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All Journal International Journal of Electrical and Computer Engineering International Journal of Power Electronics and Drive Systems (IJPEDS) IAES International Journal of Artificial Intelligence (IJ-AI) Indonesian Journal of Electronics and Instrumentation Systems KAPAL Jurnal Ilmu Pengetahuan dan Teknologi Kelautan Jurnal Pendidikan Teknologi dan Kejuruan Jurnal Sains dan Teknologi Bulletin of Electrical Engineering and Informatics Jurnal Ilmiah Teknik Elektro Komputer dan Informatika (JITEKI) PROSIDING CSGTEIS 2013 INFORMAL: Informatics Journal Proceeding of the Electrical Engineering Computer Science and Informatics Jurnal Sumberdaya Akuatik Indopasifik JUTIK : Jurnal Teknologi Informasi dan Komputer JMM (Jurnal Masyarakat Mandiri) SINTECH (Science and Information Technology) Journal Jurnal Riset Akuakultur Jurnal RESISTOR (Rekayasa Sistem Komputer) Jurnal Nasional Pendidikan Teknik Informatika (JANAPATI) Jurnal Kelautan Nasional J-SAKTI (Jurnal Sains Komputer dan Informatika) RESISTOR (Elektronika Kendali Telekomunikasi Tenaga Listrik Komputer) Interdental Jurnal Kedokteran Gigi (IJKG) Journal of Robotics and Control (JRC) Indonesian Journal of Electrical Engineering and Computer Science Jurnal Ilmu Komputer dan Sistem Informasi (JIKOMSI) Jurnal Teknologi dan Sistem Tertanam J-SAKTI (Jurnal Sains Komputer dan Informatika) Buletin Jalanidhitah Sarva Jivitam Aptekmas : Jurnal Pengabdian Kepada Masyarakat Jurnal Puan Indonesia Jurnal WIDYA LAKSMI (Jurnal Pengabdian Kepada Masyarakat) Journal of Practical Computer Science (JPCS) Jurnal Krisnadana Jurnal Pengabdian Kepada Masyarakat Widya Mahadi Jurnal Masyarakat Madani Indonesia Community: Jurnal Pengabdian Pada Masyarakat Jurnal Krisnadana Journal of Social Work and Empowerment Galaksi KOMET Jurnal Perikanan Jurnal Megaptera
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SISTEM PERINGATAN KETINGGIAN AIR DAN KENDALI TEMUKU (PINTU AIR) UNTUK IRIGASI SAWAH I Gusti Made Ngurah Desnanjaya; I Gede Pandy Sastrawan; I Wayan Dani Pranata
Jurnal RESISTOR (Rekayasa Sistem Komputer) Vol. 3 No. 1 (2020): Jurnal RESISTOR Edisi April 2020
Publisher : LPPM STMIK STIKOM Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31598/jurnalresistor.v3i1.560

Abstract

The irrigation system in rainfed lowland is done through a water gate (Temuku). Farmers should always control the height of the water and wetland gates during the dry and rainy seasons. This is due to delays in control which can cause the fields to dry or flooded. In this research, water warning system and Temuku control (water gate) for irrigation of paddy field. This tool can provide water level information and can also close or open the irrigation water gate through an SMS. Components used in the manufacture of water alert warning systems and the control of Temuku (sluice gates) for irrigation rice fields are arduino UNO, ultrasonic sensors, SIM 900 and servo motors. From the results of tests that have been done, it can be concluded that the system of water warning and control of Temuku (sluice gate) for irrigation of paddy field has been able to provide water level information to farmers and also the system has been able to control the irrigation water gate according to the input given by SMS.
PENGIRIMAN DATA NRF24L01+ DENGAN KONDISI LINE OF SIGHT DAN NON LINE OF SIGHT I Gusti Made Ngurah Desnanjaya; Mohammad Dwi Alfian
Jurnal RESISTOR (Rekayasa Sistem Komputer) Vol. 3 No. 2 (2020): Jurnal RESISTOR Edisi Oktober 2020
Publisher : LPPM STMIK STIKOM Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31598/jurnalresistor.v3i2.663

