Rural electrification using renewable energy resources and its environmental impact assessment

被引:0
作者
Md Mustafa Kamal
Arshad Mohammad
Imtiaz Ashraf
Eugene Fernandez
机构
[1] Aligarh Muslim University,Department of Electrical Engineering
[2] Indian Institute of Technology,Department of Electrical Engineering
来源
Environmental Science and Pollution Research | 2022年 / 29卷
关键词
Energy model; Optimization; Greenhouse gasses; Renewable energy resources; Rural electrification; Environmental effect;
D O I
暂无
中图分类号
学科分类号
摘要
Integrating a group of generation units and loads into a microgrid improves power supply sustainability, decreases greenhouse gas emissions, and lowers generating costs. However, this integration necessitates the development of an improved energy management system. The microgrid distributes electricity among energy resources to optimize either the generating cost or the quantity of greenhouse gas emissions, or both at the same time. The low-cost energy supply requires a precise cost model for each energy component. This article aims to develop the generation cost model that incorporates renewable energy to lower the total operating cost and curb greenhouse gas emissions. The suggested optimization problem deals with the low-cost energy solution for the rural area of India. The proposed system used particle swarm optimization, a global optimization strategy, in the study. Minimum cost and emission scenarios are objective issues while operating with tolerable emissions, and costs are multi-objective of the present study. The outcomes of the scenarios are used to provide viable optimized solutions to multi-objective problems using the optimization technique. Finally, a battery bank’s potential to compensate for generation shortages while minimizing emissions is being studied. The study is performed on a microgrid comprising photovoltaic PV, diesel generator, battery, wind turbine, and an Indian rural scenario load profile. The finding suggested that the optimal configuration has a total net cost of operation is $59,195.61. The per-unit cost of energy is 0.20 $/kWh with a saving of CO2\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${{CO}}_{2}$$\end{document} emission is 5994 kg/year. This modular feasibility analysis demonstrates that utilizing a hybrid energy system to power the planning is cost-effective. This research is anticipated to aid rural communities and other stakeholders in making well-informed decisions throughout the planning stages of similar initiatives.
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页码:86562 / 86579
页数:17
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[1]  
Acharya S(2022)Analytic assessment of renewable potential in Northeast India and impact of their exploitation on environment and economy Environ Sci Pollut Res 29 29704-29718
[2]  
Al Garni HZ(2018)Optimal design and analysis of grid-connected photovoltaic under different tracking systems using HOMER Energy Convers Manag 155 42-57
[3]  
Awasthi A(2018)Climate mitigation, low-carbon society, and dynamism of educational institutes in a low-income country Environ Sci Pollut Res 25 3775-3784
[4]  
Ramli MAM(2017)Distribution generation by photovoltaic and diesel generator systems: energy management and size optimization by a new approach for a stand-alone application Energy 122 542-551
[5]  
Ali G(2020)Techno-economic analysis of grid-integrated PV/wind systems for electricity reliability enhancement in Ethiopian industrial park Sustain Cities Soc 53 101915-2237
[6]  
Anbren S(2020)Evaluating the performance of carbon tax on green technology: evidence from India Environ Sci Pollut Res 27 2226-142
[7]  
Bashir MK(2020)A rule-based energy management scheme for long-term optimal capacity planning of grid-independent microgrid optimized by multi-objective grasshopper optimization algorithm Energy Convers Manag 221 113161-40928
[8]  
Askarzadeh A(2020)Optimal sizing and techno-economic analysis of grid-connected nanogrid for tropical climates of the Savannah Sustain Cities Soc 52 101824-111
[9]  
Azerefegn TM(2018)Techno-economic analysis of the lithium-ion and lead-acid battery in microgrid systems Energy Convers Manag 177 122-32930
[10]  
Bhandari R(2021)Investigating the dynamic linkages among carbon dioxide emissions, economic growth, and renewable and non-renewable energy consumption: evidence from developing countries Environ Sci Pollut Res 28 40917-366