Rancang Bangun Alat Charging Aki Menggunakan Panel Surya Dan Penyiraman Otomatis Untuk Meningkatkan Produktivitas Petani Bawang Merah Di Desa Sidokare Nganjuk Berbasis Internet Of Things

Suwartana, Moch. Ali Akbar (2021) Rancang Bangun Alat Charging Aki Menggunakan Panel Surya Dan Penyiraman Otomatis Untuk Meningkatkan Produktivitas Petani Bawang Merah Di Desa Sidokare Nganjuk Berbasis Internet Of Things. Diploma thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Pemanfaatan teknologi yang menggunakan pompa elektrik yang masih di
charge menggunakan sumber PLN,serta cara penyiraman yang masih manual
mengakibatkan cara yang kurang efisien,sehingga digunakan rancang bangun
charging menggunakan solar charge controller MPPT untuk aki dan penyiraman otomatis berbasis Internet of Things agar dapat dilakukan secara efektif.Untuk proses charging aki selama 100 menit, proses discharging aki selama 7 jam sedangkan proses penyerapan sinar matahari pada penyinaran panel surya berlangsung secara efektif pada jam 10.00 sampai 13.00.Adapun untuk penyiraman yang digunakan menggunakan indikator sensor kelembaban YL-69 akan dilakukan penyiraman bawang merah secara otomatis sampai tanah tersebut lembab sesuai dengan set point dengan range 0-300 bar untuk tanah kering dan 300-700 bar untuk tanah yang lembab dan monitoring kondisi solenoid valve melalui android.Untuk tegangan input dari aki diukur menggunakan sensor tegangan DC 25 V sedangkan arus input dari aki diukur menggunakan sensor arus ACS712 20 A.
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Utilization of technology that uses an electric pump that is still charged using a PLN source, as well as a manual watering method results in an inefficient
way, so a charging design using an MPPT solar charge controller is used for
batteries and automatic watering based on the Internet of Things so that it can be carried out effectively.For the battery charging process for 100 minutes, the battery discharging process for 7 hours while the process of absorption of sunlight on solar panel irradiation takes place effectively at 10:00 to 13:00. As for watering used using moisture sensor indicator YL-69 will be done watering shallots automatically until the soil is moist in accordance with the set point with a range of 0-300 bar for dry soil and 300-700 bar for moist soil and monitoring the condition of solenoid valve through android. For input voltage of the battery is measured using DC voltage sensor 25 V while the input current of the battery is measured using acs712 20 A current sensor.

Item Type: Thesis (Diploma)
Uncontrolled Keywords: design, solar panel, MPPT solar charge controller, internet of things, shallot, moisture sensor, rancang bangun,charging, panel surya, solar charge controller MPPT, internet of things, bawang merah, sensor kelembaban.
Subjects: Q Science > QC Physics
Q Science > QC Physics > QC100.5 Measuring instruments (General)
S Agriculture > S Agriculture (General)
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK1087 Photovoltaic power generation
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK2861 Electric relays
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK2945 Lead-acid batteries.
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK3070 Automatic control
Divisions: Faculty of Vocational > Instrumentation Engineering
Depositing User: Moch. Ali Akbar Suwartana
Date Deposited: 23 Aug 2021 10:01
Last Modified: 23 Aug 2021 10:01
URI: http://repository.its.ac.id/id/eprint/88323

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