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Journal : Engineering and Technology International Journal (EATIJ)

Recloser Placement Optimization In The PDP-03 Radial Network Distribution System Using Ant Colony Optimization (ACO) Sudjadi Sudjadi; Bambang Winardi
Engineering and Technology International Journal Vol 4 No 03 (2022): Engineering and Technology International Journal (EATIJ)
Publisher : YCMM

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (720.775 KB) | DOI: 10.55642/eatij.v4i03.240

Abstract

The increasing demand for electricity demanded that the power distribution system has a good reliability. To improve the reliability of electric power systems, PT. PLN Area Semarang use Recloser on the electricity network. Nowadays, the determination of recloser position is very important in reliability of electrical power system. Reliability index used in distribution systems are SAIFI and SAIDI. The value of SAIFI and SAIDI can be calculated from the outage time and the failure rate occurred in one year. Reliability can be concluded better if SAIFI and SAIDI smaller. This research aims to determine the optimal placement of recloser location on the electrical network in feeder PDP 03 Pudak Payung substation. The method used for the recloser location placement is Ant Colony Optimization (ACO) using Matlab Software R2014a. From simulation result, it can be concluded that the reliability value before and after placement recloser changed. SAIFI and SAIDI before recloser placement is 1.0172 times/year and 2.5435 hours/year. Optimal placement location for 1 recloser is at a location 4 with a value of SAIFI and SAIDI is 0.3361 times/year and 1.0456 hours/year. While for 2 reclosers is at a location 2 and 7 with a value of SAIFI and SAIDI is 0.26755 times/year and 0.86069 hours/year.
The Effect Of Distributed Generation (DG) Placement On Electricity Reliability Agung Nugroho; Ajub Ajulian ZM; Bambang Winardi
Engineering and Technology International Journal Vol 5 No 01 (2023): Engineering and Technology International Journal (EATIJ)
Publisher : YCMM

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55642/eatij.v5i01.288

Abstract

The continuity of the supply of electric power is becoming a greater demand from consumers. Feeder MRA05 GI Mrica Banjarnegara supplies electrical energy for parts of Banjarnegara Regency until 2020 has 4 distributed generations, namely PLTMH Sigebang 500 KW, PLTMH Kincang 320 KW, PLTMH Adipasir 320 KW, PLTMH Rakit 500 KW. Based on recorded data in 2020, the MRA05 feeder experienced 15 blackouts/year, with a total outage duration of 38.68 hours/year, of course it was enough to disrupt the continuity of the distribution of electrical energy to consumers. This research discusses the magnitude of the reliability index (SAIFI, SAIDI, CAIDI) when the DG is not installed and installed. The calculation of the magnitude of the reliability index was carried out using the Reliability Index Assessment (RIA) method, the calculation results were compared with the results of the ETAP 12.6.0 software simulation. The reliability index is based on the RIA method when DG is not installed, the SAIFI value is 2.96228 interruptions/year, the SAIDI value is 9.1185 hours/year, the CAIDI value is 3.078 hours/interruption, When DG is installed, the SAIFI value is 2.96228 disturbances/ year, the SAIDI value is 7.567 hours/year, the CAIDI value is 2.5546 hours/interruption.
Simulation Of Electrical Load With An Over Load System Shedding Winardi, Bambang; Sinuraya, Enda Wista; Karnoto, Karnoto; ZM, Ajub Ajulian
Engineering and Technology International Journal Vol 6 No 01 (2024): Engineering and Technology International Journal (EATIJ)
Publisher : YCMM

