Academic literature on the topic 'Telecommunication Infrastructure Cost saving Solar energy'

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Journal articles on the topic "Telecommunication Infrastructure Cost saving Solar energy"

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Isreal, O. Olaniyi, and S. N. &. Tanimu G. I. Mumah. "THE APPLICATION OF SOLAR ENERGY IN POWERING TELECOMMUNICATION TOWERS." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 28–43. https://doi.org/10.5281/zenodo.15031571.

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<em>This paper focuses on the implementation of solar-powered network mast systems in Ota, Ogun State, Nigeria. It specifically investigates downtime, power consumption, and uptime of 2G and 4G towers in the region, highlighting the importance of maintaining high uptime to ensure service reliability. The findings in this work are important and justified because formal evaluations of energy and cost-saving opportunities presented by the use of renewable energy within the telecommunications industry is scarcely carried out. By focusing on energy consumption patterns and system downtime, the pape
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Chinedu Alex Ezeigweneme, Aniekan Akpan Umoh, Valentine Ikenna Ilojianya, and Abimbola Oluwatoyin Adegbite. "TELECOMMUNICATIONS ENERGY EFFICIENCY: OPTIMIZING NETWORK INFRASTRUCTURE FOR SUSTAINABILITY." Computer Science & IT Research Journal 5, no. 1 (2024): 26–40. http://dx.doi.org/10.51594/csitrj.v5i1.700.

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The global telecommunications industry is facing significant challenges due to the rapid growth in data traffic and the growing environmental concerns associated with these networks. This paper explores strategies for optimizing network design and operation towards a greener, more sustainable future. Key challenges include the environmental impact of energy consumption, which accounts for 2-3% of global electricity consumption. The paper focuses on optimizing network design and operation, exploring energy-saving techniques and innovations, and revealing advanced network management optimization
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Abdulmula, Ahmed, Kamaruzzaman Sopian, and Lim Chin Haw. "Power Consumption Modeling based on Real-Time Data Traffic for Balancing Power Supply and Energy Demand to Develop Green Telecommunication Tower: A Case Study." Engineering, Technology & Applied Science Research 9, no. 3 (2019): 4159–64. https://doi.org/10.5281/zenodo.3249085.

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Green telecommunication tower primarily depends on renewable energy and energy efficiency technologies. This study presents a power consumption model to estimate the load demand of a telecommunication tower (TT) to improve energy efficiency. The method is based on field measurements of realtime data traffic load of the entire operated macrocell telecommunication tower to balance power supply and energy demand. This advanced method is investigated using HOMER Pro simulation and compared with a widely accepted technique called overall peak load method for a chosen case study. The comparison simu
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Mohd Noor, Mohamad Shahrizal, Zuraimy Adzis, Yanuar Z. Arief, and Nor Asiah Muhamad. "Feasibility Analysis of Stand-Alone Renewable Energy Supply for Telecommunication Tower Using Homer." Applied Mechanics and Materials 818 (January 2016): 223–27. http://dx.doi.org/10.4028/www.scientific.net/amm.818.223.

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This paper deals with the importance and need of using solar photovoltaic (PV) system as a stand-alone system instead of diesel generators for electrical energy supply of a communication tower owned by Celcom (Malaysia) Berhad at G0422 Batu 18, Ulu Langat, Selangor, Malaysia. It can be considered as a commercial renewable energy application in Malaysia, addressing the potential and possibility of adopting solar energy resources, particularly for sectors with high energy consumption. The electric power generation system, which consists of solar PV system hybrid with diesel generator, has the ab
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Saragih, Yuliarman, Resi Sujiwo Bijokangko, Tumpal Gultom, et al. "Empowerment of solar renewable energy and low-cost interlocal telecommunication system for economic development of Panmutih Beach Fishermen Villages." BIS Energy and Engineering 2 (May 31, 2025): V225021. https://doi.org/10.31603/biseeng.205.

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This research aims to develop a solar power generation and telecommunication system based on LORA (Long Range) technology to support the economic development of fishing villages in Panmutih Beach, Kupang Regency, Nusa Tenggara Timur (NTT). The region faces challenges of limited electricity access and reliance on costly, non-renewable fossil fuels. Utilizing solar energy, this study proposes an energy cooperative model enabling fishermen to exchange fish catches for electricity, bypassing the need for internet connectivity. The research begins with an assessment of the region’s solar energy pot
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Majoh Kuetche, Christelle Flora, David Tsuanyo, and Armand Fopah-Lele. "Analysis of Hybrid Energy Systems for Telecommunications Equipment: A Case Study in Buea Cameroon." E3S Web of Conferences 354 (2022): 02007. http://dx.doi.org/10.1051/e3sconf/202235402007.

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The considerable expansion of telecommunications infrastructure in non-electrified areas has led to massive consumption of non-renewable energy sources by diesel generators. The promotion of renewable energy technologies as an alternative to these diesel generators is until now confronted with the problems of Capital Expenditures and system reliability. The hybridization of fossil fuels with renewable energies would make it possible to find a better quality/cost/environment ratio for the supply of off-grid telecommunication base stations (BSs).This paper presents the analyses of eight differen
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O. C., Odudu. "Improving Hybrid Power Supply System for Telecommunication Service Providers in Nigeria." International Journal for Research in Applied Science and Engineering Technology 9, no. 12 (2021): 1493–500. http://dx.doi.org/10.22214/ijraset.2021.39075.

