Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia
The solar power installation on a new broadband seismometer shelter will greatly be affected by the quality of waveform data. The lower power means a physically smaller footprint and a less costly installation for a new station which must be located far from the main power system. In this case, we h...
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doaj-dd9a2696464b488d8d83d27e4aa242c62020-12-21T12:59:11ZengElsevierCase Studies in Thermal Engineering2214-157X2020-12-0122100747Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, IndonesiaMarzuki Sinambela0Marhaposan Situmorang1Kerista Tarigan2Syahrul Humaidi3Teguh Rahayu4Department of Physics, Universitas Sumatera Utara, Medan, 20155, Indonesia; Badan Meteorologi, Klimatologi Dan Geofisika (BMKG), Indonesia; Corresponding author. Department of Physics, Universitas Sumatera Utara, Medan, 20155, Indonesia.Department of Physics, Universitas Sumatera Utara, Medan, 20155, IndonesiaDepartment of Physics, Universitas Sumatera Utara, Medan, 20155, Indonesia; Corresponding author.Department of Physics, Universitas Sumatera Utara, Medan, 20155, IndonesiaBadan Meteorologi, Klimatologi Dan Geofisika (BMKG), IndonesiaThe solar power installation on a new broadband seismometer shelter will greatly be affected by the quality of waveform data. The lower power means a physically smaller footprint and a less costly installation for a new station which must be located far from the main power system. In this case, we have installed the solar power system in the new broadband seismometer shelter in the mini region at TKSM station, in Tiganderket, Karo, North Sumatera Indonesia. The main goal of this study, to design, testing the solar cell, and compute the power spectral after installation of the power cell in the new shelter, which located away from roads and cities and human activity. The results presented that the good performance of the solar power system (solar cell, solar charge controller, and battery) for continuous transmission and to collect the waveform data based on the performance TKSM station using power spectral density function methods.http://www.sciencedirect.com/science/article/pii/S2214157X20304895Olar cellSolar chargeBatteryNew broadbandSolar power |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marzuki Sinambela Marhaposan Situmorang Kerista Tarigan Syahrul Humaidi Teguh Rahayu |
spellingShingle |
Marzuki Sinambela Marhaposan Situmorang Kerista Tarigan Syahrul Humaidi Teguh Rahayu Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia Case Studies in Thermal Engineering Olar cell Solar charge Battery New broadband Solar power |
author_facet |
Marzuki Sinambela Marhaposan Situmorang Kerista Tarigan Syahrul Humaidi Teguh Rahayu |
author_sort |
Marzuki Sinambela |
title |
Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia |
title_short |
Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia |
title_full |
Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia |
title_fullStr |
Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia |
title_full_unstemmed |
Design of solar power system for the new mini region of broadband seismometer shelter in Tiganderket, Karo, North Sumatera, Indonesia |
title_sort |
design of solar power system for the new mini region of broadband seismometer shelter in tiganderket, karo, north sumatera, indonesia |
publisher |
Elsevier |
series |
Case Studies in Thermal Engineering |
issn |
2214-157X |
publishDate |
2020-12-01 |
description |
The solar power installation on a new broadband seismometer shelter will greatly be affected by the quality of waveform data. The lower power means a physically smaller footprint and a less costly installation for a new station which must be located far from the main power system. In this case, we have installed the solar power system in the new broadband seismometer shelter in the mini region at TKSM station, in Tiganderket, Karo, North Sumatera Indonesia. The main goal of this study, to design, testing the solar cell, and compute the power spectral after installation of the power cell in the new shelter, which located away from roads and cities and human activity. The results presented that the good performance of the solar power system (solar cell, solar charge controller, and battery) for continuous transmission and to collect the waveform data based on the performance TKSM station using power spectral density function methods. |
topic |
Olar cell Solar charge Battery New broadband Solar power |
url |
http://www.sciencedirect.com/science/article/pii/S2214157X20304895 |
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