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Penilaian Kualitas Daya Sistem Kelistrikan PT. Sai-Pasuruan Ronilaya, Ferdian
Jurnal Teknik Industri Vol 8, No 2 (2007): Agustus
Publisher : Department Industrial Engineering, University of Muhammadiyah Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (210.785 KB) | DOI: 10.22219/JTIUMM.Vol8.No2.179-187

Abstract

The reliability services and power quality of power system nowadays become popular in industry because of cost energy reason, not exception for PT SAI. This company utilize control unit process to produce aluminum foil. The purpose of this research is identifying and analyzing the power quality of PT SAI and then to find the correct and economical solution to extinguish the source of bad power quality. After we identified, we conclude that 65% of load are AC motors, 25% of DC motors, 8% of heater and 2% of lightning. For over voltage and under voltage, refers to IEEE 519 – 1995 standard, PT SAI have 99% of nominal voltage. But for voltage imbalanced, refers to NEMA MG-1-1993 standard, PT SAI have 1,22%. For THD of voltage, PT SAI have 1,98%. But for THD of current, PT SAI have 34,47%. While transformer loading between 0,47% - 29,7%.
Penilaian Kualitas Daya Sistem Kelistrikan PT. Sai-Pasuruan Ferdian Ronilaya
Jurnal Teknik Industri Vol. 8 No. 2 (2007): Agustus
Publisher : Department Industrial Engineering, University of Muhammadiyah Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22219/JTIUMM.Vol8.No2.179-187

Abstract

The reliability services and power quality of power system nowadays become popular in industry because of cost energy reason, not exception for PT SAI. This company utilize control unit process to produce aluminum foil. The purpose of this research is identifying and analyzing the power quality of PT SAI and then to find the correct and economical solution to extinguish the source of bad power quality. After we identified, we conclude that 65% of load are AC motors, 25% of DC motors, 8% of heater and 2% of lightning. For over voltage and under voltage, refers to IEEE 519 – 1995 standard, PT SAI have 99% of nominal voltage. But for voltage imbalanced, refers to NEMA MG-1-1993 standard, PT SAI have 1,22%. For THD of voltage, PT SAI have 1,98%. But for THD of current, PT SAI have 34,47%. While transformer loading between 0,47% - 29,7%.
PEMANFAATAN PEMBANGKIT LISTRIK HYBRID DALAM MENDUKUNG ELEKTRIFIKASI DI KAWASAN JAVAN LANGUR CENTRE KOTA BATU JAWA TIMUR Mohammad Noor Hidayat; Ferdian Ronilaya; Irwan Heryanto/Eryk; Sapto Wibowo; Lukman Hakim
Panrita Abdi - Jurnal Pengabdian pada Masyarakat Vol. 5 No. 4 (2021): Jurnal Panrita Abdi - Oktober 2021
Publisher : LP2M Universitas Hasanuddin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20956/pa.v5i4.11286

