Innovations in Smart Grids for Rural Electrification
-
DOI:
https://doi.org/10.67228/30715628/IJMIET-2021PII1U7GPublished 07-05-2021
Smart Grid, Rural Electrification, Microgrids, Renewable Energy Integration, Energy Management Systems, Smart Metering Issue
Section
ArticlesHow to Cite
[1]S. B. Reddy, “Innovations in Smart Grids for Rural Electrification”, ijmiet, vol. 4, no. 2, pp. 01–13, Jul. 2021, doi: 10.67228/30715628/IJMIET-2021PII1U7G.Abstract
Electrification of rural areas has become a burning issue in most developing and underdeveloped nations because of geographical inaccessibility, low population density, high infrastructure expenses, and un-economical viability of traditional grid expansion. The latest innovations in the fields of smart grids have been introduced as radical towards resolving such issues as they will allow delivering power efficiently, reliably, and sustainably to rural areas populations. The current paper is a thorough study of the smart grid innovations in rural electrification well focusing on the decentralized generation, intelligent control system, sophisticated communication infrastructure, and data-driven energy management approaches. The proposed model combines information on renewable energy sources like solar photovoltaic and wind systems and energy storage systems, smart meters, demand response systems, and microgrid designs and structures in order to improve system stability and reliability. Extensive literature review identifies the approaches, technological gaps and tends of rural smart grid implementation. In the methodology section, layered smart grid architecture is described, mathematical modelling of the power flow and energy management, and an algorithm methodology employed in optimizing the distribution of resources. The key indicators that are used to evaluate performance include reliability, energy efficiency, voltage stability and cost effectiveness. The findings prove that Rural electrification with the help of smart grids is a more effective and efficient way to ensure the quality of power, lower the cost of operation, and contribute to the socio-economic progress. Future research directions and policy implications of the implementation of smart grids on a large scale in rural areas are also identified in the conclusion of the paper.
References
[1] A. Chaurey and T. C. Kandpal, “Assessment and evaluation of PV based decentralized rural electrification: An overview,” Renewable and Sustainable Energy Reviews, vol. 14, no. 8, pp. 2266–2278, 2010.
[2] B. K. Sovacool, “Energy poverty, affordability, and justice in developing countries,” Energy Policy, vol. 39, no. 5, pp. 2722–2736, 2011.
[3] S. Bhattacharyya, “Review of alternative methodologies for analysing off-grid electricity supply,” Renewable and Sustainable Energy Reviews, vol. 16, no. 1, pp. 677–694, 2012.
[4] J. A. Peças Lopes, C. L. Moreira, and A. G. Madureira, “Defining control strategies for microgrids islanded operation,” IEEE Transactions on Power Systems, vol. 21, no. 2, pp. 916–924, 2006.
[5] N. Hatziargyriou (Ed.), Microgrids: Architectures and Control, Wiley-IEEE Press, 2014.
[6] M. Shahidehpour, H. Yamin, and Z. Li, Market Operations in Electric Power Systems, Wiley-IEEE Press, 2002.
[7] H. Lund, “Renewable energy strategies for sustainable development,” Energy, vol. 32, no. 6, pp. 912–919, 2007.
[8] R. H. Lasseter, “Microgrids,” in Proceedings of the IEEE Power Engineering Society Winter Meeting, 2002, pp. 305–308.
[9] T. Ackermann, G. Andersson, and L. Söder, “Distributed generation: A definition,” Electric Power Systems Research, vol. 57, no. 3, pp. 195–204, 2001.
[10] A. Khaligh and Z. Li, “Battery, ultracapacitor, fuel cell, and hybrid energy storage systems for electric, hybrid electric, fuel cell, and plug-in hybrid electric vehicles,” IEEE Transactions on Vehicular Technology, vol. 59, no. 6, pp. 2806–2814, 2010.
[11] M. A. Hannan, M. M. Hoque, A. Mohamed, and A. Ayob, “Review of energy storage systems for electric vehicle applications,” Renewable and Sustainable Energy Reviews, vol. 69, pp. 771–789, 2017.
