Claim Missing Document
Check
Articles

PENGARUH LAPISAN HIDROFOBIK PADA PERMUKAAN ISOLATOR KERAMIK TIPE POST TERHADAP TINGKAT ARUS BOCOR PADA KONDISI KERING DAN BASAH Wijaya, Rizki Adi; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 1 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

In this research will be explained about the effect of silicon rubber coating on ceramic insulators type post on leak current levels in dry and wet conditions. The research method used is to collect data through testing leakage current and contact angle at the High Voltage Laboratory, Department of Electrical Engineering, Faculty of Engineering, Brawijaya University and simulating the electric field distribution in Ceramic Insulator Type Post with FEMM 4.2 software. The tests were conducted using high voltage AC with variations of voltage tests of 4.8,12,16,20, and 25 kV. The results obtained in this research are that the largest electric field is near the voltage area. Then we get a contact angle of more than 90° or is hydrophobic when coated with silicon rubber, whereas the surface of the insulator which is not coated with silicone rubber has a contact angle of less than 30° or is hydrophilic, and there is an effect of the silicon rubber layer on the leakage current level, namely the greater the wetting discharge value and test voltage, the greater the leakage current value and the greater the surface resistance value. and electrical power losses Keywords: ceramic insulator,post type, contact angle, leakage current, field intensity, hydrophobic
PENGARUH PERBESARAN LUAS ELEKTRODA TERHADAP TEGANGAN TEMBUS PADA DIELEKTRIK UDARA MENGGUNAKAN SUMBER TEGANGAN TINGGI AC Angkasa, Aulia; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 1 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Breakdown voltage events often occur as a failure of the insulation system in electrical equipment, whether in liquid dielectrics in the form of oil or gas dielectrics in the form of air. An example of a breakdown voltage phenomenon in an electric power system such as a substation is failure (breakdown) between two contacts/conductors of a circuit breaker (CB) or transformer in a substation. The difference in the dimensions of the area of the two contacts/conductors of the circuit breaker influences the distribution of the electric field around the contacts so that it can influence the probability of a breakdown voltage occurring between the two contacts of the circuit breaker which can be likened to two electrodes with different dimensions. In calculatingthe probability of a breakdown voltage occurring, the Gaussian distribution function can be used based on the law of electrode area enlargement (enlargement law). Therefore, this research will describe the effect of increasing the electrode area on the characteristics of the breakdown voltage using an AC (Alternating Current) voltage source. The research method used is by taking data through testing breakdown voltage and leakage current at the High Voltage Laboratory, Department of Electrical Engineering, Faculty of Engineering, Brawijaya University and simulating the distribution of the electric field at each variation of electrode magnification a, 2a, 3a, 4a, and 5a using FEMM 4.2 software. The results obtained in this research are the influence of increasing the electrode area on the characteristics of the breakdown voltage and leakage current. Keywords — Breakdown voltage; Leakage current; Probability; Enlargement law; Electric field
ANALISIS PERBAIKAN TEGANGAN DAN RUGI DAYA PADA PENYULANG JETIS PT PLN (PERSERO) UP3 KEDIRI MENGGUNAKAN ETAP 19.0 Allaam, Hisyam Ghozi; Utomo, Teguh; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

