Hybrid Solar Energy System as Alternative Power Supply in Mindanao State University-Sulu: Impact on Quality Services

2021 ◽  
Vol 4 (2) ◽  
pp. 391-406
Author(s):  
Maryjoy A. Busaña

To ascertain the hybrid solar energy system as alternative power supply in Mindanao State University-Sulu and its  impact to quality service, This study aims to investigate the extent of benefits of hybrid solar power in terms of a) cost, b) availability, and c.)sustainability, moreover, it also investigate its preferability of hybrid solar power over traditional electricity, while it identifies the significant impact of Hybrid Solar power as a source of power supply to the quality of service of MSU-Sulu Administration, significant correlation between the preferability level and the impact of Hybrid Solar power. The quantitative data was analysed and interpreted using statistical tools weighted arithmetic mean and correlation and for qualitative data which is the interview, thematic analysis was utilized. The researcher was able to analyzed the gathered data through Mix Method for the preferability of hybrid solar power over traditional electricity and hybrid solar power its impact to quality service were obtained. The respondents of this study were the forty eight (48) teaching personnel and thirty eight (38) non-teaching personnel and an expert on solar panels. Purposive and random Sampling was used in the selection of the respondents. The instruments of the study were Guided Interview Questions and survey questionnaire. The qualitative data were obtained from the interview by the expert on solar panels. The quantitative data checklist questionnaire were obtained personally by the researcher and validated by three (3) Experts. The study revealed that the use of hybrid solar energy system as an alternative power supply has an impact to the quality service of Mindanao State University-Sulu, thus, both teaching and non-teaching personnel preferred the use of Hybrid solar energy system over traditional electricity. The extent of benefits of hybrid solar power in term costs is feasible for the costs of its installation will be treated as an investment for its 5 or more years of use of its naturally free electric power supply. In the long run, the Hybrid Solar energy will ensure a return of investment in its electric consumption. In terms of availability, it is guaranteed available by the partner company and in terms of its sustainability, it can support the entire university for 5 year’s or more with quality solar equipment that it turns, the university will be able to provide quality service to its clientele. Hence, the following are the recommendations of the study. on research agenda, the school administrator should consider this study as beneficial to the school, the adaption of the Hybrid Solar Energy power to the electric supply of the Mindanao State University-Sulu, Quality service entails the need of uninterrupted power supply and this hybrid solar energy power is the solution, and Quality service rendered by both teaching and non-teaching personnel would be maximized with the help of this hybrid power energy system. On this note, the following are the recommended policy: School administrator must look into ways on the adaptation of the hybrid power energy system into the university, Rigorous planning and careful assessment on the applicability of hybrid solar energy power on each college as well as administrative offices, pioneered application among key services provider of the university like registrar and cashier’s office, gradual use of hybrid Solar Energy power among colleges, mainly on the enrolment process to the releasing of grades,  and School administrator should conduct a seminar to its constituents on the cognizance on the benefits of using solar power and raising an awareness on how to conserve Energy and use it in a proper way.

2018 ◽  
Vol 3 (1) ◽  
pp. 690
Author(s):  
Angel Alejandro Rodriguez Aya ◽  
John Alejandro Figueredo Luna ◽  
Juan Alejandro Chica García

This research presents the preliminary results of the research entitled Design and implementation of a fixed and mobile photovoltaic system to capture the solar power, determining the cost-benefit ratio for the Acacías CEAD, a study that will determine the solar power that affects the University National Open and Distance - UNAD of the municipality of Acacías and deliver a study to determine the solar radiation of the area, in order to verify the potentiality and feasibility of installing solar energy systems in the University and nearby areas; It has been possible to determine that solar power in the area per m² is close to 45% of that measured by IDEAM (Hydrology, Meteorology and Environmental Studies Institute in Colombia), with a potential absorption of 331W per day in an area of 1m², which makes feasible a possible implementation of a solar energy system. Keywords: Solar power, solar energy, solar panel, energy efficiency.


2017 ◽  
Vol 5 (3) ◽  
pp. 320-324
Author(s):  
Pradeep Bharti ◽  
A.K. Sharma

In  this paper , we are analyzed about the solar power with grid connection  using of various component such as PV Cells battery inverter, and grid power connection  , in this way we are connected the grid power and solar power , after that finally we are analyzed the power quality of output with the help of various devices.


Author(s):  
Bo K. Yesel ◽  
Jonathan J. Eslinger ◽  
Michael Nord ◽  
Daisy Flora Selvaraj ◽  
Prakash Ranganathan

2004 ◽  
Vol 126 (1) ◽  
pp. 676-679 ◽  
Author(s):  
Dan Dye ◽  
Byard Wood ◽  
Lewis Fraas ◽  
Jeff Muhs

A full-spectrum solar energy system is being designed by a research team lead by Oak Ridge National Laboratory and the University of Nevada, Reno. [1,2] The benchmark collector/receiver and prototype thermophotovoltaic (TPV) array have been built [3], so the work performed here is to match the two systems together for optimal performance. It is shown that a hollow, rectangular-shaped non-imaging (NI) device only 23 cm long can effectively distribute the IR flux incident on the TPV array mounted behind the secondary mirror. Results of the ray-tracing analysis of the different systems tested are presented.


