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All Journal Dimas: Jurnal Pemikiran Agama untuk Pemberdayaan REKAYASA Jurnal Teknik Mesin Teosofia: Indonesian Journal of Islamic Mysticism DIKTUM: Jurnal Syariah dan Hukum Jurnal Gizi dan Dietetik Indonesia (Indonesian Journal of Nutrition and Dietetics) JEEMECS (Journal of Electrical Engineering, Mechatronic and Computer Science) Elektrika CYCLOTRON Multitek Indonesia : Jurnal Ilmiah Jurnal Teknik Elektro dan Komputer TRIAC Energy : Jurnal Ilmiah Ilmu-Ilmu Teknik Madinah: Jurnal Studi Islam Applied Technology and Computing Science Journal Jambura Journal of Electrical and Electronics Engineering Proceedings of Annual Conference for Muslim Scholars Journal of Borneo Holistic Health INAJEEE (Indonesian Journal of Electrical and Electronics Engineering) Jurnal JEETech JTEIN: Jurnal Teknik Elektro Indonesia JASEE Journal of Application and Science on Electrical Engineering JTECS : Jurnal Sistem Telekomunikasi Elektronika Sistem Kontrol Power Sistem dan Komputer Jurnal Fortech SinarFe7 Keris: Journal of Community Engagement JOURNAL OF MEDICAL RECORDS AND HELATH INFORMATION Al-Muzdahir: Jurnal Ekonomi Syariah Prosiding SEMNAS INOTEK (Seminar Nasional Inovasi Teknologi) Jurnal Penelitian dan Pengabdian Masyarakat Multidisciplinary Journal of Education, Economic and Culture Miftah Journal of Islamic Education Sains Data Jurnal Studi Matematika dan Teknologi E-Amal: Jurnal Pengabdian Kepada Masyarakat Health Access Journal Signal and Image Processing Letters Jurnal FORTECH Rahmah Annusfy
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Journal : Jurnal Fortech

Rancang Bangun Automatic Transfer Switch (ATS) - Automatic Main Failure (AMF) Untuk Otomatisasi Genset Berbasis Mikrokontroller Menggunakan Metode Fault Tolerance Dikhyak Falakhul Akmal, M.; Alfita, Riza; Ulum, Miftachul; Haryanto, Haryanto; Pramudia, Mirza; Vivin Nahari, Rosida
Jurnal FORTECH Vol. 2 No. 2 (2021): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v2i2.205

Abstract

Often electronic equipment is damaged due to a sudden power outage. This often happens due to uncertain natural conditions, forcing PLN to carry out maintenance on its electricity distribution equipment. In addition, many electrical equipment can be damaged by sudden power outages. To be able to overcome this, people usually use generator to overcome supply failures manually. Based on this background, the author created an Automatic Transfer Switch (ATS) – Automatic Main Faillure (AMF) based on the STM32F103C8T6 microcontroller which is applied to generators when there is a power outage. The ATS – AMF device is made using Relays, PZEM004T Voltage Sensors, magnetic contactors, Miniature Circuit Breakers, stepdown circuits, LCD TFT and STM32F103C8T6 as control systems. This system uses the Fault Tolerance method so that the system can continue to run even if there is damage to the main battery by adding a backup battery as a backup. The results of this study, the Automatic Transfer Switch (ATS) circuit found that the average time needed for the generator to start is 2.5 seconds and the time needed for the generator to produce a stable voltage is 5.7 seconds, thus this time is used as the author's reference in determining the right time to switch the load on the microcontroller so that the load is not damaged due to unstable generator voltage. Whereas in the Automatic Main Failure (AMF) it was found that the Stepdown circuit used to detect whether or not PLN electricity was very responsive because the stepdown circuit was installed in parallel at the PLN source and can be proven by the results in the Arduino application.
Rancang Bangun Timbangan Buah Digital Menggunakan Metode YOLO Evita, Clarisna; Alfita, Riza; Haryanto, Haryanto; Vivin Nahari, Rosida; Ulum, Miftachul; Pramudia, Mirza
Jurnal FORTECH Vol. 3 No. 1 (2022): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v3i1.105