Abstract

Wireless Sensor Network is a wireless network technology that includes sensor nodes and embedded systems. WSN has several advantages: it is cheaper for large-scale applications, can withstand extreme environments, and data transmission is relatively more stable. One of the WSN devices is nRF24L01+. Within the specifications given, the maximum communication distance is 1.1 km. However, the most effective distance for transmitting data in line of sight and non-line of sight is still unknown. Therefore, testing and analysis are needed so that the nRF24L01+ device can be used optimally for communication and data transmission. Through testing analysis on nRF24L01+ line of sight, Kuta beach location in Bali and non-line of sight on the STMIK STIKOM Indonesia campus. The effective communication distance of the nRF24L01+ module in line of sight is between 1 and 1000 meters. The distance of 1000 meters is the limit of the effective distance for sending data, and the packet loss rate is less than 15% which is included in the medium category. Meanwhile, in the non-line of sight, the effective distance of the nRF24L01+ communication module is 20 meters, and the packet loss is close to 15%, which is a moderate level limit. With the analysis module, nRF24L01+ can be a reference in determining the effective distance on WSN nRF24L01+ in determining remote control equipment data communication.
PENEMPATAN DAN PEMILIHAN KAPASITAS TRANSFORMATOR DISTRIBUSI SECARA OPTIMAL PADA PENYULANG PERUMNAS I Made Aditya Nugraha; I Gusti Made Ngurah Desnanjaya
Jurnal RESISTOR (Rekayasa Sistem Komputer) Vol. 4 No. 1 (2021): Jurnal RESISTOR Edisi April 2021
Publisher : LPPM STMIK STIKOM Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31598/jurnalresistor.v4i1.722

Abstract

Some distribution transformers in densely populated areas have a loading percentage of more than 100% and also less than 10%. This problem shows that the use of a distribution transformer is inappropriate. With descriptive, correlational and comparative research methods, it is hoped that it can optimize the placement and capacity selection of distribution transformers. Data were taken from 25 people living in the Pemecutan Kelod and Tegal Harum areas using questionnaires and interviews. The data were tested using the T and Pearson tests to determine the effect of placing the distribution transformer. The results of equalization of the load with the addition of a new distribution transformer and relocation of the distribution transformer capacity to the feeder are expected to get optimal results. The technical solution is obtained with a voltage of less than 10% and a distribution transformer capacity that is in accordance with the growth of the population electrical load. Socially and culturally, for the level of conformity there is an increase in the harmony of the population after the placement of a new distribution substation (t = -7.71 and p <0.05), for the comfort level there is an increase in the comfort of the population after the placement of a new distribution substation (t = -9.57 and p <0.05), and for the level of security there was an increase in the tranquility of the population after the placement of a new distribution substation (t = -8.42 and p <0.05). The relationship between suitability and comfort obtained a very strong relationship (r = 0.90), the relationship between suitability and safety obtained a very strong relationship (r = 0.85), and the relationship between comfort and safety obtained a very strong relationship (r = 0.86).
ARDUINO MKR FOX 1200, MKR1000, AND MKR VIDOR 4000 ANALYSIS USING A SIMPLE RTC ALARM METHOD I Gusti Made Ngurah Desnanjaya; I Made Wira Adnyana; Kadek Aldy Adhistya Anugrah
Jurnal RESISTOR (Rekayasa Sistem Komputer) Vol. 4 No. 2 (2021): Jurnal RESISTOR Edisi Oktober 2021
Publisher : LPPM STMIK STIKOM Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31598/jurnalresistor.v4i2.896

