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KOMPARASI NILAI EKONOMIS DAN EFISIENSI PADA SKEMA-SKEMA KERJA PLTS PADA PT. LENTERA BUMI NUSANTARA Muhammad Azka Athallah; Unggul Wibawa; Teguh Utomo
Jurnal Mahasiswa TEUB Vol. 10 No. 5 (2022)
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Solar Energy System is a renewable energy that convert sun irradiation into electrical energy through photovoltaic cell. Solar Energy System is divided into 2 types, on-grid system and offgrid system. On-grid solar energy is a system which connected to the grid. Energy Management System (EMS) is implemented in the attempt to maximize the reduction of cost for electricity. EMS implemented is by transmitting electrical energy from battery at peak load time. Solar energy with this EMS (scheme 1) will be compared with solar energy when; all energy produced by solar cell is transmitted to user load (scheme 2), all energy produced by solar cell will be exported to the grid (scheme 3), and energy produced will goes to load, if there is excess energy, it will be imported to the grid (scheme 4). The efficiency difference caused by battery don’t drastically effect the economical factor because the efficiency difference is 0,63%. Scheme 1has the highest investment cost, net profit, and COE, but since its investment cost and maintenance cost is high, scheme 1 is not worth to implement. Based on NPV, scheme 1 is the only scheme that is worth to i
PENGARUH LAPISAN HIDROFOBIK PADA PERMUKAAN ISOLATOR POLIETILEN TERHADAP TINGKAT ARUS BOCOR DAN TEGANGAN FLASHOVER PADA VARIASI PAPARAN SINAR ULTRAVIOLET n/a Rizaq; Moch. Dhofir; Teguh Utomo
Jurnal Mahasiswa TEUB Vol. 10 No. 6 (2022)
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This study discusses the effect of the hydrophobic layer on the surface of the polyethylene insulator on the leakage current and flashover voltage with variations in exposure to ultraviolet light. This research was conducted by varying the conditions of ultraviolet irradiation on the insulator, test voltage, and also the test conditions in the form of dry and wet conditions. Variations in the duration of ultraviolet irradiation were for 0 hours, 24 hours, and also 48 hours. The insulator used is also divided into 2, an insulator with coating and a non-coating. Initial testing of the contact angle to determine whether the insulator is hydrophobic. Furthermore, distribution simulations and electric field efficiency calculations were carried out using FEMM 4.2 software, so that dielectric strength values could be calculated. After that, leakage current and flashover tests were carried out with voltage variations of 4kV, 8kV, 12kV, 16kV, and 20kV. The results obtained in this study are the greater the value of the test voltage given, the greater the value of the leakage current, while the flashover voltage has an inverse relationship with the leakage current. The greater the leakage current, the smaller the flashover voltage. In insulators with a hydrophobic layer, the value of the leakage current and flashover voltage can be improved. In addition, the addition of the duration of irradiation causes the value of the leakage current to be greater and the flashover to decrease in value.Keywords— insulator, leakage current, flashover, hydrophobic, polyethylene
ANALISIS DAMPAK VARIASI PEMBEBANAN TERHADAP KARAKTERISTIK KELUARAN GENERATOR DI PLTMH UNIT A1 ANDUNGBIRU TIRIS PROBOLINGGO Sinta Pratiwi; Teguh Utomo; Rini Nur Hasanah
Jurnal Mahasiswa TEUB Vol. 11 No. 1 (2023)
