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Solar Cell Energy Utilization Using SEPIC Converter with Fuzzy Logic Control for Electric Stove Sudiharto, Indhana; Suryono, Suryono; Adila, Ahmad Firyal; Budikarso, Anang
Journal of Electrical Engineering and Computer (JEECOM) Vol 7, No 2 (2025)
Publisher : Universitas Nurul Jadid

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33650/jeecom.v7i2.12703

Abstract

In this modern era, most household appliances require electrical energy as an energy source. The use of energy in large and sustainable amounts will cause an energy crisis. Where fossil fuels will run out and cannot be renewed. Therefore, renewable alternative energy is needed that can be used as an energy substitute for one of the solutions. One of the alternative energies is solar cell energy that to supply the energy needs of electric stoves. This study discusses photovoltaic system that use 10 solar cells each with a power of 100 WP and 90 VDC. The electrical energy generated from the solar cell is 1000 WP. From the solar cell, the voltage is increased using a Single-Ended Primary-Inductor Converter (SEPIC) converter and controlled using Fuzzy Logic Control (FLC). The output voltage is used to meet the power needs of an electric stove with a maximum power of 650 W which has an average efficiency of 93%.
Rancang Bangun 3 Phase Energy Meter Untuk Analisis Kualitas Daya Di Industri Wahyudi, Sri; Prasetyono, Eka; Anggriawan, Dimas Okky; Yuliana, Mike; Budikarso, Anang
JURNAL INTEGRASI Vol. 15 No. 1 (2023): Jurnal Integrasi - April 2023
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v15i1.3244

Abstract

The quality of electric power is one of the most important things in the industrial world, with good power quality, industrial efficiency will also increase which will result in savings in production costs. Energy consumption must also be monitored in such a way for the purposes of analyzing electrical energy efficiency. Therefore, the author designed a tool called a 3 phase energy meter that can monitor energy consumption and power quality for industry with a 3 phase electrical system. The 3 phase energy meter is equipped with an IoT system so that the observation of the measurement results of every electrical machine system in the industry can be done at one point without having to go to the location. The hope is that with the 3 phase energy meter, it can improve production efficiency through power quality analysis.
Utilization of Solar Powered Water Pump System to Support Fish Cultivation : Pemanfaatan Sistem Pompa Air Tenaga Surya untuk Pendukung Budidaya Ikan Sa'adah, Nihayatus; Sudibyo, Rahardhita Widyatra; Nadziroh, Faridatun; Mahmudah, Hani’ah; Budikarso, Anang; Siswandari, Nur Adi; Milchan, Muhammad; Santoso, Djoko; Ratri, Aestatica; Firmansyah, Ferdiaz; Tasya, Salsabila; Maharani, Ellsa Christy
Dinamisia : Jurnal Pengabdian Kepada Masyarakat Vol. 8 No. 5 (2024): Dinamisia: Jurnal Pengabdian Kepada Masyarakat
Publisher : Universitas Lancang Kuning

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31849/dinamisia.v8i5.17211

Abstract

Maintaining water quality in fish ponds is crucial in aquaculture. Fish farmers strive to increase yields by improving water circulation, temperature, and pH levels in the ponds. Poor water circulation can lead to significant pH changes and disrupt the health and growth of the fish. In some areas, farmers use electrically powered water pumps for water circulation. For a more environmentally friendly solution, innovation in water pump design is needed. The proposed appropriate technology is a solar-powered water pump, which uses solar panels as the electricity source. Test results show that the solar panel can fully charge the battery from 7:00 AM to 5:00 PM. Testing of the DS18B20 temperature sensor shows good accuracy with a maximum error of 1.47%, while the pH sensor also works quite accurately with a maximum error of 1.8%, making them suitable for monitoring water quality in fish farming.