Abstract

Arduino MKR merupakan salah satu bagian dari keluarga arduino yang memiliki kemampuan yang berbeda dengan arduino biasa. Dalam penelitian ini, penulis akan membahas kemampuan dari IC RTC yang sudah tertanam pada papan Arduino MKR dan membandingkan data dari ketelitian pembacaan nilai RTC. Nilai yang didapatkan akan menunjukkan papan Arduino MKR yang memiliki kemampuan pembacaan nilai RTC terbaik. Adapun papan Arduino MKR yang digunakan dalam penelitian ini yaitu dengan tipe Arduino MKR 1000, Arduino MKR Fox 1200, dan Arduino MKR Vidor 4000. Untuk mendukung penelitian, penulis menggunakan metode penelitian kuantitatif eksperimental. Penggunaan metode ini sangat cocok digunakan karena metode ini menonjolkan angka sebagai data dan penulis juga melakukan percobaan langsung pada papan Arduino MKR. Setelah penelitian dilakukan, maka dari hasil percobaan diperoleh rata-rata MKR 1000 memiliki selisih waktu terkecil sebesar 2.912 detik dibandingkan dengan MKR Fox 1200 dengan selisih waktu rata-rata 4.097 detik dan MKR Vidor 4000 memiliki selisih waktu rata-rata 5.804 detik. Untuk proyek yang menggunakan RTC (Real Time Clock) direkomendasikan menggunakan  MKR 1000.
SISTEM INFORMASI PENGENDALI KULKUL BALI BERBASIS WEB I Gusti Made Ngurah Desnanjaya; I Gede Iwan Sudipa
Jurnal Teknologi Informasi dan Komputer Vol 6, No 1 (2020): Jurnal Teknologi Informasi dan Komputer
Publisher : LPPM Universitas Dhyana Pura

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (897.167 KB)

Abstract

ABSTRACTKulkul is one of the traditional information facilities that is still used in an area or village. Kulkul is a cultural heritage and is used as a medium of information in the daily life of the Balinese people. In general, the types of beats are divided into kulkul deliberation, kulkul jayabaya and kulkl of death, each type of kulkul has a function and provides different information. To do the taping of the kulkul in a village, it is carried out by kelian adat by riding the bale kulkul and sounding the kulkul according to the number of beats and rhythm of the different kulkul based on the type of kulkul. By looking at this process, the researchers tried to facilitate the custom of kelian in tapping the kulkul through the web-based kulkul controller application, which later could facilitate the kelian adat in determining the type of kulkul to be sounded, knowing the kulkul information log that had sounded with detailed information on time, date, the location and type of kulkul sounded. The Kulkul controlling information system is expected to be able to facilitate it without replacing the role of kelian adat and local wisdom culture that has been carried down for generations. Information system testing is done by testing blackbox testing.Key words: information system, control, kulkulABSTRAKKulkul merupakan salah satu sarana informasi tradisional yang masih digunakan pada suatu wilayah atau desa. Kulkul merupakan warisan budaya dan digunakan sebagai media informasi dalam keseharian masyarakat bali. Secara umum jenis ketukan dibagi menjadi kulkul musyawarah, kulkul jayabaya dan kulkul kematian, setiap jenis kulkul memiliki fungsi dan memberikan informasi yang berbeda. Untuk melakukan pengetukan kulkul pada suatu desa maka dilakukan oleh kelian adat dengan cara menaiki bale kulkul dan membunyikan kulkul sesuai dengan jumlah ketukan dan ritme kulkul yang berbeda berdasarkan jenis kulkul. Dengan melihat proses ini maka peneliti berusaha untuk memudahkan kelian adat dalam melakukan pengetukan kulkul melalui aplikasi pengendali kulkul berbasis web, yang nantinya dapat memudahkan kelian adat dalam menentukan jenis kulkul yang akan dibunyikan, mengetahui log informasi kulkul yang telah dibunyikan dengan detail informasi waktu, tanggal, lokasi dan jenis kulkul yang dibunyikan. Sistem informasi pengendali kulkul ini diharapkan dapat memudahkan tanpa menggantikan peran kelian adat serta budaya kearifan lokal yang sudah dilakukan turun-temurun. Pengujian sistem informasi dilakukan dengan melakukan pengujian blackbox testing.Kata Kunci : sistem informasi, kendali, kulkul
IMPLEMENTASI TEKNOLOGI SABUN CUCI TANGAN AUTOMATIS KEPADA MASYARAKAT DALAM MASA COVID-19 DI LINGKUNGAN BANJAR BHUNANA SARI DANGIN PURI KAJA DENPASAR UTARA I Gusti Made Ngurah Desnanjaya; Putu Praba Santika; Ida Bagus Gede Sarasvananda; I Gede Adnyana
Jurnal Widya Laksmi: Jurnal Pengabdian Kepada Masyarakat Vol. 1 No. 2 (2021): Jurnal WIDYA LAKSMI (Jurnal Pengabdian Kepada Masyarakat)
Publisher : Yayasan Lavandaia Dharma Bali