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From 2019 until 2020, Microhydro Power Plant (MHP) Units A1 and A2 measured a significant power decrease of more than 75% from their template capacities. Therefore, CSR PT PJ Paiton with PKSDAL Brawijaya University created a program called “Increasing The Power Capacity Of Andungbiru MHP Units A1 And A2 For The Lead Of Safe And Sustainable Electricity In 2022”. In this experiment, Unit A1 will be used as the test object, as the purpose it is to measure the success of the increasing electrical power and quality programs of Andungbiru’s MHP, especially Unit A1. The success analysis needed is in terms of increasing generator power, stability of generator output characteristics, and knowing the level of quality or efficiency of the generator after repairs and also knowing the level of stability of the generator when a fault occurs. The test is carried out in various loadings to get results that can represent the use of Andungbiru’s MHP consumers with a Dummy Load test device and a data logger with the Mod Bus Tool application with RS482 Cable Driver with load intervals of 25%-50%-75%-100%. The characteristics of the generator are considered quite good from the relationship between the variables.Keywords – MHP, Synchronous Generator, Load Variation, Electrical Impact, Desa Andungbiru, Kecamatan Tiris, Kabupaten Probolinggo
PARTIAL REWINDING COIL PADA GENERATOR UNIT 6 PLTD AMPENAN MENGGUNAKAN STANDAR IEEE Sambodo Rila Priambudi; Teguh Utomo; Mahfudz Shidiq
Jurnal Mahasiswa TEUB Vol. 11 No. 1 (2023)
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PLTD Ampenan is one of power plant that generated by diesel power that located at Mataram City, West Nusa Tenggara. PLTD Ampenan has 8 units generators with total power 37.5 MW. Unit 6 of PLTD Ampenan is a synchronous generator with 9900 kVA or 8MW capacity. In October 2019 there’s accident in generator unit 6. After the investigation, winding stator found to be damaged that cause top bar coil part to be short-circuited. Action that taken for this problem is partial rewinding coil to the damaged coil. In this study will be known how to do partial rewinding coil and observe the effect to generator unit 6 PLTD Ampenan. By applying IEEE standard for partial rewinding coil, there’s discrepancy standard when testing polarity index at pra comissioning stage.However, by agreement from user, the progress can continue to comissioning stage with notes voltages that given to generator supplied step by step. After completing all stages of partial rewinding coil, generator stated running well. Based on analysis between output data before generator damaged and output data after generator repaired, the value of voltage, frequency, and power factor tend to be the same like generator before damaged. Current that flowing in each phase declared balanced because the value of coil resistance of each phase did not exceed the limit of deviation from it’s average which is ±2%. While on load power has increased after partial rewinding coil with the same excitation supply.Keywords: partial rewinding coil, IEEE standards, generator repair
ANALISIS NILAI SETTING RELE DIFERENSIAL SEBAGAI PROTEKSI TRANSFORMATOR ADD ON BLOK 2 DI PT PJB UP MUARA TAWAR MENGGUNAKAN ETAP Muhammad Fadhli Dzil Ikram; Moch. Dhofir; Teguh Utomo
Jurnal Mahasiswa TEUB Vol. 11 No. 2 (2023)
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This research discusses about the analysis of differential relay transformer setting as a protection for Add On transformer in PT PJB UP Muara Tawar at block 2 using Etap 19.01 simulation method and mathematical calculation according to IEEE Std 242-2001. Furthermore, to test the results of the setting calculations, a short circuit current calculation that occurs in the area in the protection zone and outside the protection zone is also carried out using the ETAP 19.01 simulation software. Based on the results of mathematical calculations and software simulations, the value of the short circuit current that occurs is 74346 A for 3-phase short-circuit, 58691 A for 2-phase short-circuit, and 67607 A for 1-phase short-circuit to ground in the primary area. And in the secondary area is 1630 A for 3 phase short circuit fault, 1376 A for 2 phase short circuit fault, and 67607 A for 1 phase short circuitfault to ground. Furthermore, the calculation results for the setting current and the differential are 0.313 A or 0.3 pu, along with a slope 1 value of 45.58% and slope 2 of 91.17%. Based on these results it can be concluded that the differential relay settings on the Add On transformer meet the established standards. Keywords : Differential Relay Transformer (87T), Etap, setting analysis
