Optimization Analysis of Sustainable Solar Power System for Mobile Communication Systems
作者机构:Department of Electrical EngineeringCollege of Electronics and Information EngineeringSejong University209 Neungdong-roGwangjin-guSeoul05006Korea Department of Electrical and Electronics EngineeringSri Venkateswara College of EngineeringSriprumbudurChennai602117India Department of Power Electronics and Energy ConversionElectronics Research InstituteGiza12622Egypt Department of PhysicsFaculty of ScienceBeni-Suef UniversityBeni-Suef62511Egypt Department of Energy System EngineeringChung-Ang University84 Heukseok-roDongjak-guSeoul156-756Korea Department of Electrical EngineeringHamdard University Islamabad44000Pakistan Department of Electrical and Electronics EngineeringIstanbul Gelisim UniversityAvcılar34310Turkey
出 版 物:《Computers, Materials & Continua》 (计算机、材料和连续体(英文))
年 卷 期:2022年第71卷第5期
页 面:3243-3255页
核心收录:
学科分类:0809[工学-电子科学与技术(可授工学、理学学位)] 08[工学]
基 金:This research was supported by the Korea Electric Power Corporation(Grant number:R19XO01-37) This research was also supported by Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Education(2020R1A2C1004743)
主 题:Wireless networks green wireless networks green communications sustainability OPEX
摘 要:Cellular mobile technology has witnessed tremendous growth in recent *** of the challenges facing the operators to extend the coverage of the networks to meet the rising demand for cellular mobile services is the power sources used to supply cellular towers with energy,especially in ***,switch from the conventional sources of energy to a greener and sustainable power model became a target of the academic and industrial sectors in many fields;one of these important fields is the telecommunication ***,this study aims to find the optimum sizing and technoeconomic investigation of a solar photovoltaic scheme to deploy cellular mobile technology infrastructure cleanly and *** optimal solarpowered system is designed by employing the energy-balance procedures of the HOMER software *** problem objective is considered in terms of cost,but the energy system is constrained to meet the power demand *** simulations were performed to determine the optimum sizing,performance and monetary cost of the power system,using long-term meteorological datasets for a case study site with defined longitude(31◦25E)and latitude(30◦06N).From the observed results,the total net present cost(NPC)of the proposed system is$28,***,these outcomes can provide profound economic,technical,and ecological benefits to cellular *** also ensures a sizeable reduction in greenhouse gas that supports sustainable green wireless network(WN)deployment in remote areas.