Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng

Currently, requirement of ice as medium fish cooling in PP Sadeng has not been fulfilled. This causes deterioration of fish quality when received by the consumers. The self production of ice blocks using ice maker machine has not solved this problem due to the highly operating costs, especially fuel...

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Main Authors: Arif Rahman Hakim, Widiarto Sarwono, Luthfi Assadad
Format: Article
Language:English
Published: Universitas Gadjah Mada 2018-06-01
Series:Jurnal Nasional Teknik Elektro dan Teknologi Informasi
Subjects:
Online Access:http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/427
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spelling doaj-f55619d264f34cda9c56f2414c3e07792020-11-24T21:13:45ZengUniversitas Gadjah MadaJurnal Nasional Teknik Elektro dan Teknologi Informasi2301-41562460-57192018-06-017110.22146/jnteti.v7i2.427359Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan SadengArif Rahman HakimWidiarto SarwonoLuthfi AssadadCurrently, requirement of ice as medium fish cooling in PP Sadeng has not been fulfilled. This causes deterioration of fish quality when received by the consumers. The self production of ice blocks using ice maker machine has not solved this problem due to the highly operating costs, especially fuel. Photovoltaic (PV) systems are expected to overcome this problem. PV systems have high potential, since it is clean, environment-friendly, secure, and renewable. This paper explains the stages of PV system design, including PV module size, battery, solar charge controller, inverter, and also economic feasibility analysis. The results show that energy requirement of ice maker machines is 19,383.60 watts. The PV system consists of 40 units of 260 wp PV module, 82 units of battery 12V 100AH, 11 units of solar charge controller 40 A type MPPT, and 20 units of inverter DC-AC pure sine wave 1,200 W. Economic analysis shows that the life cycle cost (LCC) PV system designed is Rp513,704,165 for 25 years and levelized cost of energy (LCOE) of PV system is Rp1,401 per kWh.http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/427Sistem photovoltaic, mesin pembuat es, perancangan
collection DOAJ
language English
format Article
sources DOAJ
author Arif Rahman Hakim
Widiarto Sarwono
Luthfi Assadad
spellingShingle Arif Rahman Hakim
Widiarto Sarwono
Luthfi Assadad
Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
Jurnal Nasional Teknik Elektro dan Teknologi Informasi
Sistem photovoltaic, mesin pembuat es, perancangan
author_facet Arif Rahman Hakim
Widiarto Sarwono
Luthfi Assadad
author_sort Arif Rahman Hakim
title Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
title_short Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
title_full Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
title_fullStr Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
title_full_unstemmed Perancangan Sistem Photovoltaic untuk Mesin Pembuat Es di Pelabuhan Perikanan Sadeng
title_sort perancangan sistem photovoltaic untuk mesin pembuat es di pelabuhan perikanan sadeng
publisher Universitas Gadjah Mada
series Jurnal Nasional Teknik Elektro dan Teknologi Informasi
issn 2301-4156
2460-5719
publishDate 2018-06-01
description Currently, requirement of ice as medium fish cooling in PP Sadeng has not been fulfilled. This causes deterioration of fish quality when received by the consumers. The self production of ice blocks using ice maker machine has not solved this problem due to the highly operating costs, especially fuel. Photovoltaic (PV) systems are expected to overcome this problem. PV systems have high potential, since it is clean, environment-friendly, secure, and renewable. This paper explains the stages of PV system design, including PV module size, battery, solar charge controller, inverter, and also economic feasibility analysis. The results show that energy requirement of ice maker machines is 19,383.60 watts. The PV system consists of 40 units of 260 wp PV module, 82 units of battery 12V 100AH, 11 units of solar charge controller 40 A type MPPT, and 20 units of inverter DC-AC pure sine wave 1,200 W. Economic analysis shows that the life cycle cost (LCC) PV system designed is Rp513,704,165 for 25 years and levelized cost of energy (LCOE) of PV system is Rp1,401 per kWh.
topic Sistem photovoltaic, mesin pembuat es, perancangan
url http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/427
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AT widiartosarwono perancangansistemphotovoltaicuntukmesinpembuatesdipelabuhanperikanansadeng
AT luthfiassadad perancangansistemphotovoltaicuntukmesinpembuatesdipelabuhanperikanansadeng
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