ANALISIS SETTING RELAI ARUS LEBIH DAN RELAI GANGGUAN TANAH PADA PENYULANG ABIMANYU 22 kV PADA GARDU INDUK CAWANG Wisam Abyadha Ibrahim; Teguh Utomo; Mahfudz Shidiq
Jurnal Mahasiswa TEUB Vol. 11 No. 2 (2023)
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At the Cawang Substation there are 3 types of transformers and has several feeders, one of which is the Abimanyu feeder. According to the data that we obtained, the feeder disturbance data in 2020 at the Abimanyu 22 kV feeder experienced 3 trip.In the Abhimanyu feeder, a good relay setting is needed to protect the electrical equipment contained in the feeder and otherelectrical equipment from short circuit fault and overload disturbances. Therefore, a protection system is needed which metthe requirements of sensitivity, reliability, selectivity, and speed is needed to localize the interference. All of these requirementsdepend on the accuracy of the protection equipment used in the distribution channel. The types of protection on distributionlines are overcurrent relays and ground fault relays. Therefore, there is a need for coordination between the supportingcomponents of the protection system, which consists of an Over Current Relay and a Ground Fault Relay on the Abimanyufeeder line. This coordination is intended so that when one of the busbars is disturbed or there is no safety guard that securesthe busbar it will result in an imbalance that will detected by the system and can result in the continuity of the power flow beingdisrupted. In the discussion of this writing, it aims to calculate the magnitude of the short circuit fault current that may occurin the feeder distribution of 22 kV, then determine the settings for the overcurrent relay and ground fault relay on the feeder,then simulate the system using the ETAP program 12.6 based on the results of calculations and data obtained in the field, andexamines the results of ETAP 12.6 calculations and simulations based on the settings of the Over Current Relay and GroundFault Relay on the real condition. The results of this paper can be used as a reference in making coordination of over currentrelay protection and ground fault relay at PT. PLN (Persero) UIT JBB UPT Cawang. Keywords — Relay, Over Current Relay, Ground Fault Relay, Short Circuit, Abimanyu Feeder, ETAP 12.6.0. DAFTAR PUSTAKA[1] A. Gaffar, A. Agussalim, and D. Arisandi, “Analisis Gangguan Hubung Singkat Pada Jaringan Distribusi 20 Kv Di Gardu Induk Panakkukang,” J. Teknol. Elekterika, vol. 1, no. 2, p. 156, 2022.[2] PT. PLN (Persero) Penyaluran dan Pusat Pengatur Beban Jawa-Bali, “Pedoman dan Petunjuk Sistem Proteksi Transmisi dan Gardu Induk Jawa Bali,” PT PLN, no. September, p. 513, 2013.[3] J. Kennedy and R. Eberhart, “Particle Swarm Optimization,” Ind. Electron. Handb. - Five Vol. Set, pp. 1942–1948, 1995.[4] I. Robandi, Artificial Intellegence “Mengupas Rekayasa Kecerdasan Tiruan.” Yogyakarta: ANDI, 2019.[5] H. R. Baghaee, M. Mirsalim, G. B. Gharehpetian, and H. A. Talebi, “MOPSO/FDMT-based Pareto-optimal solution for coordination of overcurrent relays in interconnected networks and multi-DER microgrids,” IET Gener. Transm. Distrib., vol. 12, no. 12, pp. 2871–2886, 2018.[6] Perusahaan Umum Listrik Negara, “SPLN 64 : 1985,” Dep. Pertamb. dan Energi, vol. No.172/DIR, p. 64, 1985.[7] PT.PLN(Persero), “Buku Pedoman Proteksi dan Kontrol Penghantar,” Prot. dan Kontrol Penghantar, p. 7, 2014.1942–1948, 1995.
