WARDIANA, ROIS (2023) PERANCANGAN PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) KAPASITAS 100 WP BERBASIS INTERNET OF THINGS. S1 thesis, Universitas Mercu Buana Jakarta.
|
Text (HAL COVER)
01 Cover.pdf Download (655kB) | Preview |
|
|
Text (ABSTRAK)
02 Abstrak.pdf Download (204kB) | Preview |
|
Text (BAB I)
03 Bab 1.pdf Restricted to Registered users only Download (214kB) |
||
Text (BAB II)
04 Bab 2.pdf Restricted to Registered users only Download (550kB) |
||
Text (BAB III)
05 Bab 3.pdf Restricted to Registered users only Download (713kB) |
||
Text (BAB IV)
06 Bab 4.pdf Restricted to Registered users only Download (734kB) |
||
Text (BAB V)
07 Bab 5.pdf Restricted to Registered users only Download (249kB) |
||
Text (DAFTAR PUSTAKA)
08 Daftar Pustaka.pdf Restricted to Registered users only Download (377kB) |
||
Text (LAMPIRAN)
09 Lampiran.pdf Restricted to Registered users only Download (321kB) |
Abstract
Automatic solar cell tracker series is a device made of semiconductor material (solar panels) to convert solar energy into electrical energy through a photovoltaic effect process that is capable of tracking sunlight, in general solar panel installation is static and without control, so it does not get sunlight tracking , therefore we need a circuit that can track sunlight automatically, can be moved (portable) and easy to monitor, so this research aims to create a design for a series of solar panels that can track sunlight automatically. The solar cell tracker series can be connected to the user's gadget using the internet of things system. This design uses a monocritsal type solar panel with a capacity of 100 WP, then the power generated is accommodated in a deep cycle battery with a capacity of 50 Ah, the device designed has supporting components and sensors, namely: inverter, solar charge controller, light sensor, current sensor, watt meter, arduino and controller (ESP-32). From the results of the design that has been carried out, the solar cell series is designed to track the best sunlight on its rotation path and has a frame strength with a Von mises value of 8.519 MPa, 0.02684 mm displacement, and a safety factor of 15. Keywords: Solar cell, internet of things, automatic control, design, tracker Rangkaian solar cell tracker otomatis adalah alat yang terbuat dari bahan semikonduktor (panel surya) untuk mengubah energi matahari menjadi energi listrik melalui proses efek fotovoltaic yang mampu melacak sinar matahari, pada umumnya pemasangan panel surya bersifat statis dan tanpa pengontrolan, sehingga kurang mendapatkan penjejakan sinar matahari, maka dari itu dibutuhkan rangkaian yang dapat melacak sinar matahari secara otomatis,dapat dipindah (portable) serta mudah untuk memonitoringnya, sehingga penelitian ini bertujuan untuk membuat sebuah rancangan rangkaian panel surya yang dapat melacak sinar matahari secara otomatis. Rangkaian solar cell tracker bisa terhubung dengan gadget pengguna menggunakan sistem internet of things. Perancagan ini menggunakan panel surya jenis monokritsal berkapasitas 100 WP, kemudian daya yang dihasilkan ditampung pada aki deep cycle berkapasitas 50 Ah, pada alat yang dirancang terdapat komponen dan sensor penunjang yaitu: inverter, solar charge controller, sensor cahaya, sensor arus, watt meter, arduino dan pengendali (ESP-32). Dari hasil perancangan yang telah dilakukan rangkaian solar cell dirancang melacak sinar matahari terbaik pada lintasan rotasinya serta memiliki kekuatan rangka dengan nilai Von mises 8,519 MPa, Displacement 0.02684 mm, dan Safety factor 15. Kata Kunci: Solar cell, internet of thing, Pengontrolan otomatis, Rancangan, Tracker
Actions (login required)
View Item |