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Abstract: The aim of this research is to use a combination of renewable energy sources and conventional diesel generator to model a cost effective, alternative energy source for telecommunication base stations in Nigeria. Actually, this study uses various theoretical and mathematical modelling tools, such as, Mat lab Simulink and HOMER software. In the same way, the study references several Base Transceiver Stations (BTS) from gsm providers at select geographical locations in Rivers State. The study references BTS infrastructure in locations such as Ogoni, Port Harcourt and Emohua. These locat
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Allen, Oluwatobi, and Oghenekevwe Kofi. "The Importance of Renewable Energy for Telecommunications Base Stations." International Journal of Research and Innovation in Social Science VIII, no. VII (2024): 3363–69. http://dx.doi.org/10.47772/ijriss.2024.807256.

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Installations of telecommunications base stations necessary to address the surging demand for new services are traditionally powered by conventional energy sources, which results in massive electricity consumption and CO2 emissions as a portion. In this paper we assess the benefits of adopting renewable energy resources to make telecommunications network greener and cost-efficient, tacking “3E” combination-energy security, environmental sustainability, economic development. The study first reviews the seemingly insatiable demand for energy in telecommunications filtering its historical use aga
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Vujović, Ivan, and Željko Đurišić. "Idejno rešenje regionalnog Data Centra kod Beograda napajanog iz obnovljivih izvora energije." Energija, Ekonomija, Ekologija 23, no. 3 (2021): 10–17. http://dx.doi.org/10.46793/eee21-3.10v.

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Telecommunications and computer equipment centralisation trends for the purpose of achieving economic benefits, usage of technological innovations and new technical solutions implementation leads to the requirements for building bigger Data Centres (DCs). An increase in the size of the DC facility i.e. the number of racks inside occupied with equipment and the number of devices that enables the proper functioning of that equipment leads to necessarily power energy requirements increasing for power supply. For the DCs that require a large amount of energy, the building of their own, usually ren
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Kantharia, Mohan. "SMART CITY TO INTELLIGENT HOUSES: FUTURISTIC SUSTAINABILITY APPROACH." International Journal of Engineering Technologies and Management Research 5, no. 2 (2020): 148–52. http://dx.doi.org/10.29121/ijetmr.v5.i2.2018.638.

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Human comfort is the key factor in all kind of developments, for this natural resources are exploitation is being continued. Though energy production have increased tremendously, but population growth rate is more than the development rate. Hence there is always scarcity of the electricity, safe drinking water. Intelligent houses with smart traffic, smart irrigation can make smart city and provide some solutions for these problems. In these review paper solutions of some common society problems with sensor based automation in infrastructure has been discussed. Major areas of overview are intel
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Book chapters on the topic "Telecommunication Infrastructure Cost saving Solar energy"

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Meti, Ashok, and Swapnil Malipatil. "Enhancing seismic resilience of telecommunication tower: By linear static approach for without viscous damper." In Deep Science Publishing. Deep Science Publishing, 2024. http://dx.doi.org/10.70593/978-81-981367-9-4_2.

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While telecommunication towers are crucial components of modern telecommunication networks, their capability to withstand seismic loading is still a major issue, especially in earthquake-prone areas. Traditional seismic performance enhancement methods usually aim at the use of viscous dampers to dissipate ground motions. Nevertheless, the installation and maintenance of such dampers can be arduous and thus, expensive procedures. A linear static analysis allows the use of alternate strategies for the seismic resilience of towers that includes increases in structural stiffness, bracing systems,
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Vustelamuri, Padmavathi, and Soumya Mishra. "Hydrogen Fuel Cells and Green Energy Integration for Sustainable Medical Equipment Powering." In Renewable Energy Solutions for Smart Healthcare Infrastructure Sustainable Medical Facilities, 2025th ed. RADemics Research Institute, 2025. https://doi.org/10.71443/9789349552920-07.

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The growing emphasis on clean energy solutions for critical infrastructure has positioned hydrogen fuel cells as a transformative technology for sustainable power delivery in healthcare systems. As medical facilities increasingly prioritize uninterrupted and emission-free electricity for life-saving equipment, the integration of hydrogen-based power systems with renewable energy sources presents a resilient and environmentally sound alternative to conventional backup solutions. This chapter explores the role of hydrogen fuel cells in powering medical equipment, with a focus on system design, e
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Conference papers on the topic "Telecommunication Infrastructure Cost saving Solar energy"

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Goodbody, Stephen A. "Successfully Eliminating the Barriers to Solar Photovoltaic Implementation." In ASME 2008 2nd International Conference on Energy Sustainability collocated with the Heat Transfer, Fluids Engineering, and 3rd Energy Nanotechnology Conferences. ASMEDC, 2008. http://dx.doi.org/10.1115/es2008-54247.

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For the majority of commercial and industrial facilities in the United States, electrical power represents a significant portion of their total operating costs and a cost over which they have little or no control. The cost of electrical power has risen dramatically during the past three years, and is projected to continue to increase due to uncertainties in global fuel supply, production investments necessary to meet increasing demand, increased maintenance and repair costs of aging production and transmission infrastructure, the decommissioning and remediation of life-expired generating facil
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Khan, Muhammad Affan Uddin Ali, Syed Imran Ali, Shaine Muhammad Ali Lalji, Aliza Hussain, Wajih Hasan, and Munira Akhtar Khan. "Transforming Depleted Oil and Gas Wells into Geothermal Energy Assets: A Sustainable Vision for Energy Transition." In GOTECH. SPE, 2025. https://doi.org/10.2118/224739-ms.

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Abstract Geothermal energy is increasingly recognized as a vital renewable energy source with significant economic and environmental benefits, contributing to the global transition to cleaner energy. This paper explores the economic feasibility and environmental impact of geothermal energy development, focusing on the high initial costs associated with drilling and infrastructure, which are offset by low operational costs and long-term sustainability. While geothermal energy projects incur substantial upfront investments, particularly in drilling, they offer a reliable and low-maintenance ener
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