ANALISIS EFISIENSI DAYA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO UNIT A2 DESA ANDUNGBIRU KECAMATAN TIRIS KABUPATEN PROBOLINGGO Nur Laili Mufarikha; Teguh Utomo; Rini Nur Hasanah
Jurnal Mahasiswa TEUB Vol. 11 No. 3 (2023)
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Pembangkit Listrik Tenaga Mikrohirdo (PLTMH) merupakan sumber energi terbarukan berskala kecil yang menggunakan aliran air untuk menggerakan generator dan turbin. Daya keluaran yang dibangkitkan PLTMH tergantung dengan head dan debit air sungai yang mengaliri PLTMH Andungbiru. Metode penelitian ini dilakukan pengambilan data secara lansung. Penelitian ini menganalisis nilai efesiensi daya yang dibangkitkan PLTMH unit A2 di Desa Andungbiru yang dipengaruhi debit air serta memanfaatkan software HOMER. Masa jangka pakai PLTMH Andungbiru yaitu dengan menyambungkan ke sistem PLN, dengan itu penelitian juga menganalisis salah satu syarat grid connection ialah perbedaan tegangan dan frekuensi keluaran generator. Hasil penelitian ini adalah nilai efisiensi daya yang dibangkitkan PLTMH unit A2 Andungbiru hari pertama 83%, hari kedua 51%, hari ketiga 80% dan hari keempat 83%. Sedangkan nilai efisiensi daya yang dibangkitkan PLTMH dengan memanfaatkan software HOMER ialah hari pertama 84,3%, hari kedua 51,9%, hari ketiga 81,1% dan hari keempat 84,65%. Nilai efisiensi daya yang dibangkitkan PLTMH unit A2 pada hari pertama, ketiga, dan keempat menunjukkan keefisienan sedangkan pada hari kedua menunjukkan ketidakefisienan. Serta semakin besar debit air maka semakin besar daya masukan dan daya keluaran generator yang dibangkitkan. Perhitungan perbedaan toleransi tegangan melebihi ±10% batas toleransi parameter sinkronisasi dan toleransi frekuensi melebihi dari ± 0,3 karna terjadi ketidakstabilan tegangan dan frekuensi. Kata Kunci – PLTMH, Efisiensi Daya, Software HOMER, Andungbiru, Tiris, Probolinggo.
RANCANG BANGUN PEMBANGKIT EBT DENGAN PEMANFAATAN SOLAR PV ON GRID SYSTEM BERBASIS ARDUINO MEGA 2560 Muhammad Halim Sa’id; Unggul Wibawa; Teguh Utomo
Jurnal Mahasiswa TEUB Vol. 11 No. 3 (2023)
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Indonesia has saved 4.8 kWh/m2 or the equivalent of 112,000 GWp. This potential is the biggest when compared to the five existing types of EBT sources. However, the utilization is only a little, namely 0.08% or the equivalent of only 10 MWp. . The purpose of this study is to determine the effect of the EBT by utilizing the Arduino Mega 2560 based Solar PV On Grid System in the supply of electrical energy in the UT School Building. There are two software needed in this study which include: Arduino IDEand Nextion Editor. Based on the average test results using the RMSD measurement method which was carried out from 13 December 2022 to 28 December 2022, it was found that the potential of a 1050 Wp solar panel monitored by HMI Nextion in the UT School building produced 0.68 A and 112.69 V in the sunlight intensity 195.71 W/m2 and temperature 26.93oC. From this, it can be seen that the contribution of electrical energy generated by the on-grid EBT system monitored by the Arduino Mega 2560 is 7.33% of the total electrical energy of the UT School building. Index Terms— Solar Panel, Arduino Mega 2560, RMSD.
ANALISIS KELAYAKAN PLTS ON-GRID MENGGUNAKAN SOFTWARE PVSYST 6.8.1 PADA PPSDM MIGAS Adi Nugroho Pamungkas; Teguh Utomo; Rini Nur Hasanah
Jurnal Mahasiswa TEUB Vol. 11 No. 5 (2023)
