Analisis hasil simulasi perangkat lunak homer dan vipor pada studi kasus pembangkit listrik tenaga hibrida di wilayah Bengkunat Lampung Barat = Homer and vipor software simulation results of a hybrid power plant case study at Bengkunat, West Lampung

Main Authors: Wike Handini, author, Add author: Uno Bintang Sudibyo, supervisor, Add author: Eko Adhi Setiawan, supervisor, Add author: I Made Ardita Y., examiner, Add author: Chairul Hudaya, examiner
Format: Masters Bachelors
Terbitan: Fakultas Teknik Universitas Indonesia , 2010
Subjects:
Online Access: https://lib.ui.ac.id/detail?id=131559
ctrlnum 131559
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"><type>Thesis:Masters</type><title>Analisis hasil simulasi perangkat lunak homer dan vipor pada studi kasus pembangkit listrik tenaga hibrida di wilayah Bengkunat Lampung Barat = Homer and vipor software simulation results of a hybrid power plant case study at Bengkunat, West Lampung</title><creator>Wike Handini, author</creator><creator>Add author: Uno Bintang Sudibyo, supervisor</creator><creator>Add author: Eko Adhi Setiawan, supervisor</creator><creator>Add author: I Made Ardita Y., examiner</creator><creator>Add author: Chairul Hudaya, examiner</creator><publisher>Fakultas Teknik Universitas Indonesia</publisher><date>2010</date><subject>Hybrid power plant -- Bengkunat</subject><description>Dari hasil simulasi diperoleh bahwa jaringan distribusi PLTH di Bengkunat memiliki panjang total 32.055 m, transformator yang dibutuhkan 8 buah dengan energi maksimum yang dipasok tiap transformator adalah 45,1 kWh per hari. Dibandingkan dengan PLTD 2 x 100 kW ($ 505.493), nilai NPC PLTH lebih tinggi ($ 555.956) demikian pula COE-nya ($ 0,770 per kWh) lebih tinggi dari COE PLTD ($ 0,739 per kWh). PLTH menghemat BBM 128.061 liter per tahun. PLTH layak untuk diterapkan di daerah dengan potensi angin dan radiasi matahari yang memadai seperti di Bengkunat Lampung Barat. Perangkat lunak ViPOR hanya memasukkan data biaya transformator penurun tegangan di distribusi dengan satu kapasitas saja, sehingga jika ada konfigurasi beban yang membutuhkan kapasitas transformator berbeda, simulasi tidak dapat dilakukan. Optimasi dilakukan hanya berdasarkan biaya NPC, tidak dari segi jatuh tegangan pada jaringan, karena perangkat lunak ViPOR tidak memiliki keluaran berupa jatuh tegangan, rugi daya dan aliran daya pada jaringan. &lt;hr&gt;From the ViPOR software simulation results, it has been found that the length of the distribution network of a hybrid power plant at Bengkunat is 32.055 m, it requires eight transformers each with an maximum energy requirement of 45.1 kWh per day. Compared to a 2 x 100 kW diesel power plant (NPC = $ 505.493), the NPC value of the hybrid power plant is higher ($ 555,956), also its COE ($ 0.770 per kWh) is higher than the diesel power plant ($ 0,739 per kWh). The hybrid power plant will save 128,061 liters of fuel per year. The hybrid power plant is feasible to be applied in areas with enough wind and sun radiation resources such as at Bengkunat West Lampung. The ViPOR software has several shortcomings such as : only step down transformers can be used for simulation, and only with one capacity. For a load configuration that requires a different transformer capacity, the simulation can not be done. The optimization based on the NPC value, not based on the voltage drop at the network, because this software doesn?t have outputs of the voltage drop, power loss and power flow.</description><identifier>https://lib.ui.ac.id/detail?id=131559</identifier><recordID>131559</recordID></dc>
format Thesis:Masters
Thesis
Thesis:Bachelors
author Wike Handini, author
Add author: Uno Bintang Sudibyo, supervisor
Add author: Eko Adhi Setiawan, supervisor
Add author: I Made Ardita Y., examiner
Add author: Chairul Hudaya, examiner
title Analisis hasil simulasi perangkat lunak homer dan vipor pada studi kasus pembangkit listrik tenaga hibrida di wilayah Bengkunat Lampung Barat = Homer and vipor software simulation results of a hybrid power plant case study at Bengkunat, West Lampung
publisher Fakultas Teknik Universitas Indonesia
publishDate 2010
topic Hybrid power plant -- Bengkunat
url https://lib.ui.ac.id/detail?id=131559
contents Dari hasil simulasi diperoleh bahwa jaringan distribusi PLTH di Bengkunat memiliki panjang total 32.055 m, transformator yang dibutuhkan 8 buah dengan energi maksimum yang dipasok tiap transformator adalah 45,1 kWh per hari. Dibandingkan dengan PLTD 2 x 100 kW ($ 505.493), nilai NPC PLTH lebih tinggi ($ 555.956) demikian pula COE-nya ($ 0,770 per kWh) lebih tinggi dari COE PLTD ($ 0,739 per kWh). PLTH menghemat BBM 128.061 liter per tahun. PLTH layak untuk diterapkan di daerah dengan potensi angin dan radiasi matahari yang memadai seperti di Bengkunat Lampung Barat. Perangkat lunak ViPOR hanya memasukkan data biaya transformator penurun tegangan di distribusi dengan satu kapasitas saja, sehingga jika ada konfigurasi beban yang membutuhkan kapasitas transformator berbeda, simulasi tidak dapat dilakukan. Optimasi dilakukan hanya berdasarkan biaya NPC, tidak dari segi jatuh tegangan pada jaringan, karena perangkat lunak ViPOR tidak memiliki keluaran berupa jatuh tegangan, rugi daya dan aliran daya pada jaringan. <hr>From the ViPOR software simulation results, it has been found that the length of the distribution network of a hybrid power plant at Bengkunat is 32.055 m, it requires eight transformers each with an maximum energy requirement of 45.1 kWh per day. Compared to a 2 x 100 kW diesel power plant (NPC = $ 505.493), the NPC value of the hybrid power plant is higher ($ 555,956), also its COE ($ 0.770 per kWh) is higher than the diesel power plant ($ 0,739 per kWh). The hybrid power plant will save 128,061 liters of fuel per year. The hybrid power plant is feasible to be applied in areas with enough wind and sun radiation resources such as at Bengkunat West Lampung. The ViPOR software has several shortcomings such as : only step down transformers can be used for simulation, and only with one capacity. For a load configuration that requires a different transformer capacity, the simulation can not be done. The optimization based on the NPC value, not based on the voltage drop at the network, because this software doesn?t have outputs of the voltage drop, power loss and power flow.
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