PLN UP3 Kediri is a company that manages the Jetis Feeder distribution channel which is facing voltage drops and power losses. There are several methods to overcome this incident, such as conductor uprating, substation voltage uprating, and capacitor bank installation. With this improvement, it is hoped that the voltage drop and power loss values will be within the range determined according to SPLN (±5% for voltage drop and -10% for power loss) and ETAP alerts will be ±1% of the nominal limit. This research aims to determine the value of voltage drop and power loss before and after the repair method is carried out and determine the most efficient method. This research shows that under existing loading conditions, the Jetis Feeder is in normal condition. Under full load conditions (100%), the Jetis Feeder has a voltage drop of 4.539% and a power loss of 3.182%. The voltage drop value in this condition is still within the safe condition limit according to SPLN, but has entered the alert condition in ETAP, namely >4%. Under these conditions, repair efforts are needed to overcome voltage drops and power losses. After carrying out repair efforts, the voltage drop and power loss values for the 150 mm2 conductor uprating were 4.445% and 5.158%, the priority conductor uprating was 4.135% and 4.658%, the substation voltage uprating was 1.986% and 4.995%, and the capacitor bank installationwas 2 .5% and 4.558%. Keywords – Voltage Drop, Power Loss, Power Flow, ETAP
ANALISIS PENGARUH KADAR AIR DAN CAMPURAN FENOL TERHADAP TEGANGAN TEMBUS MINYAK KEMIRI SUNAN SEBAGAI PERTIMBANGAN MINYAK ISOLASI ALTERNATIF Ardiansyah, Muhammad Doni; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

This thesis discusses the enhancement of the dielectric strength of sunan candlenut oil by using phenol additives so that it can be used as an alternative liquid insulation for high voltage equipment. The increase in breakdown voltage level was achieved by adding various mixtures of phenol. Purification through heating was carried out to reduce the water content in the sunan candlenut oil. Electrical testing (breakdown voltage test circuit), physical testing (water content testing using the oven method), as well as calculating conductivity values (by measuring leakage current using a DC circuit) and permittivity (using an LCR multimeter) were conducted. These tests were performed to determine the feasibility of sunan candlenut oil as an insulating oil. The test results showed that the breakdown voltage of pure sunan candlenut oil was 11.67 kV/2.5mm, which did not meetthe SPLN 49 standard of 1982, which is 30kV/2.5mm. The addition of phenol successfully increased the breakdown voltage to 61.91 kV/2.5 mm, and with heating, it reached 67.27 kV/2.5mm. The highest breakdown voltage of 67.27 kV/2.5mm was obtained by mixing 8% phenol (32 ml) and heating the sunan candlenut oil simultaneously. The test results of relative permittivity showed values of pure sunan candlenut oil and 8% phenol-added sunan candlenut oil as 9.89 and 10.25, respectively. In the conductivity test, the values for pure sunan candlenut oil and 8% phenol-added sunan candlenut oil were 22,6×10−9 S/m and 21,6×10−9 S/m,respectively. It can be concluded that the addition of phenol can inhibit the occurrence of breakdown voltage and maintain oil stability, while heating can reduce the water content from 900 ppm to 596.7 ppm. In terms of water content, the modified sunan candlenut oil does not yet meet the maximum standard allowed by SPLN 1982, which is ≤30 ppm. However, in terms of breakdown voltage, the modified sunan candlenut oil has met the SPLN 49 standard of 1982, which is 30 kV/2.5 mm. Keyword: Phenol, water content, insulating oil, kemiri sunan oil, breakdown voltage. conductivity, relative permittivity