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (847.407 KB) | DOI: 10.59458/jwl.v1i2.16

Abstract

Covid-19 merupakan virus yang pertama kali ditemukan pada hewan dan berkembang sehingga terjangkin pada manusia. Virus ini menyebar antara manusia ke manusia melalui tetesan cairan dari mulut dan hidung saat orang yang terinfeksi sedang batuk atau bersin, mirip dengan cara penularan penyakit flu. Seperti yang kita ketahui pandemic Covid-19 sudah merebak ke seluruh dunia. WHO menyarankan kita untuk mencuci tangan sesering mungkin datang dari luar maupun dalam rumah. Dengan demikian observasi dilakukan diberbagai tempat yaitu meliputi rumah, pasar, balai banjar, hingga di warung-warung sekitar, lalu hasil observasi didapatkan bahwa setiap orang yang keluar maupun masuk tempat tersebut tidaklah semua mencuci tangan. Ini dikarenakan berbagai faktor yaitu tempat cuci tangan dan sabun yang jauh, malas mencuci tangan, dan juga canggung meminjam tempat cuci tangan. Dari berbagai faktor tersebut maka dirancanglah sabun tangan automatis dengan Infrared Sensor and Arduino sebagai pembersih tangan dari bakteri tanpa bersentuhan langsung. Alat ini akan diletakan di pintu masuk utama maupun tempat-tempat yang dinilai ramai demi membersihkan langsung tangan pendatang atau tamu yang datang. Dalam kaitan dengan kondisi saat ini yaitu pandemic Covid-19, alat ini didesain sederhana mungkin, portable diletakan dimana saja, dan mudah digunakan. Di Indonesia, pemerintah menerapkan kebijakan Pembatasan Sosial Berskala Besar (PSBB) untuk menekan penyebaran virus ini. Case fatality rate atau tingkat kematian yang disebabkan oleh COVID-19 di Indonesia adalah sekitar 3,1%. Case fatality rate adalah presentase jumlah kematian dari seluruh jumlah kasus positif COVID-19 yang sudah terkonfirmasi dan dilaporkan. penderita COVID-19 tanpa melakukan pembersihan diri seperti cuci tangan. Keadaan seperti ini merupakan mimpi buruk bagi para pedagang maupun pembeli yang ada dipasar tradisional mengingat tempat tersebut sangat ramai di setiap harinya. Maka dari itu STMIK STIKOM Indonesia (STIKI Indonesia) dengan aksi program STIKI PEDULI ingin membantu dimulai dari pasar tradisional di bali yaitu Pasar Satriya yang berlokasi di Jalan Abimayu Denpasar.
Pemanfaatan Mesin Penggiling Ikan dan Mesin Pendingin Dalam Usaha Home Industry di Oesapa Kupang Nusa Tenggara Timur I Made Aditya Nugraha; I Gusti Made Ngurah Desnanjaya
Jurnal Widya Laksmi: Jurnal Pengabdian Kepada Masyarakat Vol. 1 No. 2 (2021): Jurnal WIDYA LAKSMI (Jurnal Pengabdian Kepada Masyarakat)
Publisher : Yayasan Lavandaia Dharma Bali

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (582.147 KB) | DOI: 10.59458/jwl.v1i2.19

Abstract

Management and processing of marine and fishery products are one of the ways to improve the welfare and socio-economy of the community. The province of East Nusa Tenggara is one of the regions in Indonesia that has enormous marine fishery potential. The potential for fisheries comes from capture fisheries and aquaculture reaching 72 thousand tons with a production value of 1.8 trillion Rupiah, and the second-largest seaweed producer after South Sulawesi with seaweed production of 2.9 trillion Rupiah. This potential needs to be developed to support economic growth and improve the welfare of people who have jobs in the fisheries sector, such as the development of value-added fishery products through fishery industrial activities. This activity aims to examine the added value of marine and fishery products on a home scale industry and its implications for society. This community service activity is carried out on Oesapa Beach by targeting coastal communities. Activities are carried out by providing training and presentation of material regarding the use of fish grinding machines and cold storage to properly and safely support small-scale economic activities. This activity was well appreciated by the community and had a positive impact in efforts to increase the selling power of marine and fishery products.
Sistem Pendeteksian Masker dan Hand sanitizer Otomatis Berbasis Raspberry Pi Friendzen Lian Wijaya Gunardi; I Gusti Made Ngurah Desnanjaya; I Wayan Sudiarsa
Journal of Practical Computer Science Vol 1 No 2 (2021): November 2021
Publisher : DPPM Universitas Pelita Bangsa