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PPSDM Migas is a government-owned company engaged in the energy sector under the auspices of the auspices of the Ministry of Energy and Mineral Resource with a solar energy potential of 5,03 kWh/m2 /day obtained from the Meteonorm 7.1 software. PPSDM Migas has a total consumption of electrical energy in 2021 of 1,866 MWh. The construction of the On-Grid solar system at PPSDM Migas is expected to implement alternative energy resources and save electricity costs. The purpose of this study is to determine a feasibility analysis of solar power plants (PLTS) in technical and economic aspects using the PVsyst software simulation. The solar power plants system (PLTS) at PPSDM Migas has an installed capacity of 120 kWp which is divided into 8 point installation locations with a total of 420 units of solar panel with the Yingli Solar brand with a capacity of 280 Wp. There are 2 types of configuration systems based on their inverter capacity, which are the configuration of 10 kW inverter and 20 kW inverter. The PVsyst software simulation in 2021 produces 195,4 MWh per year of energy or can supply around 10,47% of the total energy consumption of PPSDM Migas. In 2021, this solar system is capable of producing 127,3 MWh of energy. Performance Ratio (PR) in one year is 84,4% from PVsyst, 85% from the theoretical calculation, and 58,9% from field results. The results of the economic feasibility analysis shot that Life Cycle Cost (LCC) is Rp. 2.021.116.083, and the value of the Cost of Energy (COE) is Rp. 963,59 /kWh.The results of the investment feasibility analysis show the value of Net Present Value (NPV) is Rp. 632.633.554, the value of the Profitibality Index (PI) is 1,36, and the Pay Back Period (PBP) or the year of return after the 14th year. Based on the results of the analysis in the technical aspects, it can conclude that the solar system at PPSDM Migas still needs performance improvement, while in the economic aspects, it is considered that the project is feasible to continue. Keyword: PLTS, PVsyst, PPSDM Migas
ANALISIS PENEMPATAN KAPASITOR OPTIMAL PADA PENYULANG SENTRAL GARDU INDUK RANGKAS DENGAN SOFTWARE ETAP 12.6 Muhamad Alif Fatur Rahman; Mahfudz Shidiq; Teguh Utomo
Jurnal Mahasiswa TEUB Vol. 11 No. 6 (2023)
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Distance between power plant and load, growth in industrial sector, and population growth are several reason for the increase in voltage drop on a distribution electrical system. In some cases, voltage drop that happened sometimes can lead to the voltage drop beyond the specific limit which is 10%. One of the solutions we can use to prevent this is Optimum Capacitor Placement(OCP). OCP is a method which using the capacitor bank to supply the reactive power for the compensate for reactive power due to the load. In this research, the problem refers to Sentral Feeder of GI Rangkas which have 35 Distribution Transformer. Power flow analysis and OCP in this research will be done with the help of ETAP 12.6. in this research the optimation will be performed with maximum load. The result from Power flow analysis shows that at the maximum load, there is 10 buses which the voltage drop beyond the limit, hence OCP will be needed so the voltage drop can rise again beyond the limit of 10%. The OCP on ETAP 12.6. generates 4 bus candidates for the placement of capacitor bank, after 3 400 kVAR capacitor banks installed on STO bus, voltage drops reduces until the point where no buses on this system have voltage drop passing the limit. Power losses on the system also got reduced from 285 kW to 211 kW and 83 kVAR to 62 kVAR. Keywords—Voltage drop, Power flow analysis, Optimum Capacitor Placement(OCP), ETAP 12.6