2020 ◽  
Vol 6 (2) ◽  
pp. 76-85
Author(s):  
Nur Hafeizza Ramly

Emergency Portable Solar Power Supply is a product which uses renewable energy sources as the main sources of electricity which is sunlight. According to World Energy Outlook (WEO) 2018, the percentage of renewable energy used as a source to generate electricity grew by 17% higher than the 10-year average and solar energy contributed more than a third despite accounting for just 21% of the total. The main objective of this product is to create clean energy emergency portable solar power supply by using non-conventional energy source and green technology which can be used during any contingency happens and also for the usage for rural area with non-electric power source. This project was started by calculation of the system design for determining the characteristic that need to be used for all components that related to this solar system such as battery, charge controller, solar panel and etc. The overall system of this portable solar power supply is 12V system. This design can last for 2 days without charging and the minimum hour for the battery to be charged is around 6 hours. This product can supply maximum up to 100W of DC and AC power supply. In a conclusion, this product is very portable and greener product the usage of solar energy as the main sources to generate electricity.


Author(s):  
Vaibhav Satpute ◽  
Anand Jawanjal

Sun provides abundant source of renewable energy that can be integrated with the electrical grid. Climate change issues have compelled policy makers to look into various ways to reduce carbon footprint and use green, renewable energy. Solar power, along with other alternative sources for energy, is quite popular these days. Talking about Solar, the primary disadvantage of solar power is that it obviously cannot be created during the night and power generated is also reduced during times of cloud cover. Energy Storage is a flexible asset that provides unprecedented flexibility in grid optimization. Cost effective solar energy storage methods are urgently needed due to the increased demand for solar power and due to its variability. But in today’s scenario, energy storage systems are not commercially economic for all customers, and that to more work needs to be done by industry, government, and regulators to support the continuing cost reductions. It is expected that the Energy Storage costs would slide to 41% by 2020.The value that solar and storage can together add to the energy system is leading to a more efficient, cleaner, and more secure future. However, solar energy storage becomes critical when unsteady sources of energy provide. Thus, affordable energy storage system along with the cheaper Solar energy would be lethal combination making an ultimate Game Changer for the Power Industry and Sustainability.


2018 ◽  
Vol 4 (1) ◽  
pp. 57
Author(s):  
Siti Jamiah Tun Jamil ◽  
Nur Azfahani Ahmad ◽  
Jasrul Jamian Jasiman

The Malaysian Electricity Supply Industry Outlook 2016 has highlighted that Malaysia’s electricity supply infrastructure is among the best in South East Asia. However, upon flood disaster, the national power supply is easily interrupted and electricity cannot be supplied efficiently to the people, especially for the locals in the rural areas. One of the significant groups affected during flood in the rural areas comes from the FELDA communities. These people are usually left vulnerable in a blackout during flood disaster. Therefore, it is significant to have alternative power supply that can be used as a supporting energy relief during the disaster. One of the potential alternatives energy that can supplement electricity during blackout upon flood disaster comes from solar energy. By using solar energy, electricity can be generated and stored ahead of time at the flood relief center. This flood relief strategies is supported by the National Security Council (KMN) and the Ministry of Rural and Regional Development of Malaysia part of the national flood disaster blue print agenda. Therefore, this research aimed to explore the potential of using solar-generated electricity in helping the FELDA communities in the rural area in facing power disruption during flood disaster. The focus will be on presenting the overview of FELDA flood areas in Malaysia and provide discussion on the research methodology obtained to overcome the issue. 


TERANG ◽  
2020 ◽  
Vol 3 (1) ◽  
pp. 100-105
Author(s):  
Septianissa Azzahra ◽  
Samsurizal Samsurizal ◽  
Christiono Christiono ◽  
Miftahul Fikri

Renewable energy, especially solar power plants (PLTS), is now begin to develop their applications to many forms, such as: installed as a home power supply, power supply for buildings, and also as power supply for street lighting (solar street light). Madrasah Aliyah Al-Khairiyah Rancranji In this regard, as a partner, demand a socialization and a study for their students to understand more about renewable energy topics especially about solar energy. And the limited electric power is also one of the problems for this school. Therefore, PKM activity in Madrasah Aliyah Al-Khairiyah Rancaranji is a solution given by the PKM team by providing learning and an introduction of renewable energy as well as workshop and installation of PLTS and road lamps based on solar cell. Results gained after the implementation of this activity are students understand and knows about the renewable energy, its application and its benefits in daily life.


2020 ◽  
Vol 6 (1) ◽  
pp. 005-011
Author(s):  
Armin Sofijan

Solar energy is one of the alternative energy that is environmentally friendly and cheapraw materials and available throughout the year as a substitute for conventional energy whose raw materials are getting thinner and have a bad impact on the environment such as air pollution, noise and hazardous waste for the environment over a long period of time, solar energy has great potential as an independent solar power plant, which offers solutions to provide electricity to meet electricity needs, especially in areas not yet covered by the electricity grid of the National Electric Company. The 1300 W solar power plant is planned to use polycrystalline solar panels with a capacity 100 WP, combined with battery components and inverters, it can generate AC current for daily electricity needs. The greater the electrical load, the faster the battery life. This research shows that it takes 60 polycrystalline solar panels for 12 hours, 26 Solar Chargers 15 A, 9 batteries with a capacity of 150 Ah, and 15 Inverters 1300 W.


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