Abstract

Javan Langur Center (JLC) is a Javan Langur rehabilitation center located approximately 10 km from the center of Batu city, East Java. To support activities at this rehabilitation center, electrical energy is needed, especially to meet the needs of lighting facilities and the operation of a primate baby incubator machine. To date, no electricity distribution network from the State Electricity Company (PLN) has entered the area. To meet these electricity needs, the electricity supply is obtained from a gen-set owned by residents which is approximately 2 km from the JLC. This Community Service Program was carried out between February and August 2020 with activities in the form of the construction of a hybrid power plant to meet the electricity needs of the JLC. The hybrid power plant that is installed is a combination of pico-hydro power plant technology (PLTPH) and solar power plant (PLTS). During the implementation of the program, there were two activity partners who played an active role, namely The Aspinall Foundation Indonesia Program (JLC manager) and the Javan Lutung Conservation Community, with a total of about 10 personnel. The result of this community service program is the installation and operation of a hybrid power generation system, which consists of a 300-watt pico-hydro power plant and a 200-watt peak solar power plant. With this hybrid power plant, the electricity needs in the JLC area for lighting and operating the Lutung baby incubator machine, with a total power of 180 watts, can be met. In addition, to maintain the sustainability of the operation and maintenance of the hybrid power plant, a transfer of knowledge and skills has been carried out to partners, namely The Aspinal Foundation Indonesia Program and the Javan Lutung Conservation Community. --- Javan Langur Center (JLC) adalah pusat rehabilitasi Lutung Jawa yang terletak lebih kurang 10 km dari pusat kota Batu, Jawa Timur. Untuk menunjang kegiatan di pusat rehabilitasi ini, energi listrik sangat dibutuhkan, terutama untuk memenuhi kebutuhan fasilitas penerangan dan pengoperasian mesin inkubator bayi primata. Sampai saat ini, belum ada jaringan distribusi listrik dari Perusahaan Listrik Negara (PLN) yang masuk di kawasan ini. Untuk memenuhi kebutuhan listrik tersebut,  pasokan energi listrik didapatkan dari gen-set milik warga yang jaraknya kurang lebih 2 km dari JLC. Program Pengabdian Kepada Masyarakat ini dilaksanakan antara bulan Pebruari sampai bulan Agustus 2020 dengan kegiatan berupa pembangunan pembangkit listrik hybrid untuk memenuhi kebutuhan listrik di JLC. Pembangkit listrik hybrid yang dipasang merupakan penggabungan teknologi pembangkit listrik tenaga pikohidro (PLTPH) dan pembangkit listrik tenaga surya (PLTS). Selama pelaksanaan program, ada dua mitra kegiatan yang berperan aktif, yakni The Aspinall Foundation Indonesia Program (pengelola JLC) dan Komunitas Konservasi Lutung Jawa, dengan total personel sekitar 10 orang. Hasil program pengabdian kepada masayarakat ini berupa pemasangan dan pengoperasian sistem pembangkit tenaga listrik hybrid, yang terdiri atas pembangkit listrik tenaga piko hidro berkapasitas 300 watt dan pembangkit listrik tenaga surya berkapasitas 200 watt peak. Dengan adanya pembangkit listrik hybrid ini, maka kebutuhan listrik di area JLC untuk penerangan dan pengoperasian mesin inkubator bayi Lutung, dengan total daya 180 watt dapat terpenuhi. Selain itu, untuk menjaga keberlangsungan pengoperasian dan pemeliharaan pembangkit tenaga listrik hybrid tersebut, telah dilakukan transfer pengetahuan dan keterampilan kepada pihak mitra kerja, yakni The Aspinal Foundation Indonesi Program dan Komunitas Konservasi Lutung Jawa.
PELATIHAN TEKNIK PRESENTASI MENGGUNAKAN POWERPOINT PADA ANAK USIA PENDIDIKAN DASAR DI LINGKUNGAN MASJID AL MU’MINUN RW-12 KELURAHAN LOWOKWARU KOTA MALANG M. Noor Hidayat; Ferdian Ronilaya; Irwan Heryanto; Muhammad Fahmi Hakim; Rohmanita D
Jurnal Pengabdian Polinema Kepada Masyarakat Vol. 7 No. 1 (2020): Jurnal Pengabdian Polinema Kepada Masyarakat
Publisher : UPT Penelitian dan Pengabdian Kepada Masyarakat Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33795/jppkm.v7i1.33

Abstract

Microsoft Office Power Point Training for Elementary School-aged Children in the Neighborhood of the Al Mu'minun Mosque RW-12 in Lowokwaru Village, Malang City, provides additional skills and motivation for elementary and middle school children to have the ability to operate and to use Microsoft Office Power Point software (MS Power Point). With the additional knowledge and expertise, these children are expected to be able to overcome problems related to their school assignments.
Pelatihan Dasar Instalasi Sel Surya untuk Remaja Di RW 12 Dusun Klandungan Desa Landungsari Irwan Heryanto; M. Noor Hidayat; Ferdian Ronilaya; Sapto Wibowo; Ika Noer Syamsiana
Jurnal Pengabdian Polinema Kepada Masyarakat Vol. 9 No. 1 (2022): Jurnal Pengabdian Polinema Kepada Masyarakat
Publisher : UPT Penelitian dan Pengabdian Kepada Masyarakat Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33795/jppkm.v9i1.133

