considering Fuel Cell Electric Vehicles. IEEE Transactions on Industry Applications, 2021.

Tahir, Ahmed, Mohamed, El-Mukhtar, Abdulhafid, EL-Faituri, et al. (2020). Grid connected wind energy system through a back-to-back converter. Computers & Electrical Engineering, 2020, 85, p. 106660.

Tehrani, Soroush Omidvar, Shahrestani, Afshin, & Yaghmaee, Mohammad Hossein (2022). Online electricity theft detection framework for large-scale smart grid data. Electric Power Systems Research, 2022, 208, p. 107895.

Tiwari, Abhishek & Pindoriya, Naran M. (2022). Automated demand response in smart distribution grid: a review on metering Infrastructure, communication technology and optimization models. Electric Power Systems Research, 2022, 206, p. 107835.

Toufani, Parinaz, Nadar, Emre, & Kocaman, Ayse Selin. Operational benefit of transforming cascade hydropower stations into pumped hydro energy storage systems. Journal of Energy Storage, 2022, vol. 51, p. 104444.

Ullah, Zahid, Mokryani, Geev, Campean, Felician, et al. (2019). Comprehensive review of VPPs planning, operation and scheduling considering the uncertainties related to renewable energy sources. IET Energy Systems Integration, 2019, 1(3), p. 147-157.

Ullah, Farhan, Zhang, Xuexia, Khan, Mansoor et al. (2024). A comprehensive review of wind power integration and energy storage technologies for modern grid frequency regulation. Heliyon, 2024.

Verma, Surabhi & Chelliah, Thanga Raj (2024). Restoration of extra-high voltage power grids through synchronous and asynchronous hydro units during blackout—A comprehensive review and case study. Electric Power Systems Research, 2024, 228, p. 110054.

Wang, Yang, Chen, Song, Yang, Mengling, et al. (2025). Low-frequency oscillation in power grids with virtual synchronous generators: A comprehensive review. Renewable and Sustainable Energy Reviews, 2025, 207, p. 114921.

Wang, Ting, Chu, Xu, Hussain, Kazmi Sayed Tassawar, et al. (2022). Fault control and line protection strategy for LVDC microgrids based on modified high-frequency-link DC solid state transformer. International Journal of Electrical Power & Energy Systems, 2022, 140, p. 108052.

Wang, Juanjuan, Huang, Menghua, Fu, Chuang, et al. (2019). A new recovery strategy of HVDC system during AC faults. IEEE Transactions on Power Delivery, 2019, 34(2), p. 486-495.

Watkiss, Jeffrey D. & Tabors, Richard D. (2022). A not-too-modest proposal for a zero-emission US transmission grid: Inter-regional planning, siting, funding & grid enhancing technologies will be key. The Electricity Journal, 2022, 35(4), p. 107091.

Wu, Yuan-Kang, Chang, Shih-Ming, & Mandal, Paras (2019). Grid-connected wind power plants: A survey on the integration requirements in modern grid codes. IEEE Transactions on Industry Applications, 2019, 55(6), p. 5584-5593.

Wu, Yuan-Kang, Lin, Jhih-Hao, & Lin, Huei-Jeng (2017). Standards and guidelines for grid-connected photovoltaic generation systems: A review and comparison. IEEE Transactions on Industry Applications, 2017, 53(4), p. 3205-3216.

Xia, Yanghong & Long, Teng (2020). Chopperless Fault Ride-Through Control for DC Microgrids. IEEE Transactions on Smart Grid, 2020, 12(2), p. 965-976.

Xiao, Qian, Mu, Yunfei, Jia, Hongjie, et al. (2022). Novel modular multilevel converter-based five-terminal MV/LV hybrid AC/DC microgrids with improved operation capability under unbalanced power distribution. Applied Energy, 2022, 306, p. 118140.

Yang, Ye, Wang, Wen, Qin, Jian, et al. (2024). Review of vehicle to grid integration to support power grid security. Energy Reports, 2024, 12, p. 2786-2800.

Yang, Jun, He, Lifu, & Fu, Siyao (2014). An improved PSO-based charging strategy of electric vehicles in electrical distribution grid. Applied Energy, 2014, 128, p. 82-92.

Yang, Fan, Ye, Lingyue, Muyeen, S. M., et al. (2022). Power management for hybrid AC/DC microgrid with multi-mode subgrid based on incremental costs. International Journal of Electrical Power & Energy Systems, 2022, 138, p. 107887.

Yu, Shiwei, Zhou, Shuangshuang, & Qin, Junpeng (2022). Layout optimization of China’s power transmission lines for renewable power integration considering flexible resources and grid stability. International Journal of Electrical Power & Energy Systems, 2022, 135, p. 107507.

Yu, Chang, Zhou, Hong, Lu, Xiaoqing, et al. (2020). Distributed optimal synchronization rate control for ac microgrids under event-triggered mechanism. IEEE Transactions on Power Systems, 2020, 36(3), p. 1780-1793.

Zahira, R., Lakshmi, D., Ezhilarasi, G., et al. (2022). Stand-alone microgrid concept for rural electrification: a review. Residential Microgrids and Rural Electrifications, 2022, p. 109-130.

Zeb, Kamran, Islam, Saif Ul, Khan, Imran, et al. (2022). Faults and Fault Ride Through strategies for grid-connected photovoltaic system: A comprehensive review. Renewable and Sustainable Energy Reviews, 2022, 158, p. 112125.

Zhang, J. W., Wang, Y. H., Liu, G. C., et al. (2022). A review of control strategies for flywheel energy storage system and a case study with matrix converter. Energy Reports, 2022, 8, p. 3948-3963.

Zhang, H. L., Baeyens, Jan, Degrève, J., et al. (2013). Concentrated solar power plants: Review and design methodology. Renewable and sustainable energy reviews, 2013, 22, p. 466-481.

Zhao, Haoran, Lin, Zhongwei, Wu, Qiuwei, et al. (2020a). Model predictive control based coordinated control of multi-terminal HVDC for enhanced frequency oscillation damping. International Journal of Electrical Power & Energy Systems, 2020, vol. 123, p. 106328.

Zhao, Shuai, Li, Fenghua, Li, Hongwei, et al. (2020b). Smart and practical privacy-preserving data aggregation for fog-based smart grids. IEEE Transactions on Information Forensics and Security, 2020, vol. 16, p. 521-536.

Websites

Grid code, https://www.nationalgrid.com/

IEC, Technical committees and subcommittees, http://www.iec.ch

NF, https://fr.wikipedia.org/wiki/Liste_de_normes_NF

RTE, https://www.services-rte.fr/fr/home.html

Wikipedia, Wide-area synchronous grid, https://en.wikipedia.org/wiki/Wide_area_synchronous_grid

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