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1282.696 KB) | DOI: 10.37366/jpcs.v1i2.925

Abstract

COVID-19 merupakan pandemi yang sudah masuk ke tingkat global, dan sudah masuk ke Indonesia. Pemerintah melalui keputusan KEMENKES No. 382 tahun 2020 mengatur mengenai penetapan protokol kesehatan di tempat atau fasilitas umum. Petugas, pegawai, dan pengunjung wajib menggunakan masker, menjaga jarak, serta mencuci tangan atau memakai hand sanitizer ketika akan memasuki tempat atau fasilitas umum tersebut. Apabila ada pegawai yang terkena virus, maka akan besar kemungkinan tempat tersebut tutup dan seluruh pegawai wajib mengikuti tes covid-19. Untuk itu, penelitian sebuah sistem pendeteksian masker wajah dan pemberian hand sanitizer otomatis akan dibuat. Pembuatan sistem ini menggunakan perangkat Raspberry-Pi 4 Model B sebagai mikrokontrolernya dan juga pemrograman dengan bahasa python. Pemberian hand sanitizer otomatis juga akan dibuat di penelitian ini untuk memberikan pengguna hand sanitizer secara otomatis. Diharapkan penelitian ini dapat mencegah penyebaran virus COVID-19
Technical, economic, and social impact of photovoltaic at dormitory building I Made Aditya Nugraha; I Gusti Made Ngurah Desnanjaya
International Journal of Power Electronics and Drive Systems (IJPEDS) Vol 13, No 3: September 2022
Publisher : Institute of Advanced Engineering and Science

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11591/ijpeds.v13.i3.pp1666-1674

Abstract

Marine and Fisheries Polytechnic of Kupang is one of the educational centers located in East Nusa Tenggara. The location of the campus is in an area with the potential for solar energy throughout the year and it is very possible to utilize this energy as a source of electrical energy. As a form of energy-saving and utilizing the existing potential in accordance with existing policy directions, this electrical energy potential will be utilized for 3 dormitories with a hybrid system with State Electricity Company. The utilization of renewable energy as a source of electrical energy can produce 44,294.20 kWh/year. The results of economic analyses are encouraging to intensify the use of such PV systems since the payback period is 8.79 years, and the internal rate of return is 9%. The results of the Spearman test of the relationship between technical, social, and economic gave a significant correlation (p<0.05). This shows that the use of photovoltaic PV systems on campus has a social and economic impact. The use of this renewable energy is expected to reduce the use of fossil energy which has a negative impact on the environment and assist government policies to support the use of renewable energy.
Room Monitoring Uses ESP-12E Based DHT22 and BH1750 Sensors I Gusti Made Ngurah Desnanjaya; A A Gede Bagus Ariana; I Made Aditya Nugraha; I Komang Arya Ganda Wiguna; I Made Urip Sumaharja
Journal of Robotics and Control (JRC) Vol 3, No 2 (2022): March
Publisher : Universitas Muhammadiyah Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18196/jrc.v3i2.11023

