Shodiq, Ja’far (2016) Simulasi performa photovoltaics berbahan nanokristalin SnO2. Undergraduate thesis, Universitas Islam Negeri Maulana Malik Ibrahim.
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Abstract
INDONESIA:
Pemodelan dan simulasi performa Photovoltaics berbahan Nanokristalin SnO2 menggunakan shoftware MATLAB digunakan untuk menentukan karakteristik sel surya dan untuk mempelajari nilai-nilai yang berbeda terhadap kinerja sel surya dengan memberikan parameter internal (k, q, n, Eg, a) dan data hasil penelitian (Isc, Voc). Simulasi yang dilakukan untuk menentukan daya keluaran dengan memberikan perubahan intensitas, suhu, dan jumlah sel berupa tampilan kurva karakteristik I-V dan P-V. Hasil simulasi yang dilakukan menunjukkan bahwa Perubahan intensitas berpengaruh terhadap Imp dengan nilai [0.0169, 0.0343, 0.0515, 0.0684, 0.0848]A dan tidak berpengaruh terhadap Vmp dengan nilai 0.6178V, perubahan suhu berpengaruh terhadap Imp dengan nilai [0.0797, 0.0848, 0.0772, 0.0834, 0.0741, 0.0815, 0.0704]A dan berpengaruh terhadap Vmp dengan nilai [0.7303, 0.6178, 0.5615, 0.4491, 0.3928, 0.2805, 0.2243]V, perubahan jumlah sel berpengaruh terhadap Imp nilai [0.0900, 0.0890, 0.0871, 0.0672]A dan Vmp bernilai tetap 0.6178V.
ENGLISH:
Modeling and simulation of the performance Photovoltaics with Nanocrystalline SnO2 material use shoftware MATLAB is used to determine the characteristics of solar cells and to learn the values are different to the performance of solar cells by modifying internal parameters (k, q, n, Eg, a) and the research data (Isc , Voc). Simulations were performed to determine the output power to give change in intensity, temperature, and the number of cells of the display characteristic curve I-V and P-V. The results of a simulation showed that the intensity changes affect to the Imp with a value [0.0169, 0.0343, 0.0515, 0.0684, 0.0848] A and has no effect on the value Vmp 0.6178V, temperature changes affect the Imp with a value [0.0797, 0.0848, 0.0772, 0.0834 , 0.0741, 0.0815, 0.0704] A and the effect on Vmp value [0.7303, 0.6178, 0.5615, 0.4491, 0.3928, 0.2805, 0.2243] V, changes in the number of cells affect the Imp value [0.0900, 0.0890, 0.0871, 0.0672] A and Vmp worth staying 0.6178V.
Item Type: | Thesis (Undergraduate) | |||||||||
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Supervisor: | Rani, Erika and Mulyono, Agus | |||||||||
Contributors: |
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Keywords: | Simulasi; Nanokristalin SnO2; shoftware MATLAB; Simulation; Nanocrystalline SnO2; shoftware MATLAB | |||||||||
Departement: | Fakultas Sains dan Teknologi > Jurusan Fisika | |||||||||
Depositing User: | Imam Rohmanu | |||||||||
Date Deposited: | 24 Mar 2017 11:16 | |||||||||
Last Modified: | 24 Mar 2017 11:16 | |||||||||
URI: | http://etheses.uin-malang.ac.id/id/eprint/5826 |
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