Abstract

Kegiatan pengabdian kepada masyarakat ini dilaksanakan untuk meningkatkan pengetahuan khususnya remaja di RW 12 Desa Landungsari tentang pentingnya energi yang ramah lingkungan serta pemanfaatannya di bidang kelistrikan. Instalasi panel surya menjadi suatu keniscayaan dalam pemanfaatan energi bersih dan renewable, mengingat energi matahari merupakan energi yang cukup besar tersedia dan ramah lingkungan. Penggunakan energi tersebut dalam kehidupan sehari-hari membutuhkan pengenalan awal dan dasar pengetahuan pemanfaatan energi matahari sebagai sumber energi listrik. Dari hasil akhir pelatihan ini, peserta pelatihan dapat mengetahui bahwa energi matahari dapat dimanfaatkan secara luas di bidang ketenagalistrikan, melalui sel surya. Dalam sesi praktek, Nilai rata-rata tegangan output panel 20 Wp dan 50 Wp di kisaran 16 Volt pada saat terkena sinar matahari langsung.
PEMANFAATAN SUMBER DAYA AIR UNTUK PEMBANGKIT LISTRIK TENAGA PIKO HIDRO DI KAWASAN COBAN TARZAN KECAMATAN JABUNG KABUPATEN MALANG Mohammad Noor Hidayat; Ferdian Ronilaya; Irwan Heryanto Eryk; Sapto Wibowo; Muhammad Fahmi Hakim
Panrita Abdi - Jurnal Pengabdian pada Masyarakat Vol. 7 No. 1 (2023): Jurnal Panrita Abdi - Januari 2023
Publisher : LP2M Universitas Hasanuddin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20956/pa.v7i1.20585

Abstract

The natural tourist area of ​​Coban Tarzan waterfall, Jabung District, Malang Regency, is ± 25 km from Malang City. Until now, the fulfillment of electricity needs is obtained from generator sets owned by residents. This area has not yet received an electricity supply from the State Electricity Company (PLN). To overcome these problems, one way that can be done is to utilize existing water resources in the area as a source of electrical energy through the application of a pico-hydro power plant system. The purpose of this community service program is to build a pico-hydro power plant in the natural tourist area of ​​the Coban Tarzan waterfall with a generating capacity of 270 watts. This activity starts from April to November 2021. In carrying out this community service program, there are two activity partners, namely the Coban Tarzan Waterfall Natural Tourism Area Manager and the Sukopuro Forest Management Resort (RPH), with 6 personnel. The method used in the community service program includes 2 aspects, namely the physical aspect in the form of the construction of a pico-hydro power plant and the non-physical aspect in the form of transferring knowledge and skills to work partners regarding the operation and maintenance of the power plant. The results of this community service program are installing and operating a pico-hydro power plant with a capacity of 270 watts. With this power plant, the electricity needs in the Coban Tarzan Waterfall Natural Tourism Area can be met with a total power of around 150 watts. For a pico-hydro power plant to operate according to its capacity, it is necessary that the operation and maintenance of system equipment be carried out correctly and on a scheduled basis.  ---  Kawasan wisata alam air terjun Coban Tarzan, Kecamatan Jabung, Kabupaten Malang berjarak ± 25 km dari Kota Malang. Sampai saat ini, pemenuhan kebutuhan listrik didapatkan dari genset (generator set) milik warga dikarenakan kawasan ini belum mendapatkan pasokan listrik dari Perusahaan Listrik Negara (PLN). Untuk mengatasi permasalahan tersebut, salah satu cara yang dapat dilakukan adalah dengan memanfaatkan sumber daya air yang ada di kawasan tersebut sebagai sumber energi listrik melalui penerapan teknologi pembangkit listrik tenaga piko hidro. Tujuan program pengabdian kepada masyarakat ini adalah untuk membangun suatu pembangkit listrik tenaga piko hidro di kawasan wisata alam air terjun Coban Tarzan dengan kapasitas pembangkit sebesar 270 watt. Kegiatan ini dimulai  pada bulan April sampai bulan November 2021. Dalam menjalankan program pengabdian kepada masyarakat ini, terdapat dua mitra kegiatan, yakni Pengelola Kawasan Wisata Alam Air Terjun Coban Tarzan dan Resort Pemangkuan Hutan (RPH) Sukopuro dengan total jumlah personel 6 orang. Metode yang dilakukan dalam program pengabdian kepada masyarakat meliputi 2 aspek, yakni  aspek fisik berupa pembangunan pembangkit listrik tenaga piko hidro dan aspek non fisik berupa transfer pengetahuan dan keterampilan kepada pihak mitra kerja mengenai pengoperasian dan perawatan pembangkit listrik tersebut. Hasil program pengabdian kepada masayarakat ini berupa pemasangan dan pengoperasian pembangkit listrik tenaga piko hidro berkapasitas 270 watt. Dengan adanya pembangkit listrik ini, maka kebutuhan listrik di kawasan Kawasan Wisata Alam Air Terjun Coban Tarzan dapat terpenuhi dengan total daya sekitar 150 watt. Agar pembangkit listrik tenaga piko hidro dapat beroperasi sesuai dengan kapasitasnya, maka perlu pengoperasian dan perawatan terhadap peralatan sistem haruis dilakukan secara benar dan terjadwal.
Pemodelan dan simulasi boost converter menggunakan Python Indrazno Siradjuddin; Sapto Wibowo; Ferdian Ronilaya; Erfan Rohadi; Ilham Agung Wicaksono; Ratna Ika Putri
JURNAL ELTEK Vol 19 No 1 (2021): ELTEK Vol 19 No 1
Publisher : Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (297.634 KB) | DOI: 10.33795/eltek.v19i1.258