Abstract

Comfortable room is one of the services that must be provided by STMIK STIKOM Indonesia campus to students. This research designed a room monitoring tool based on ESP-12E in STMIK STIKOM Indonesia. The room monitor is designed using a DHT22 sensor to measure temperature and humidity and the BH1750 sensor to measure light intensity. The tool also includes features a 16x2 I2C LCD to display measurement results. Testing is done by testing the layout circuit on the PCB and observing the measurement of temperature, humidity, and light intensity on the LCD. The test results of all layout circuits are functioning properly, and the measurement results can appear on the 16x2 I2C LCD.
Co-Authors A A Gede Bagus Ariana A A Gede Bagus Ariana Adnyana, Anak Agung Gede Oka Kessawa Agus Mahardiananta, I Made Anak Agung Gde Ekayana Andika, I Gede Anis Khairunnisa, Anis Ariana, A.A Gede Bagus Ariana, Anak Agung Gde Bagus Ariana, Anak Agung Gede Bagus Aristana, Made Dona Wahyu Astuti, Komang Sri Ayu Bagus Kusuma Wijaya Cesrany, Mahaldika David Maulana Suripati Dewi, Yunita Dirgayusari, Ayu Manik Eka Putrawan Febi Luthfiani Febi Luthfiani, Febi Friendzen Lian Wijaya Gunardi Gde Andrayuga Pramaditha Tenaya Grangsang Sotyaramadhani HARIANTO, WAWAN I Dewa Putu Gede Wiyata Putra I Dewa Putu Gede Wiyata Putra I Gede Adnyana I Gede Adnyana I Gede Adnyana I Gede Iwan Sudipa I Gede Made Yudi Antara I Gede Pandy Sastrawan I Gusti Ayu Budiadnyani I Gusti Ayu Fienna Novianthi Sidiartha I Gusti Ngurah Bagus Widiatmika I Kadek Budi Sandika I Kadek Dwi Gandika Supartha I Komang Arya Ganda Wiguna I Komang Arya Ganda Wiguna I Komang Arya Ganda Wiguna I Made Aditya Nugraha I Made Surya Kumara I Made Urip Sumaharja I Made Wira Adnyana I N Satya Kumara I Nyoman Alit Arsana I Nyoman Buda Hartawan I Nyoman Buda Hartawan I Nyoman Buda Hartawan I Nyoman Buda Hartawan I Nyoman Saputra Wahyu Wijaya I Nyoman Tri Anindia Putra I Putu Agus Eka Darma Udayana, I Putu Agus Eka I Putu Edi Setiawan I Wayan Dani Pranata I Wayan Dani Pranata I Wayan Sudiarsa Ida Ayu Dwi Giriantari Ida Ayu Wiwit Lastari Ida Bagus Ary Indra Iswara Ida Bagus Gede Sarasvananda Ida Bagus Gede Sarasvananda Ida Bagus Gede Sarasvananda Idrus, Muhamad Amril Ika Astiana Jhon Septin M. Siregar Jhon Septin Mourisdo Siregar Juniarta, I Nyoman Kadek Aldy Adhistya Anugrah Kadek Ayu Ariningsih Kadek Suryati Kombonglangi, Kaleb Charisma Kurniawan, I Kadek Yogi Lebrina Ivantry Boikh Made Vera Sugiyama Ria Mahajaya, Nyoman Sarasuartha Masridho Suriyono Mohammad Dwi Alfian Muhamad Amril Idrus Nataraj, Kannan Ni Putu Suci Meinarni Ni Wayan Suardiati Putri Nirwana, Ni Kadek Ayu Novandi, Aditya Poy, Maria Delastrada Pramana, Putu Indra Pramawati, I.D.A Tantri Pranata, I Wayan Dani Putra, I Gede Yudiana Putu Candra Kharisma Dewi Putu Mariati Kaman Dewi Putu Praba Santika Putu Satria Udyana Putra PUTU SUGIARTAWAN Putu Sugiartawan Putu Wirayudi Aditama Putu Wirayudi Aditama Reganata, Gde Palguna Resti Nurmala Dewi Rukmi Sari Hartati S. Samsugi Samsul Hadi Sandhiyasa, I Made Subrata Sandika, I Kadek Budi Saputra, Putu Krishna Gangga Satwika, I Kadek Susila Satya, I Wayan Wira Serihollo, Lukas G. G Setiawan, I Putu Edi Siregar, Jhon Septin Maourisdo Supartha, Kadek Dwi Gandika Utari, Siluh Putu Sri Dia Wawan Harianto Wayan Eny Mariani Wayan Gede Suka Parwita Widagdo, Aris Wiguna, I Komang Arya Ganda Wiradana, I Made Adi Wiyata Putra, I Dewa Putu Gede Yande Hendika Bayu Perdana