Resource Aware Smart Power Supply Decision Making for Multi-Input Power System

Improvement of energy efficiency is very much crucial for off grid renewable energy power source in rural areas. Owning to the nature of renewable energy such as sporadic energy producing and inclination in escalation of overall power consumption in rural home appliances (HA), resulted in increasing...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Siva Raja, Sindiramutty
التنسيق: أطروحة
اللغة:English
منشور في: 2019
الموضوعات:
الوصول للمادة أونلاين:http://ir.unimas.my/id/eprint/31635/1/Siva.pdf
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spelling my-unimas-ir.316352023-07-10T08:04:21Z Resource Aware Smart Power Supply Decision Making for Multi-Input Power System 2019 Siva Raja, Sindiramutty QA75 Electronic computers. Computer science Improvement of energy efficiency is very much crucial for off grid renewable energy power source in rural areas. Owning to the nature of renewable energy such as sporadic energy producing and inclination in escalation of overall power consumption in rural home appliances (HA), resulted in increasing risks of losing appliances operation sustainability. Smart power management system is very much needed to optimize the power usage from the multi input off-grid renewable energy power supply which be able to deployed in off grid remote areas. Therefore, this thesis proposes the ideas on resource aware smart power supply decision making for multi input power system. This thesis also presents an analogy of “proposed hybrid system which contains solar power, micro hydropower and diesel power generator” to “standalone renewable energy system” on provision power-based load profile. The percentage of power conserved using smart system has been up to 37.5% over conventional standalone micro hydropower system and the amount of diesel consumed is 71.9% less than the conventional diesel power generator system under critical situation. The percentage of power waste of the smart system can be as low as 10%. The power waste is only caused by the allocation power for the buffer system. Average potential battery life span using the smart system has been extended to 13.12 years which is a 105% improvement over the conventional solar system. The power decision making takes control of the hybrid system in which finding the best power fitness for the load power demand by choosing the best single or combination of renewable energy power source to achieve optimum power usage and hence increase the load power sustainability and minimize the overall power waste Universiti Malaysia Sarawak (UNIMAS) 2019 Thesis http://ir.unimas.my/id/eprint/31635/ http://ir.unimas.my/id/eprint/31635/1/Siva.pdf text en validuser phd doctoral Universiti Malaysia Sarawak (UNIMAS) Faculty of Computer Science and Information Technology
institution Universiti Malaysia Sarawak
collection UNIMAS Institutional Repository
language English
topic QA75 Electronic computers
Computer science
spellingShingle QA75 Electronic computers
Computer science
Siva Raja, Sindiramutty
Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
description Improvement of energy efficiency is very much crucial for off grid renewable energy power source in rural areas. Owning to the nature of renewable energy such as sporadic energy producing and inclination in escalation of overall power consumption in rural home appliances (HA), resulted in increasing risks of losing appliances operation sustainability. Smart power management system is very much needed to optimize the power usage from the multi input off-grid renewable energy power supply which be able to deployed in off grid remote areas. Therefore, this thesis proposes the ideas on resource aware smart power supply decision making for multi input power system. This thesis also presents an analogy of “proposed hybrid system which contains solar power, micro hydropower and diesel power generator” to “standalone renewable energy system” on provision power-based load profile. The percentage of power conserved using smart system has been up to 37.5% over conventional standalone micro hydropower system and the amount of diesel consumed is 71.9% less than the conventional diesel power generator system under critical situation. The percentage of power waste of the smart system can be as low as 10%. The power waste is only caused by the allocation power for the buffer system. Average potential battery life span using the smart system has been extended to 13.12 years which is a 105% improvement over the conventional solar system. The power decision making takes control of the hybrid system in which finding the best power fitness for the load power demand by choosing the best single or combination of renewable energy power source to achieve optimum power usage and hence increase the load power sustainability and minimize the overall power waste
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Siva Raja, Sindiramutty
author_facet Siva Raja, Sindiramutty
author_sort Siva Raja, Sindiramutty
title Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
title_short Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
title_full Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
title_fullStr Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
title_full_unstemmed Resource Aware Smart Power Supply Decision Making for Multi-Input Power System
title_sort resource aware smart power supply decision making for multi-input power system
granting_institution Universiti Malaysia Sarawak (UNIMAS)
granting_department Faculty of Computer Science and Information Technology
publishDate 2019
url http://ir.unimas.my/id/eprint/31635/1/Siva.pdf
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