Co-Authors Adi Nugroho Pamungkas Aditya Prayoga Agus Supriono Akbar, Muhammad Yoga Rochmanu Akhmad Hasim Aldo Harry Saputra Allaam, Hisyam Ghozi Altajim, Fauzan Aiman Amanda Octavianus Rizky Andreas Parningotan S. Anggie Alvionita Anwi Kusuma Ardi Moh. Yusuf Arief Y., Primanda Arifin, Muhammad Rifat Aji Satria Arizky Erwinsyah Hariyanto Arkan Pradipta Arsy Rahmat Syahbani Assariy, Muhammad Faiz Asyhari, Ahmad Rizky At Tamimi, Riswandha Yusuf Aulia, Fitrah Baskara Heka Syahputra Bernadine, Muhammad Zaidan Bhawiko, Alekhin Muhammad Azhar Candra Mebby Oka Dedy Alfilianto Derry Putranugraha Dhofir, Mochammad Dikma Hartanjung Ditto Adi Permana Dwiky Satrio Wibowo Edi Setiawan Egavania Zerlinda Elisa Gumelar Dennis Erdyan Setyo W. Erlangga Dinda Permana Erlinda Indrayani Faishal, Luthfi Nur Fakhruddin Ar Rozi Farid Rohmadi Fariz Aulia Rifqi Farraz, Dayrry Yozza Febriananda Mulya Pratama Fery Praditama Fikri, Al Hadi Fikri, Zakkiyul Firdausi, Mega Firly Azka Nurhidayah Friska Bakti Novella Gagah Pratama Putra Galih Fajar Wicaksono Gathot Winarso, Gathot Gede Teguh Adi Wedangga Gitawan Dimas Prakoso Goegoes Dwi Nusantoro Haidar Ali Yafie Hamaris, Farhan Hari Santoso Harry Soekotjo Dachlan Hery Purnomo Himam, Fanisha Laila I Kadek Dwika Antara I Wayan Ari Mahendra Ifah Dea Hapsyari Ilham Ismail Mochsen ILYAS FATIH RAMADHAN Irfan Madani Pratama Jagad, Mohammad Wahyu Jayadiyuda, I Wayan Angga Jiwandono, Ferdian Ade Kalvin Lentino Kemal Pasha Pramudianto Khurun ‘Ain, n/a Kresna Sukma Dewangga Kurniawan, Ananda Donny Laksono, Mico Norman Lavelia Permata C. Lintang Gadis Ratu Rachellya Lukmanul Hakim Lunde Ardhenta Luthfan Bagus Saputra M. Iqbal Bayhaqi Fauzi M. Yudistya Perdana Ma'arif, Muhammad Thoriqul Maharani, Bella Fathia Mahfudz Shidiq Mahfudz Sidiq Malamansyah, Triamelia Salsabila Markus D. Letik Maulana, Achmad Fazar Arya Maulidina, Nabila Vida Moch Dhofir Moch. Dhofir Moch. Dhofir Moch. Dhofir Moch. Rizki Indra Dwijayanto Mochammad Fattah, Mochammad Mohammad Fahririjal Mubarok, M. Farid Ibnu Muhamad Alif Fatur Rahman Muhamad Andre Agesa Muhammad Arsyad Muhammad Azka Athallah Muhammad Edwinsyah Redho Muhammad Fadhli Dzil Ikram Muhammad Fahmy Madjid Muhammad Faris Hizrian Muhammad Halim Sa’id Muhammad Rif’at Nor Imami Muhammad Sekti Yolansyah Muhammad Wildan D. Muhammad Zakkiyul Fikri Syahara Arifianto Muyassar, Tegar n/a Rizaq n/a Soemarwanto n/a Soeprapto n/a Suyono Nandha Pamadya Putra Nizar Shodiq Novan Ardita Pratama Nur Laili Mufarikha Nurumar Setiyo Agung Pangeran Fatullah Panji Bintang Pamungkas Pradhana, Raka Radithya Praditama, Fery Pramudya, Lembat Aji Pratama, Muhammad Pashya Rifky Priambudi, Ardhito Pudji Purwanti Pujo Utomo Putra Adi Dharma Utama Putra, Deni Dwi Rahman Rachendra, Bima Denatta Rachman Shandy Pratama Radian Hepta Martha Hardaka Rafi Ilham Rahardjo, Muhammad Farid Ramdhony Tofano Murisom Revo Chanavi Mara Rexano B, Leonardo Reza Aliansyah Rif'an, Mochammad Rini Nur Hasanah Rini Nur Hasanah Riswandha Yusuf At Tamimi Rizal Firmansyah Rizki Adhi Priawan Rizki Ashadi Rizky Hamid Robbyansyah Rohmadi, Farid Rohman, Deny Fatkhur Rosyid, Muhammad Ruditta Devianti Sambodo Rila Priambudi Saputra, Didit Sugeng Sari Yuniarti Satrio Wicaksono Sean Yudha Yahya Shiddiq, Muhammad Fatihul Shidqi, Fahruddin Siagian, Alfandri Sinta Pratiwi Soeprapto Soeprapto Suwarno, Nastiti Viononny Suyono, Hadi Syarifasa, Arkananta Sydney, Agnes Amadea Rullynda Timbul Mulia Titis Aridanti Pratiwi Tri Nurwati Try Brojoseto Alkotsar Unggul Wibawa Unggul Wibawa Unggul Wibawa Unggul Wibawa Unggul Wibawa Utomo, Muhamad Adib Nur Utomo, Muhamad Afiq Nur Wahyu Nur Firdausy Warda Islamiyah Wardani, Alya Kusuma Wijono, n/a Wilda Faradina Wisam Abyadha Ibrahim Wisnu Adi Suryo Yanuar Alfa Tri Susanto Yashinta Carolina Dewi Yuda Wastu Yudistira Adi Nugroho Yuka, Helmi Dwi Yulistiono, Irwan Zaidane Alizzah Noufal Zuhdi, Fadhil Ariq Zulfikar Subagio ‘Aqila, M. Farrel Nikkola Putra