PENGARUH PERBESARAN LUAS ELEKTRODA TERHADAP PROBABILITAS TEGANGAN TEMBUS PADA DIELEKTRIK MINYAK MENGGUNAKAN SUMBER TEGANGAN TINGGI AC Latif, Nabila Fauziah; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Failure of the insulation system in electrical equipment results in breakdown voltage which can occur in a gas dielectric in theform of air or a liquid dielectric in the form of oil. The breakdown voltage that occurs in transformer oil is due to the presenceof contaminants between the two conductors that bridge the space between the two conductors imperfectly. Transformers havedifferent sizes depending on the maximum power that can be handle. The phenomenon of differences in conductor dimensionsin transformers that have different sizes is likened to electrodes with different cross-sectional area dimensions. The differencein conductor dimensions can affect the distribution of the surrounding electric field which affects the probability of breakdownvoltage. This research will describe the effect of electrode area enlargement on the probability of breakdown voltage in oildielectric using AC (Alternating Current) high voltage source. The research method used is by taking data directly conductedat the High Voltage and Application Laboratory of the Department of Electrical Engineering, Faculty of Engineering, Universitas Brawijaya. Simulation of electric field distribution was carried out using FEMM 4.2 software. The variation of cross-sectional area of the electrode rod arrangement used is A, 2A, 3A, 4A, and 5A. The data taken includes the value of oil conductivity, leakage current, and breakdown voltage. Measurement of oil conductivity using a high voltage insulation tester with output in the form of oil resistance value. Measurement of leakage current value is carried out using a test voltage variation of 2 kV, 4 kV, and 6 kV. The breakdown voltage test was carried out using the Up and Down method in 26 trials and analyzed the probability of breakdown based on the Normal Distribution (Gaussian) graph. The results obtained from this study are the greater the electrode area, the more even/homogeneous the electric field distribution, the greater the leakage current value so that the oil resistance between the electrodes is getting smaller, the larger the electrode area, the smaller the breakdown voltage value and the greater the probability of breakdown. Keywords: Shell Diala oil B, rod electrode, leakage current, probability, breakdown voltage
EVALUASI TEKNIS PADA PENGOPERASIAN PEMBANGKIT LISTRIK TENAGA MIKRO HIDRO (PLTMH) KALI JARI DESA GADUNGAN KABUPATEN BLITAR Shidqi, Fahruddin; Utomo, Teguh; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Kurangnya kegiatan perawatan membuat pihak pengelola dan operator kesulitan mengidentifikasi kinerja dari PLTMH Check Dam V Kali Jari. Maka dari itu, perlu dilakukan evaluasi terkait aspek teknis dan kinerja dari PLTMH untuk mengetahui kondisi sesungguhnya saat kondisi berbeban, dan potensi sumber daya air yang ada. Berdasarkan hasil evaluasi, pengukuran debit air yang didapat dengan metode apungan bernilai sebesar 0,4760 m3/s, sedangkan pengukuran tinggi jatuh air (head) denganmetode waterpass, didapatkan hasil Heff sebesar 8,014 meter. Berdasarkan potensi sumber daya air tersebut, potensi daya listrikyang dapat terbangkitkan secara teori sebesar 17,96 kW. Akan tetapi, dengan potensi daya terbangkitkan tersebut, daya terpasang pada PLTMH Check Dam V Kali Jari sebesar 15 kW dan generator terpasang sebesar 8 kW. Penggunaan daya listrik rata-rata tiga fasa PLTMH Check Dam V Kali Jari selama dua hari pengukuran pada pukul (18.00 – 22.00 WIB) sebesar 2.1761 kW untuk daya nyata dan 2.7089 kVA untuk daya semu. Perbandingan daya nyata rata-rata terpakai dan daya generator sebesar 27.0894%, sedangkan perbandingan daya nyata rata-rata terpakai dengan daya terpasang, maka didapatkan perbandingan rata-rata sebesar 14.4477%. Hal ini menunjukkan kurang optimalnya penggunaan daya pada PLTMH Check Dam V Kali Jari. Berdasarkan ketentuan umum yang berlaku pada IMIDAP (Integrated Microhydro Development and Application Program) tahun 2009 oleh Kementerian ESDM, pada beberapa komponen sipil, mekanikal dan elektrikal pada PLTMH Wot Lemah sudah layak namun perlu dilakukan perbaikan pada beberapa komponen terutama pada komponen transmisi mekanik. Kata Kunci: PLTMH, Evaluasi, Metode Apungan, Metode Waterpass, Daya Nyata, IMIDAP.
