ctrlnum 54626
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><relation>http://eprints.umm.ac.id/54626/</relation><title>DESAIN BATTERY MANAGEMENT SYSTEM DARI SUMBER PANEL SURYA MENGGUNAKAN METODE 4-STAGE CHARGING</title><creator>Alkhaidir, Muhamad Adam</creator><subject>T Technology (General)</subject><subject>TK Electrical engineering. Electronics Nuclear engineering</subject><description>PLTS off grid is a solar power plant that stands alone or is not connected to the PLN electricity network where the electricity generated is stored in the battery. A bad battery management, the power from the source is not stored optimally, and the charging time is longer and the battery is damaged. &#xD; This study aims to design a battery charging system that a lithium-ion type with a nominal voltage specification of 120V 150Ah by using a power source produced by solar panels. There are two main parts in the system to be designed, namely MPPT with buck converter to maximize power from solar panels with a power of 20kW. The output from MPPT will be processed again for the battery charging process. The method for charging the battery used is 4-stage charging, which is there are 4 stages in the charging process, PWM, constant current, constant voltage and float charge using a buck converter to reduce the voltage. The 4-stage charging method aims to speed up the battery charging process and reduce the risk of overcharge. &#xD; The design of the battery charging system with the 4-stage charging method compared to the conventional method using SIMULINK MATLAB simulation assistance which was run for 3000 seconds showed that the 4-stage charging method was faster in terms of charging time with a battery capacity of 97.58% while the conventional method only reached capacity of 93.94%.</description><date>2019-08</date><type>Thesis:Thesis</type><type>PeerReview:NonPeerReviewed</type><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/1/PENDAHULUAN.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/2/BAB%201.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/3/BAB%202.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/4/BAB%203%20.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/5/BAB%204.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/54626/6/BAB%205.pdf</identifier><identifier> Alkhaidir, Muhamad Adam (2019) DESAIN BATTERY MANAGEMENT SYSTEM DARI SUMBER PANEL SURYA MENGGUNAKAN METODE 4-STAGE CHARGING. Bachelors Degree (S1) thesis, University of Muhammadiyah Malang. </identifier><recordID>54626</recordID></dc>
language eng
format Thesis:Thesis
Thesis
PeerReview:NonPeerReviewed
PeerReview
Book:Book
Book
author Alkhaidir, Muhamad Adam
title DESAIN BATTERY MANAGEMENT SYSTEM DARI SUMBER PANEL SURYA MENGGUNAKAN METODE 4-STAGE CHARGING
publishDate 2019
topic T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.umm.ac.id/54626/1/PENDAHULUAN.pdf
http://eprints.umm.ac.id/54626/2/BAB%201.pdf
http://eprints.umm.ac.id/54626/3/BAB%202.pdf
http://eprints.umm.ac.id/54626/4/BAB%203%20.pdf
http://eprints.umm.ac.id/54626/5/BAB%204.pdf
http://eprints.umm.ac.id/54626/6/BAB%205.pdf
http://eprints.umm.ac.id/54626/
contents PLTS off grid is a solar power plant that stands alone or is not connected to the PLN electricity network where the electricity generated is stored in the battery. A bad battery management, the power from the source is not stored optimally, and the charging time is longer and the battery is damaged. This study aims to design a battery charging system that a lithium-ion type with a nominal voltage specification of 120V 150Ah by using a power source produced by solar panels. There are two main parts in the system to be designed, namely MPPT with buck converter to maximize power from solar panels with a power of 20kW. The output from MPPT will be processed again for the battery charging process. The method for charging the battery used is 4-stage charging, which is there are 4 stages in the charging process, PWM, constant current, constant voltage and float charge using a buck converter to reduce the voltage. The 4-stage charging method aims to speed up the battery charging process and reduce the risk of overcharge. The design of the battery charging system with the 4-stage charging method compared to the conventional method using SIMULINK MATLAB simulation assistance which was run for 3000 seconds showed that the 4-stage charging method was faster in terms of charging time with a battery capacity of 97.58% while the conventional method only reached capacity of 93.94%.
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city MALANG
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repoId IOS4109
first_indexed 2019-11-04T15:02:49Z
last_indexed 2019-11-23T23:29:45Z
recordtype dc
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