Abstract

Pada Paper ini dirancang model boost converter untuk charging kapasitor pada robot sepak bola beroda. Kapasitor pada kondisi ini digunakan untuk menyimpan energi pada sistem penendang robot. Karena sistem penendang membutuhkan energi yang tinggi, tegangan yang digunakan untukmengisi kapasitor harus tegangan tinggi. Oleh karena itu, pada paper ini akan dibahas pemodelan boost converter dengan tegangan output 350V.Pemodelan akan menggunakan metode averaging untuk membuat 2 persamaan dari 2 kondisi boost converter menjadi 1 persamaan state-space yang mewakili seluruh kondisi dari boost converter tersebut.Dengan memasukkan parameter-parameter yang telah dihitung ke dalam persamaan state-space tersebut akan diuji respon dari sistem boost converter dengan menggunakan simulasi python. Pada kondisi awal boost converter akan disimulasikan menggunakan critical value dari setiap komponen dari hasil perhitungan. Selanjutnya, beban kapasitor akan dirubah menjadi 4700µF sesuai dengan kapasitor yang digunakan pada robot. Dari simulasi tersebut didapatkan bahwa boost converter dengan tegangan output 350V dan menggnakan beban kapasitor 4700uF mampu menuju keadaan stabil pada waktu 0.6 s. In this paper, a boost converter model is designed for charging capacitors on wheeled soccer robots. Capacitors in this condition are used to store energy in the robotic kicking system. Because the system requires high energy, the voltage used to charge the capacitor must be high. Therefore, this paper will discuss the boost converter modeling with 350V output voltage. The modeling will use the averaging method to create 2 equations from 2 boost converter conditions to 1 state-space equation that represents all conditions of the boost converter. By entering the calculated parameters into the state-space equation, the response of the boost converter system will be tested using python simulation. In the initial conditions, the boost converter will be simulated using the critical value of each component from the calculation results. Furthermore, the capacitor charge will be changed to 4700µF according to the capacitor used in the robot. From the simulation, it was found that the boost converter with an output voltage of 350V and using a 4700uF capacitor load was able to go to a stable state in 6s.
Rancang Bangun Alat Deteksi Sag Tegangan Menggunakan Sistem Data Logger Arizal Maulana Pratama; Ferdian Ronilaya; Ajeng Bening Kusumaningtyas; Sapto Wibowo
Elposys: Jurnal Sistem Kelistrikan Vol. 8 No. 1 (2021): ELPOSYS vol.8 no.1 (2021)
Publisher : Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (657.677 KB) | DOI: 10.33795/elposys.v8i1.609