PENGARUH PENAMBAHAN FENOL TERHADAP TEGANGAN TEMBUS AC PADA MINYAK JARAK (CASTOR OIL) SEBAGAI ALTERNATIF BAHAN ISOLASI CAIR Handoyono, Tito Tri; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Mineral oil-based transformer insulation has several problems, namely that it is not environmentally friendly, cannot be decomposed, cannot be renewed and its availability is decreasing. Vegetable oils are an alternative to transformer insulation, one of which is castor oil. This research aims to describe castor oil as an alternative to mineral oil for transformer insulation materials based on SPLN 49 of 1982. This research was carried out using samples of pure castor oil and castor oil with phenol additives of 1.25%, 2.5%, 3.75%. Water content testing is carried out using the heating method with the aim of reducing the water content in pure castor oil. Heating was carried out at 70ºC for 60 minutes. Breakdown voltage testing is carried out to determine thedielectric strength of castor oil. Based on the minimum requirements of SPLN 49 of 1982, the breakdown voltage is >30 kV. Permittivity and conductivity tests were also carried out on castor oil. The relative permittivity value must meet the specified requirements. The permittivity value for pure castor oil is 12.59 F/m, for castor oil with 3.75% phenol additive it is 12.77 F/m. The conductivity value of pure castor oil is 93.66 × 10^(-9)S/m, while the conductivity value of castor oil with 3.75% phenol as an additive is 3.73 × 10^(-9) S/m. Assay Pure castor oil water uses the gravimetric method and shows that the water content before heating is 3300 ppm, then heating treatment can reduce the water content by 33.06 ppm or 1%. Testing the breakdown voltage of pure castor oil which did not go through a heating process was 30.65 kV, while the breakdown voltage value of pure castor oil which was heated was 36.67 kV, this heating increased by 18.63%. The highest breakdown voltage value for castor oil with 3.75% phenol additive was 46.05 kV at room temperature, while the highest breakdown voltage value for castor oil with 3.75% phenol additive was 58.97 at a heating temperature of 70ºC for 60 minutes. Keyword: heating, Castor oil. Water content, phneol, breakdown voltage
PENGARUH PERBESARAN LUAS ELEKTRODA TERHADAP PROBABILITAS TEGANGAN TEMBUS PADA DIELEKTRIK UDARA MENGGUNAKAN TEGANGAN TINGGI DC Fianto, Aulia Ramadhan; Dhofir, Moch.; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Breakdown voltage can be a random phenomenon that can cause electrical damage, especially DC electric power systems which are being developed because they have advantages over AC electric power systems. One of the components in an electric power system is a conductor wire with a small resistance value which can reduce power losses. One way to reduce the resistance value is to increase the cross-sectional area of the conducting wire, which can also be called the law of area enlargement. This research will describe the effect of increasing the electrode area on the probability of breakdown voltage in air dielectrics using high DC voltage. Leakage current data collection is needed to obtain the air resistance value at each electrode magnification and breakdown voltage data collection using the up and down method is carried out at the High Voltage Laboratory, Department of Electrical Engineering, Faculty of Engineering, Brawijaya University. Electric field simulations were carried out using FEMM 4.2 software with varying magnification of electrode areas A, 2A, 3A, 4A, and 5A. Keywords - Enlarging of Area, electrode, breakdown voltage, high voltage DC
KARAKTERISTIK PERUBAHAN POLA TEGANGAN DAN ARUS PEMBEBANAN MODUL SURYA DENGAN REFLEKTOR ALUMINIUM PADA SUDUT INKLINASI YANG BERVARIASI Syarif, Habib; Wibawa, Unggul; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 2 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Electricity is considered a vital energy source that is inseparable from the lives of communities, companies, and industries. This is evidenced by the significant increase in demand in Indonesia. Due to the increasing demand for energy, there is a need to transition to renewable energy. Indonesia has a potential of 442 GW of renewable energy, with the largest potential being solar energy at 207.8 GWp. Solar energy can be converted into electrical energy using solar modules. However, the efficiency of solar modules needs to be considered and improved, for example by installing reflectors positioned at an appropriate angle of inclination. The research method used was an experiment involving the installation of aluminum reflectors and variations in inclination angles. The reflectors were installed on one side or both sides, while the inclination angles varied between 30°, 45°, 60°, 75°, and 90°. The solar module used was a 20WP polycrystalline type connected to 13 units of 1.5-Watt DC LED lamps, each with its own switch. Voltage, current, and output power data are presented in line graphs, which yield regression equations that facilitate data analysis. The research findings consist of voltage, current, sunlight intensity, and temperature data provided in a table. The obtained data was analyzed to produce other quantities such as output power and input radiation. Voltage, current, and output power data are presented in line graphs, which yield regression equations that facilitate data analysis. Additionally, the top ten output power data will be displayed in a bar graph. The operation of installing a reflector has a significant impact on the voltage and current values at inclination angles of 60˚ and 75˚. The highest output power is achieved when using two aluminum reflectors, an inclination angle of 60˚, and a load of 19.5 Watt. Keywords: solar module, voltage, current, reflector, output power.