Abstract

The rapid development of technology has created various conveniences in all aspects of human life. One of the fields of technology that is rapidly developing is the world of electronics, which demands digitization to facilitate human activities. For example in the field of trade, humans want a process that is practical and easy. Weight measurement is one of the problems that hinders the trading process, because it is still done manually and is less efficient. The purpose of making a design of automatic digital scales based on fruit images using the yolo method (you only look once) is to determine the type and weight of fruit using a Load Cell sensor simultaneously and accurately. The working principle of this tool is the first, the detection of fruit types is processed by a USB Webcam by taking video from the Webcam and then processing it using the Yolo method to identify the type of fruit. The second stage is input from the Load Cell sensor sending object data read to the Raspberry Pi as the main controller. to determine the weight of the fruit, then the last stage is displayed on the LCD and the results can be printed out as proof of purchase receipt. From the LCD directly displays output in the form of price, weight and type of object being weighed. The Yolo method can detect objects and colors and has high detection speed and accuracy.
Perancangan Lampu Jalan Dengan Panel Surya Terintegrasi Dan Pengaturan Otomatis Intensitas Cahaya Ulum, Miftachul; Ogik Saputra, Khoirul; Kurniawan Saputro, Adi; Neipa Purnamasari, Dian; Fiqhi Ibadillah, Achmad
Jurnal FORTECH Vol. 5 No. 1 (2024): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v5i1.5103

Abstract

Indonesia is a country that has a tropical climate and is located on the equator and gets abundant sunlight all year round. So the use of solar energy as an alternative energy is very popular and is starting to be developed in all corners of the country by carrying out a lot of research and testing. In this research, solar cells are used as a source of electrical energy for street lights. The function of these components is SCC (solar charge controller) which regulates and controls the battery charging process, electrical energy is stored in the battery which functions to supply electrical power at night. The inverter functions to change direct current (DC) into alternating current (AC). The photocell sensor functions to regulate the lights, during the day the lights will turn off and turn on at night. There is a passive infrared receiver (PIR) sensor used to detect human presence. This sensor is used to control the light intensity of the lamp, if it is not detected by humans, the lamp will turn on normally. If human presence is detected, the lights will turn on brightly. There is also an automatic solar panel cleaner using a wiper which functions when the solar panels are dirty. The detection method uses current and voltage sensors, when sunlight received by the solar panel and the resulting electric current voltage decreases, the wiper will automatically activate to clean dirty solar panels, thereby maintaining optimal solar panel performance. The solar panel is equipped with a support/pole feature that is designed to go up and down, which makes it easier to use and does not require using a ladder during the maintenance process. The method used in this research is fuzzy. The fuzzy method is used for decision making on wiper conditions. In the research results, the results of this system were obtained from 12 trials of tool measurement results, Matlab simulations, and manual fuzzy logic calculations with a success rate of 91.6%.
Co-Authors Achmad Fiqhi Ibadillah Adi Kurniawan Saputro Affandi, Eko Kholid Afira Ainur Rosidah Agustino, M. Rizky Aji Wibisono, Kunto Al Maghfuri, Rahmah Salsabila Aminah , Siti Andi Pratama, Febrian Andini, Tarrisma Delvy Aqiel Muhammad, Dlobith Cakra Buana, Arya Sula Choirony, Iklil Vurqon Damayanti, Vivi Dewi Rachmawati Dian Neipa Purnamasari Diana Rahmawati Dikhyak Falakhul Akmal, M. Dwiky Ariyanto, Kemas Efendi, Akhmad Erari, Yosua Erly Juliyani Evita, Clarisna Fahmi, Monika Faswia Faswia Fahmi, Monika Febriana, Iftitah Fi Jaisyi, Muhammad Fiqhi Ibadillah , Achmad Firly Abdillah, Fauzan Hadi, Abd Hardiansyah, Muttaqin Hardiwansyah, Muttaqin Hariyanto, Mohammad Slamed Haryanto - Haryanto Haryanto Hasanah, Faidatul Hidayatul Nurohmah, Hidayatul Hidayatulloh, Mohammad Husniyah, Faridatul Ibadillah, Achmad Fiqi ilyasa, yois Balian Iyabu, Sissy Rahmatia Khabibiy, Odiy Syahnurrokhim Khoirun Nisa Koko Joni Kuriawan S, Adi Kurniawan Saputro, Adi Kustina, Fariha Laksono, Deni Tri Latiana, Eka Lukman Hakim Machrus Ali Machrus Ali Maghfuri, Rahmah Salsabila Al Maknunah, Lu'lu'ul Mentari, Ajeng Ayu Mirza Pramudia MS, Achmad Ubaidillah Mufidah, Salsabila Nur Muhammad , Dian Purnomo Mun'im , Abdul Mun'im, Abdul Mun’im, Abdul Mun`im, Abdul Mun’im, Abdul Musthofa, R. Zainul Muzajjad, Ach. Nissa, Choirun Ogik Saputra, Khoirul Patressiya, Lita Riza Alfita Roziqin, Mohamad Fatkhan Sholeh Abdullah, Wahyu Sholihuddin, Sholihuddin Sri Winarni Sukri, Hanifudin Tri Laksono, Deni Ubaidillah, Achmad Vivin Nahari, Rosida Zawawi , Abdullah Zawawi, Abdullah