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Solar Cell Powered PJU Light Installation by Utilizing Solar Energy budiartono budiartono; Tri Lestariningsih; Budi Triono; Nur Asyik Hidayatullah; Husain Haryo Wicaksono
Jurnal Pengabdian dan Pemberdayaan Masyarakat Indonesia Vol. 3 No. 6 (2023)
Publisher : Peneliti Teknologi Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59247/jppmi.v3i6.189

Abstract

Kedungbunder Village is included in the southern part of Blitar. The socio-economic activities of the people in Kedungbunder mostly rely on agriculture. The huge potential is the fertile agricultural land and the availability of potential solar energy around the settlement, allowing solar energy to be utilized as public street lighting. Community service activities through the Community Partnership Program will be carried out in Kedungbunder Village, Sutojayan District, Blitar Regency with an emphasis on community empowerment through the use of solar energy with solar cells for street lighting installations. The result is public awareness related to the benefits of solar energy and the application of solar cell-powered PJU lamp technology as street lighting.
Rancang Bangun Portable Vawt Menggunakan Blade Tipe Helix Dengan Modifikasi Sudut Pitch Dan Diameter Sudut Fiaga A, Shelly Trigun; Winarno, Basuki; Hidayatullah, Nur Asyik
JEECAE (Journal of Electrical, Electronics, Control, and Automotive Engineering) Vol. 8 No. 1 (2023): JOURNAL OF ELECTRICAL, ELECTRONICS, CONTROL, AND AUTOMOTIVE ENGINEERING (JEECAE
Publisher : Pengelolaan Penerbitan Publikasi Ilmiah (P3I) Politeknik Negeri Madiun

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32486/jeecae.v8i1.615

Abstract

Pembangkit Listrik Tenaga Mikro hidro (PLTMH) adalah suatu pembangkit listrik skala kecil yang menggunakan air sebagai tenaga penggeraknya seperti, saluran irigasi, sungai atau air terjun alam. PLTMH juga termasuk dalam pembangkit yang ramah lingkungan karena tidak menghasilkan limbah apapun. Energi listrik merupakan salah satu hal yang sangat dibutuhan dalam kehidupan manusia bahkan dalam kehidupan primer masyarakat indonesia. Dengan memanfaatan sumber energi air yaitu dengan mengubah energi potensial air menjadi energi mekanik. Turbin yang berputar tersebut kemudian ditransmisikan ke generator. Kemudian generator akan menghasilkan energi listrik. Kemudian dirancanganlah sebuah pembangkit listrik portable dengan model turbin pelton. Perancangan pembangkit listrik portable dengan model turbin pelton menggunakan jumlah variasi sudu 7,6 dan 4 dengan jari jari sudu sebesar 10,75 cm dan ketebalan 20 mm. Pembangkit listrik portable menggunaka generator DC 12 Volt dan daya maksimal 10 Watt. Pengujian daya, kecepatan, dan energi dilakukan pada tahap pengujian berbeban. Pada pengujian yang dilakukan dengan variabel pengukuran berupa debit potensial air. Dari semua percobaan berhasil charging dan mengisi baterai. Diperoleh putaran minimum turbin berbeban dengan variasi sudu 4 sebanyak 438 rpm pada debit 1.6 × 10−4 (m^3/s) dan daya 1.5 Watt. Sedangkan putaran maksimal turbin berbeban dengan variasi sudu 7 sebanyak 1492 rpm pada debit 3.3 × 10−4 (m^3/s) dan daya 3,64 Watt..
Rancang Bangun Smart Plug Untuk Sistem Monitoring Dan Proteksi Hubungsingkat Listrik Arto, Budi; Winarno, Basuki; Hidayatullah, Nur Asyik
Jurnal ELTIKOM : Jurnal Teknik Elektro, Teknologi Informasi dan Komputer Vol. 3 No. 2 (2019)
Publisher : P3M Politeknik Negeri Banjarmasin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31961/eltikom.v3i2.123

Abstract

The development of technology is expected to help humans in quality of life. The industrial world is making preparations for industrial revolution 4.0 which is designed to integrate the online world with production lines in industrial processes. All production processes in the 4.0 era and running with the internet as support. The internet has become one of the human's main needs. At present, the development of the internet has not yet developed with the development of protection and control systems in the electricity sector. A breakthrough is needed to create the necessary protection systems and also control the load. A Smart Plug is a breakthrough that can accommodate this. Relays available on Smart Plugs can be used as protection and control devices on household electrical appliances. To read current and load, the current sensor (ZHT 03) and voltage sensor (ZMPT101B) are used. All sensor and relay data is performed by Arduino Nano. Whereas NodeMCU 12-E is used to connect the Smart Plug with the web and database. Smart Plug test results with the web site show that Smart Plug can work well on protection and control systems. This is evidenced by the interrupted current flowing at the load, the load compilation current is more than the value of the current that has been determined as the set point. While the control system can also work optimally. Relays can be received according to orders given from the website.