KAJIAN TEKNIS INTEGRASI PHOTOVOLTAIC PADA PEMBANGKIT LISTRIK TENAGA MIKRO HIDRO (PLTMH) KALI JARI UNTUK MENGATASI KEBUTUHAN DAYA PELANGGAN Siagian, Alfandri; Utomo, Teguh; Hasanah, Rini Nur
Jurnal Mahasiswa TEUB Vol. 12 No. 3 (2024)
Publisher : Jurnal Mahasiswa TEUB

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Currently, the Kali Jari MHPP located in Gandusari district of Blitar has supplied as many as 28 customers with a maximum power on an installed load of 6.16 kVA. As time goes by, the number of residents in this village will increase. It is estimated that by 2050, there will be 58 customers that will be supplied by the PLTMH Kali Jari with a maximum power at installed load of 12.76 kVA. Therefore, it is necessary to carry out studies to make power additions to the installed capacity. Using a renewable energy source, the intensity of abundant solar radiation, the addition of power to the installed capacity can be achieved by using the hybrid Kali Jari MHPP system with a photovoltaic system. To meet the power shortage, the photovoltaic system is designed with other supporting components. The design of this photovoltaic system uses a module with a capacity of 300 Wp of 15 pieces, 48 V 100 Ah batteries of 4 pieces, Battery Control Regulator (BCR) with a maximum current of 70 A of 1 pieces, and a 3 phase inverter of 8 kW of 1 piece. Keywoards: Renewable Energy, MHPP, Photovoltaic, Hybrid System.
Co-Authors Abdi Pandu Kusuma Abdurrasyid Jahdan ABDURROHIM, MOHAMMAD SALMAN Achmad Basuki Achmad Yahya Chasanuddin Adi, Hari Purnomo Aditya Bagus Setyawan Aditya Dwi Putranto Adityara, Farrel Billy Ahmad Fajar Robiyanto Ahsein Jomaa Alshibani Ainul Hayat Akbar, Alif Aulia Al Fawwaz, Muhammad Ghozi Alief Aulia Pradika Wijaya Alief Nasruddin Allaam, Hisyam Ghozi Alsabah, Mus Ali Altajim, Fauzan Aiman Amir Fahmi Ananda, Andhika Dwi Andreyanto, Tegar Setyo Andrian Dwiputro Andy Surya Adi Angkasa, Aulia Anik Nur Handayani Ansyaruddin Rahmatdiansyah Anthony Wijoyo Ardiansyah, Muhammad Doni Ardiansyah, Rendy Ardiansyah, Rizky Ariefianto, Rizki Mendung Arif Resnu Putra Aripriharta - Ariq Kusuma Wardana Arizky Erwinsyah H. Armeyelia, Bulan Assariy, Muhammad Faiz Astuti, Khairina Noor Avrizal Riva Belan Ayob, Shahrin Md. Azmi, Azralmukmin Banu Hermawan Yuditya Basuki Winarno Basuki Winarno, Basuki Bernadus Blasio Arsoni Berry Bustan Bastian Bimo Ardiansyah Bobby Pratama Budiono Mismail Censa Widianing Mulya Baskara Chandra Wiharya Chandra, Aulia Adi Cita Rahiim Tama Claudio Bryllian Adam Z. Corina Martineac Danang Dwi