Rancang Bangun Alat Penyemprot Herbisida (Knapsack Sprayer) Elektrik Berbasis Panel Surya 20 Wp Paralel

  • Gali Triyani Jurusan Teknik Elektro Fakultas Teknik Universitas Bangka Belitung
  • Fardhan Arkan Jurusan Teknik Elektro Fakultas Teknik Universitas Bangka Belitung
  • M Yonggi Puriza Jurusan Teknik Elektro Fakultas Teknik Universitas Bangka Belitung
  • Welly Yandi Universitas Bangka Belitung
  • Yandi Anzari Universitas Telkom
  • Habib Satria Universitas Medan Area
  • Hanalde Andre Universitas Andalas
Keywords: Knapsack Sprayer, Renewable Energy, Solar Panel

Abstract

A classic problem that hinders farmers from spraying herbicide liquids because they still use a herbicide liquid sprayer system in amanual way. This research aims to produce electric herbicide sprayers that are efficient and effective for the community, as well as to engenalize and utilize renewable energy as energy that is easy to obtain and environmentally friendly, especially in agriculture. The sources produced by the 20Wp solar panels are in the form of Voltage, Current, Power and Electrical Energy. Solar panel measurements are taken for 7 days, starting from 08.00 WIB to 15.00 WIB. The results obtained for the largest average values of Voltage, Amperes, and Power were on day 7 where the Voltage was 13.72V, Current was 0.43A, and Power was 5.88W. S. Sexplained for the average value of the largest Electrical Energy was on day 2 and day 5 of 0.60Wh. The effect in taking solar panel data in this study was Light Intensity, with the largest average n ilai being on the 7th day, which was 905.8 W/m2.  The manufacture of electric herbicide sprayers based on 20 Wp solar panels has been carried out with very effective results and functions in accordance with the purpose of making tools, namely introducing renewable energy as alternative energy that is easily available, especially in agriculture

References

[1] Ahmad Imam Agung dkk. (2021). Rancang Bangun Pembangkit Listrik Tenaga Surya Portabel. Jurnal Teknik Elektro. 10(01):56-71
[2] Arnizam. 2018. Rancang Bangun Sistem Penyemprotan Pestidida Dan Pupuk Pada Tanaman Padi Menggunakan Mikrokontroller. [SKRIPSI]. Jurusan Teknik Inforatika Fakultas Sains Dan Teknologi Universitas Negeri Aluddin Makassar.I.S. Jacobs and C.P. Bean, “Fine particles, thin films and exchange anisotropy,” in Magnetism, vol. III, G.T. Rado and H. Suhl, Eds. New York: Academic, 1963, pp. 271-350.
[3] Audiva Triana Pradilla BR Sembiring (2018). Rancang Bangun Charger Contoller Menggunakan Panel Surya (Solar Cell) Dengan Output Lampu Dc Berbasis Arduino Promini. [SKRIPSI]. Fakultas Matematika Dan Ilmu Pengetahuan Alam.Universitas Sumatera Utara Medan.
[4] Christian Cahya Kartika. (2017). Rancang Bangun Sistem Kontrol Pembangkit Listrik Hibrida Generator AC-Cell Surya dan Pengisian Baterai Skala Kecil Menggunakan Arduino Mega 2560.[SKRIPSI]. Taknik Elektro, Fakultas Teknologi Industri. Institut Teknologi Nasional Malang.
[5] Edi Sarwono dkk. (2022). Alat Penyemprot Pestisida Tenaga Surya. Jurnal Rekayasa Dan Teknologi Elektro. 16(1):66-72.
[6] Efrizal, Johan Sainima. 2013. Perancangan Alat Penyemprotan Hama Tanaman Tipe Knapsack Berbasis Solar Panel 20 Wp. [SKRIPSI]. Program Studi Teknik Mesin, Fakultas Teknik, Universitas Muhammadiyah Tangerang.
[7] Hilyati Afifah. (2015). Perancangan Alat Otomatis Penyemprot Hama Tanaman Padi Menggunaan Sensor Pir Dengan Sumber Pv Dan Baterai. [PROYEK AKHIR]. Program Studi D3 Elektronika. Fakultas Teknik. Universitas Jember.
[8] Suci Imani Putri dkk. (2014). Rancang Bangun Dan Optimasi Panel Surya Berpenjejak Dengan Logika Fuzzy Takagi-Sugeno. Jurnal
[9] Yudhy Wiranatha Jaya Kusuma dkk. (2015). Rancang Bangun Penggerak Otomatis Surya Menggunakan Sensor Photodioda Berbasis Mikrikontroller Atmega 16. Jurnal Rekayasa Dan Teknologi Elektro. 9(1):11-20.
[10] Muhamad Rizky Kurniawan dkk. (2021). Rancang Bangun Alat Monitoring Panel Surya Berbasis Ardiono Uno Dengan Program PLX-DAQ. Jurnal Of Electrical And Vocational Education And Tecnologi. 6(1):21-24.
Published
2022-12-30