Miftachul Ulum
Universitas Trunojoyo Madura, Bangkalan

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ANALISIS NILAI OUTPUT RANCANG BANGUN TENAGA HYBRID PADA PAYUNG PANEL SURYA Domas Wisnu; Miftachul Ulum; Haryanto; Rosida Vivin Nahari
SinarFe7 Vol. 4 No. 1 (2021): SinarFe7-4 2021
Publisher : FORTEI Regional VII Jawa Timur

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (961.309 KB)

Abstract

Dalam berkembangnya kehidupan modern dengan berjalan yang begitu cepat, tetapi berbanding terbalik dengan faktor sumberdaya yang lainnya, seperti sumber daya energi listrik, dimana suatu sumber daya energi listrik yang berasal dari energi fosil sehingga suatu saat bisa habis, maka diperlukan suatu sumber energi terbarukan dengan memanfaatkan energi dari alam, maka para seorang ilmuan mengembangkan energi baru terbarukan dengan memanfaatkan energi dari alam yang tidak dapat habis dan bisa diubahnya ke energi listrik, seperti energi cahaya matahari yang merupakan suatu energi terbarukan dari alam yang sangat melimpah terutama letak indonesia merupakan negara tropis, dimana setiap 8-9 jam cahaya matahari bersinar, dengan energi tersebut dapat dimanfaatkan lalu diubah menjadi energi listrik dengan menggunakan sebuah alat yang bernama panel surya. Panelsurya merupakan sebuah alat yangmampu mengkonversika sebuah cahaya matahari menjadi energi listrik sehingga mampu memenuhi kebutuhan listrik sehari – hari, dengan alat tersebut dapat juga dikembangankan lagi seperti panel surya tenaga hibrid dibuat dengan bertujuan mengembangkan suatu alat di Universitas Trunojoyo.
Perancangan Lampu Jalan Dengan Panel Surya Terintegrasi Dan Pengaturan Otomatis Intensitas Cahaya Miftachul Ulum; Khoirul Ogik Saputra; Adi Kurniawan Saputro
Jurnal FORTECH Vol. 5 No. 1 (2024): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v5i1.5103

Abstract

Indonesia is a country that has a tropical climate and is located on the equator and gets abundant sunlight all year round. So the use of solar energy as an alternative energy is very popular and is starting to be developed in all corners of the country by carrying out a lot of research and testing. In this research, solar cells are used as a source of electrical energy for street lights. The function of these components is SCC (solar charge controller) which regulates and controls the battery charging process, electrical energy is stored in the battery which functions to supply electrical power at night. The inverter functions to change direct current (DC) into alternating current (AC). The photocell sensor functions to regulate the lights, during the day the lights will turn off and turn on at night. There is a passive infrared receiver (PIR) sensor used to detect human presence. This sensor is used to control the light intensity of the lamp, if it is not detected by humans, the lamp will turn on normally. If human presence is detected, the lights will turn on brightly. There is also an automatic solar panel cleaner using a wiper which functions when the solar panels are dirty. The detection method uses current and voltage sensors, when sunlight received by the solar panel and the resulting electric current voltage decreases, the wiper will automatically activate to clean dirty solar panels, thereby maintaining optimal solar panel performance. The solar panel is equipped with a support/pole feature that is designed to go up and down, which makes it easier to use and does not require using a ladder during the maintenance process. The method used in this research is fuzzy. The fuzzy method is used for decision making on wiper conditions. In the research results, the results of this system were obtained from 12 trials of tool measurement results, Matlab simulations, and manual fuzzy logic calculations with a success rate of 91.6%.