Abstract

-This research discusses the design and manufacture of a voltage sag detection device using a data logger system. Voltage sag detection device to detect the presence of voltage sag which is one of the power quality problems in industrial electrical systems. Voltage sag can cause disturbances in electronic components that are sensitive to changes in voltage values. In this device, the voltage sag is detected using a voltage sensor by reading the RMS voltage from the PLN 220V AC source, then it is converted into a digital signal. The digital signal is sent to the ESP32 module to be processed and outputs a voltage value which is then displayed on the LCD Display. The voltage value data collection is carried out every <10ms and the data taken is the voltage value <90% of the rms voltage. The data taken is then saved to a micro SD card and displayed on the LCD Display. Several tests were carried out to ensure the performance of the voltage sag detector as designed. By switching the 110 / 220VAC transformer connected to the voltage sensor for 10 seconds, 12 seconds and 17 seconds. Based on these tests, the voltage sag detector can read and store the voltage sag data when the voltage read is below 90% of the rms voltage.
Audit Energi dan Penilaian Kualitas Daya Pada Penerangan Jalan Umum Politeknik Negeri Malang Ahmad Hermawan; Galih Hardika Sakti; Ferdian Ronilaya; Satria Luthfi Hermawan
Elposys: Jurnal Sistem Kelistrikan Vol. 9 No. 3 (2022): ELPOSYS vol.9 no.3 (2022)
Publisher : Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (574.786 KB) | DOI: 10.33795/elposys.v9i3.659

Abstract

Public Street Lighting (PSL) is an important thing for campus residents especially in night time activities. PJU also function as the beauty and comfort of college student when doing activities / organization at night and also influencing the results of carried active by college student. PSL also serve to ease visions for campus guard so that it is easier to see or supervise the area around the campus from thieves or individuals who want to behave crimefully at State Polytechnic of Malang
Real Time Monitoring System Dari Active Solar Photovoltaic Tracker Berbasis Internet Of Things Izra Bagus Kurniansyah; Ferdian Ronilaya; Muhammad Fahmi Hakim
Elposys: Jurnal Sistem Kelistrikan Vol. 7 No. 3 (2020): ELPOSYS vol.7 no.3 (2020)
Publisher : Politeknik Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (640.944 KB) | DOI: 10.33795/elposys.v7i3.662

Abstract

There are still monitoring system in Solar Power Plant that do it manually. From here the idea emerged to develop a monitoring system using the IoT concept so that monitoring on Solar Power Plant that can be monitored just by looking at the website page, so current and voltage data can be easily monitored. This monitoring system is used to monitor the current and voltage of a solar power plant with solar cell capacities of 50WP, 80WP, and 100WP. In the application of using Solar Power Plant that, there is a current and voltage starting from the solar cell output, accumulator output, AC load input, and DC load input. The monitoring results that have been carried out will then be automatically sent to the Thingspeak application using the SIM800L Module. The thingspeak application will send data in the form of numbers and graphics in real time. By comparing the value of the measurement results on the Arduino and the Thingspeak application, the value of the percentage of reading errors on the measuring instrument is obtained. 3. In accordance with the tests that have been carried out, the percentage of read errors / errors can occur because of the reading accuracy of the current sensor measurements and AC-DC voltage sensors with different thingspeak applications. Each sensor has a percentage value of 0.16% AC & DC voltage sensor measurement error, 1.2% AC & DC current sensor, and 2.8% data transmission observation.