Andaru Dandhi Tri Laksono David Suban Koten Derry Putranugraha Devanda Antonius Y. R. Dhofir, Mochammad Dicky Indratama Didik Rahadi Santoso Dimas Diar Aidi Ditza Pasca Irwangsa Dodit Suprianto Duta Narendratama Dzikrullah, Hafeeza Rinn Edypoerwa, Mugni Labib Edypoerwa, Mugni Labib Eka Maulana Eko Kuncoro Erwan Aryanto Erya Septy Dwi Wardhani Fadhil Ilma Fairuz Milkiy Kuswa Faiz Yusky Ahlian Fariz Aulia Rifqi Fauzi, Zulfa Anang Fianto, Aulia Ramadhan Fitra Rahmat Indyanto Frediawan Yuniar Galuh Prawestri Citra Handani Gatut Yulisusianto Goegoes Dwi Nusantoro Gwo-Jiun Horng Gymnastiar, Muhammad Ilham Habibah, Nisrina Rania Habriansyah Basta Nugraha Hadi Suyono Hadi Suyono Hadi Suyono Hadi Suyono Hadi Suyono Handani, Galuh Prawestri Citra Handari, Yosi Dwi Handoyono, Tito Tri Harfin Pratama Hari Santoso Hari Santoso Haris Altamira Harry Soekotjo Dachlan Hatorangan, Orlando Hazlie Mokhlis Hendrik Kenedy Tupan Heru Purnomo Hery Aprianto Hery Purnomo Hidayat, Ryan Mevi Hikam, Aldi Lutfil Himam, Fanisha Laila Himawan, Achmad Faisal I Nyoman Gde Wardana Ihza Aulia Rahman Ilham Ramadhan Maulana Imam Prakoso Indah Permata Sari Safti Indra Setyawan Irfan Aditya Primanto Irvan, Muh. Zulvi Islam, Muhammad Gul E. Ismail Musirin Ismail Musirin Ivan Pascal Al Ghafiky Izzul Islam Putra Nusantara Jacob Jonas Rikumahu Jeki Saputra Johanis Tupalessy Khairudin Syah Khoirul Herman Pambudi Khusnul Hidayat Koko Sasmito Kristo Radion Purba Kurniawan, Muh Alif Deby Lalu Riza Aliyan Lalu Riza Aliyan Latif, Nabila Fauziah Lestariyanto, Arthur Rahmad Lilik J. Awalin Lintang Gadis Ratu Rachellya Liza Putri Dafroni Lunde Ardhenta Luthfan Akbar Azizan Firdaos M Fauzan Edy Purnomo M. Arie Hendro Tri Hartomo M. Azis Muslim M. Aziz Muslim M. Aziz Muslim M. Aziz Muslim M. Dhia Ul Falah Mahfudz Shidiq Mamdouh Abdel-Akher Mardotillah, Nanda Azizah Markus D. Letik Maulana, Eka Maynaki, Erlangga Rizky Moch Dhofir Moch Dhofir Moch. Dhofir Moch. Dhofir Moch. Dhofir Mochammad Muchlis Triwahyudi Moh. Farid Rahman Mohamad Najib Priyo Prakoso Mohamed Zellagui Mohammad Salman Abdurrohim Mokhammad Hasyim Asy’ari Mu'ammar Faris L. Muchammad Ali Mudjirahardjo, Panca Muhamad Hazim Lokman Muhammad Amienullah Nisful Habibie MUHAMMAD ASYROF Muhammad Aziz Muslim Muhammad Aziz Muslim Muhammad Fadillah Kurniawan Muhammad Fauzan Edy Purnomo Muhammad Ghilmanuddin S. Muhammad Rahmatullah Al-Qaedi Muhammad Ridho Ansyari Muhammad Rifqi Nur Sabilillah Muhammad Rizky Wira Utomo Muhammad Sholikhin Muhammad Syarifuddin Anshor Muhammad Syukri Abdul Jalil Muharrama Ahsani