[12] S. Mohsenian-Rad, V. W. S. Wong, J. Jatskevich, R. Schober, and A. Leon-Garcia, “Autonomous demand-side management based on game-theoretic energy consumption scheduling,” IEEE Transactions on Smart Grid, vol. 1, no. 3, pp. 320–331, 2010.
[13] P. Palensky and D. Dietrich, “Demand side management: Demand response, intelligent energy systems, and smart loads,” IEEE Transactions on Industrial Informatics, vol. 7, no. 3, pp. 381–388, 2011.
[14] A. Foley et al., “A review of wave energy development in Ireland,” Renewable and Sustainable Energy Reviews, vol. 14, no. 1, pp. 217–227, 2010.
[15] S. Singh, M. Singh, and S. C. Kaushik, “Feasibility study of an islanded microgrid in rural area consisting of PV, wind, biomass and battery energy storage system,” Energy Conversion and Management, vol. 128, pp. 178–190, 2016.
Downloads
How to Cite
[1]S. B. Reddy, “Innovations in Smart Grids for Rural Electrification”, ijmiet, vol. 4, no. 2, pp. 01–13, Jul. 2021, doi: 10.67228/30715628/IJMIET-2021PII1U7G.
Most read articles by the same author(s)
- Dr. Suresh Babu Reddy, Autonomous Vehicle Navigation Using Sensor Fusion Algorithms , International Journal of Modern Innovations and Emerging Trends: Vol. 1 No. 2 (2018)
- Dr. Suresh Babu Reddy, Dr. Anita Verma, Resource Allocation Strategies for Maintaining High Levels of Client Engagement in SaaS Models , International Journal of Modern Innovations and Emerging Trends: Vol. 3 No. 1 (2020)
Similar Articles
- Isabella Franklin, K. Sathya Narayanan, Emerging Technological Innovations Shaping the Future of Smart Cities , International Journal of Modern Innovations and Emerging Trends: Vol. 9 No. 1 (2026)
- Peter Wilson, Olivia Martin, Digital Supply Chain Visibility Using Blockchain and Iot , International Journal of Modern Innovations and Emerging Trends: Vol. 1 No. 1 (2018)
- Dr. K. Balasubramanian, Integrating Robotics in Modern Warehouse Logistics , International Journal of Modern Innovations and Emerging Trends: Vol. 3 No. 2 (2020)
- Alan Bundy, Edge Computing Architectures for Ultra-Low Latency Applications , International Journal of Modern Innovations and Emerging Trends: Vol. 8 No. 1 (2025)
- Dr. Lakshmi Narayanan, Utilizing Resource Management Tools for Improving Client Relationship Management (CRM) Systems , International Journal of Modern Innovations and Emerging Trends: Vol. 6 No. 1 (2023)
- Dr. Harish Patel, Dr. Geetha Ramasamy, Next-Generation Battery Technologies for Electric Vehicles , International Journal of Modern Innovations and Emerging Trends: Vol. 3 No. 1 (2020)
- Dr. Lucas Martin, Dr. Chloe Bernard, Innovations in Smart Retail Using Real-Time Analytics , International Journal of Modern Innovations and Emerging Trends: Vol. 3 No. 2 (2020)
- Dr. Tendai Chikore, AI-Based Personalized Healthcare Recommendation Systems , International Journal of Modern Innovations and Emerging Trends: Vol. 1 No. 1 (2018)
- Carl Adam Petri, AI-Integrated Smart Farming Solutions for Crop Enhancement , International Journal of Modern Innovations and Emerging Trends: Vol. 8 No. 2 (2025)
- Dr. Jana Novaková, Adi Lestari, Blockchain-Enabled Identity Systems for Secure e-Governance , International Journal of Modern Innovations and Emerging Trends: Vol. 9 No. 1 (2026)
You may also start an advanced similarity search for this article.