Pembangkit Listrik Tenaga Angin Dengan Turbin Ventilator Dan Sensor Cahaya

Authors

  • Dini Oktavitasari STT Texmaco
  • Sutrisno STT Texmaco
  • Yogi Abdul Manaf Heriyanto STT Texmaco

Keywords:

Planning, Design, Voltage Output.

Abstract

A prototype wind power generator module has been created using a ventilator turbine as a dynamo driver and a light sensor. This power plant utilizes wind speed as its driving force. The electricity produced is in the form of AC voltage between 0 volts and 3.71 volts. The output from the dynamo is processed by using a charger controller and increasing the voltage installed at the input and output of the charging circuit. To test the tool, the wind speed used was from 3.7 m/s up to the maximum output of this tool with a wind speed of 7.4 m/s, which was 3.71 volts.

References

Pambudi Nugroho Agung. (2021). Buku Ajar Energi Baru Dan Terbaharukan (Ebt)

Turbin Angin, UNS Press, Semarang.

Ismail, M., Abdul Malek Abdul Rahman. Rooftop Turbine Ventilator: A Review and

Update. Penang: School of Housing, Building & Planing, Universiti Sains Malaysia. 2012.

Sunarti, Titin. (2004). Usaha, Energi, dan Usaha. Direktorat Pendidikan Menengah

Kejuruan. Departemen Pendidikan Nasional.

Akbar Rachman; Warjito, supervisor; Budiarso, examiner; Harinaldi, examiner; Ahamad Indra, examiner (Fakultas Teknik Universitas Indonesia, 2012).

Budiman, A., dkk. (2012). Desain Generator Magnet Permanen untuk Sepeda Listrik,

Jurnal Jurusan Teknik Elektro. Fakultas Teknik Universitas Muhammadiah Surakarta.

Mahmudi, Wakid. Pengaruh Rasio panjang Dan Diameter Pipa Cerobong Turbine

Ventilator Terhadap Unjuk Kerja Turbine Ventilator Sebagai Mikro Power Plant. Jurnal

Teknik Mesin FTI Institut Tinggi Sepuluh November. 2010. Halaman 1 – 10.

Made Padmika1 , I Made Satriya Wibawa1 , Ni Luh Putu Trisnawati1 1Jurusan Fisika,

Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Udayana, Kampus Bukit

Jimbaran, Badung, Bali 2017 Indonesia 80361

Saputra., Wan Novri. (2016). Prototype Generator DC Dengan Penggerak Tenaga

Angin.Author 1, A.; Author 2, B. Title of the chapter. In Book Title, 2nd ed.; Editor 1,

A., Editor 2, B., Eds.; Publisher: Publisher Location, Country, 2007; Volume 3, pp. 154–

Sayuti, Bukhari, Muhammad Razi. (2019). Rancang Bangun Mekanisme Pemindah Daya

Turbin Ventilator Dengan Kecepatan Angin 4 M/S. ( ISSN : 2597-9140)

Saputra., Maidi. (2016). Kajian Literatur Sudu Turbin Angin Untuk Skala Kecepatan

Angin Rendah. (ISSN : 2502-0498).

Published

2023-10-31