Taqwim Mukti Friyan Aditama Musa Khairul Umam Musirin, Ismail Bin Muslimin Muslimin Mutia Tsari n/a Hariyono n/a Nurussa'adah n/a Soeprapto n/a Wijono n/a Wijono Nadhea Primasetya Nanang Sulistiyanto Nico Gautama Ginting Nisrina Rania Habibah Norzanah Rosmin Nur Rahma Dona Nur Sabilillah, Muhammad Rifqi Nur Vidya Ramadhani Nurhakiki, Mauludiya Annisa Nurizza Salsa Alafia Nurussa'adah, n/a Nurussa’adah, n/a Nurwati, Tri Onny Setyawati Paramita Dwi Putri Pranyata Pausta Yugianus Pegy Lestari Pieter S. Tatipikalawan Prabowo, Muhamad Romadhani Pradipta, Doni Prasetyanto, Andi Wahyu Purnomo Budi S. Purnomo, Purnomo Putera, R. P. Ravie O. Mucheyz Putra, Ade Mahendra Darma Putra, Hari Widagdo Putra, I Made Alit Antara Putri P., Paramita Dwi R. A. Setyawan Rachman Shandy Pratama Rahardjo, Muhammad Farid Rakhmad Ramadhan Ramadhan Khansa Akbari Ramadhani Kurniawan Subroto Raymond Abdul Aziz Ash Shidiq WR Rendy Ardiansyah Resi Dwi Jayanti Kartika Sari Ridhwan Athaya P. Ridlwan, Asfarur Rifka Agustina Kusuma Pratiwi Rifki, Mohammad Ya’kub Rizal Riko Nur Akbar Risnugroho, Brian Rizki Mendung Ariefianto Rizki Mendung Ariefianto Rizki Tirta Nugraha Rizki, Fahrina Novia Rizky Adhiputra Wallad Rizky Ardiansyah Rizqi Taufiqurrahman Rizqi Wahyu Rahmariadi Rizqiyatullah, Muhammad Rafli Rosihan Arby Harahap Rudi Hariyanto Rusli, Mochammad Saiful Izwan Suliman Salim, Mohammad Agus Santoso, Asfari Hariz Saputra, Didit Sugeng Septi Uliyani Septian Kevin Aditama Setiawan, Aditya Bagus Sharifah Azma Syed Mustafa Shidqi, Fahruddin Shufinah, Syahla Siagian, Alfandri Sidik Nurcahyo Sigi Syah Wibowo Sintha Dwiferma Br Sinurat Siswandi, Wawan Soeprapto - Soeprapto Soeprapto Sofiatus Solihah Soleman Sesa Soleman Sesa, Soleman Subroto, Ramadhani Kurniawan Suci Imani Putri Suparman Suparman Surya Adi Purwanto SUTEJA, RAI PRAMESTI Suyono, Hadi Syarif, Habib Tajuddin, Mohammad Faridun Naim Taufik Taufik Taufik Taufik Taufik Taufik Teguh Utomo Teguh Utomo teub elektro teub Tole Sutikno Tri Nurwati Tri Nurwati Tri Wahyu Prabowo Tumpak Samosir Ullin Dwi Fajri A. Unggul Wibawa Unggul Wibawa Victor Andrean Vita Kusumasari Wahyu Nur Firdausy Wardani, Alya Kusuma Wardhana, Anak Agung Sagung Gede Paramitha Waru Djuriatno Waru Djuriatno Welly Hagata Kembaren Widyananda, Eka Putra Widyananda., Putra Wijaya, Rizki Adi Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono Wijono, n/a Wijono, n/a Wildan Alfi Syahri Wiwied Putra Perdana Yosep Agus Pranoto Yosi Dwi Handari ZAINUL ABIDIN Zainul Abidin Zainuri, Akhmad Zamrud Kurnia Prasetyo Zuhdi, Fadhil Ariq