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55642/eatij.v6i01.654

Abstract

A break in one of the circuits in a double circuit transmission network system can cause the system to overload. Where excess load on the transmission network system can cause quite dangerous impacts. The Over Load Shedding system is a protection system for the electric power transmission network which aims to prevent widespread blackouts by removing certain predetermined loads. By using the Arduino Mega 2560 as a control center, security against load abnormalities can be carried out and can be monitored automatically using Scada, apart from that, PMT taping for load balancing can also be done using Scada. The Arduino Mega 2560 will read the current on each phase wire using the ACS712 current sensor to detect the load of one of the circuits to be aware of whether it is overloaded or not. This simulator tool has carried out several measurements and tested how to operate it. This tool has a fairly high level of work accuracy, reaching 85% success in operation. So it is hoped that this tool can provide knowledge to the wider community about over load shedding systems in maintaining the electric power transmission system properly and easily to understand.
Co-Authors Aat Ruchiat Nugraha Abda Abda Abdul Syakur Adevia Arva Puspa, Adevia Arva Adhi Warsito Aditya Teguh Prabowo Agung Nugroho Agung Nugroho Agung Warsito Ajub Ajulian Zahra Macrina Ajub Ajulian ZM Ajub Ajulian ZM Ajub Ajulian ZM Ajub Ajulian ZM Al Manshur, Rif'an Andang Purnomo Putro, Andang Purnomo Anhar Ashari AP Hendra Pradana Arga Mahardika Arifan Nurdani, Imam Aris Triwiyatno Arnes Yuli Vandika Arsanto, Fariz Hasbi Assyidiq, Muhammad Alfin Bayu Primastha, Bayu Bekti, Rizky Catur Cahya, Galuh Indra Cahyo Wicaksono Catur Widiatmoko D, Abraham Bayu Danang Widyanarko, Danang Demas Dwiyan Wahyanto, Demas Dwiyan Denis Denis Denis Denis Dinda Hapsari Kusumastuti, Dinda Hapsari Dito Anurogo, Dito Eko Handoyo Enda Wista Sinuraya Erlin Dolphina Erwin Adriono Faisal Oktavian Suryaadmaja, Faisal Oktavian Faiz Muqorrir Kaaffah Fajar Sihombing, Fajar Fatima Suatrat Gumelar, Yulianto Agung Guspan Hidi Susilo Hafiizh, Naufal Hamirul Hamirul Hermawan Hermawan Heru Winarno Hidayat, Fian I Ketut Suada Ikha Nurjanah, Ikha Imam Arifan Nurdani IMAM SANTOSO Imam Santoso Ismi Dina Solikha Iwan Setiawan Jaka Windarta Jayabadi, Dennis Satria Wahyu johar pradityo, johar Joko Windarto Joni Joni Judijanto, Loso Juli Setiawan, Juli Juningtyastuti Juningtyastuti Karnoto Karnoto . Krisna Zain Murtafi' Kurnanda Rizky Aditama, Kurnanda Rizky Kurniawan Fitrianto Laksono, Tegar Ubo M. Yudi Nugroho Makarim, Alam Afif Mardikawati, Budi Marlia Susanti, Marlia Masaji, Masaji Mashduuqi, Ali Meigy Restanaswari Kartika, Meigy Restanaswari Milzam Andali Lababan, Milzam Andali Mochammad Facta Mohammad Magna Mensani Muhamad, Agung Tryono Muhammad Alvin Ridho, Muhammad Alvin Muhammad Azhar Irwansyah Muhammad Fadly Yudhistira Taufik Muhammad Fayyadl Muhammad Hasnan Albab, Muhammad Hasnan Muhammad Rizal Arfianto Muhammad Rizki Kurniawan, Muhammad Rizki Muhammad Yahya Mustafa, Fandy Nizam, Zain Oding Oding P, Nanang Bagus Pradipika, Charisma Lingga Prasetyo Kristiono Nugroho Prawira, Andre Barry Prayogo, Wisnu Purwanto, Aji Putra, Adhitya Indrajaya Ragil Adi Nugroho Reifeldi, Haikal Alfaro Ricky Salpanio Rita Rahmawati Rizal Fahmi Saefuddin Rizky Pranata Budiono, Rizky Pranata Rocha, Thiago Santoso, Imam Saputro, Jonatan Martino Windi Sigit Wisnu Habsoro Sinaga, Frans May Daniel Singgih Mustiko Aji Siwi, Yordan Raka Soelistianto, Farida Arinie Sophia Rahmi Sudjadi Sudjadi Sudjadi Suroso, Segal Mancini Susatyo Handoko Syamsiar, Syamsiar Tedjo Sukmadi Tedjo Sukmadi Tejo Sukmadi Thariq Fathony Aziz, Thariq Fathony Tri Ujianto, Tri Trias Andromeda Weraman, Pius Wicaksena, Abimanyu Guntur Wijaya, Rifqi Wijaya, Yogi Anastra Danu Windarta, Jaka Wisna Dwi Ariani Wisnu Aji Nugrahadi, Wisnu Aji Yosua Alvin Adi Soetrisno Yuanis, Yuanis Yulianto, Agam Zwingli Hilkia Batubara