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Sistem Monitoring Kebugaran Kardiorespirasi dengan Pulse Sensor dan Load Sensor Menggunakan Non-Excercise Prediction Method Rifqi Anshari; Rizal Maulana; Dahnial Syauqy
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Cardiorespiratory fitness connected with the ability function of heart, blood vessel, lungs and muscle to supply oxygen when do physical activity. There is a proof that own good cardiorespiratory fitness can reduce cardiovascular disease like heart attack and stroke. Therefore it's important to have good cardiorespiratory fitness. Cardiorespiratory fitness can be measured by level maximum oxygen body can take (VO2max). There is a method for prediction of VO2max without doing physical activity using heart rate rest, body weight and age (non-excercise prediction method). Measuring Heart rate and body weight for calculation VO2max with non-excercise prediction method use 2 sensors, pulse sensor and load sensor. In order to facilitate VO2max calculation and displaying attractive result, then used android OS-based devices as an intermediary by utilizing the HC-05 Bluetooth module as a medium of data exchange. Applications built on android OS based devices are also equipped with suggestions for improving good VO2max so that it can be a guide for users. Tests on sensors in VO2max measurements resulted in an error of 8.12% for pulse sensors and 0.92% error results for load sensor. The maximum effective range that can be done by the Bluetooth module HC-05 is 10 meters. The method performed can easily measure VO2max without having to do physical activity so as to facilitate in the supervision of cardiorespiratory fitness of the body.
Sistem Pendeteksi Kandungan Nutrisi dalam Tanah Berdasarkan Warna dan Kelembapan dengan Menggunakan Metode Naive Bayes Khairul Anwar; Dahnial Syauqy; Hurriyatul Fitriyah
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

The content of soil nutrition has its main role in the agricultural sector. farmers usually use their limited information when determining the land to be used as agricultural land. There are many farmers are experiencing the crop failure and got loss caused by mismanagement of the land. Based on these problems, a system that can detect the nutrient content in the soil which farmers will use to classify the nutrient content of the soil. This study used soil color as parameters that are obtained by using TCS3200 color sensor, while soil moisture parameters are obtained by using Soil Moisture sensor. Determination of nutritional content based on 4 parameters, there are value of R, G, B and soil moisture value of each sensor will be processed in Arduino Uno microcontroller using Naive Bayes method. The use of the Naive Bayes method refers to the decision of the nutrient content of the soil, it is known that the Naive Bayes method has a good accuracy and can be used based on class classification at the beginning of the process. Based on the test conducted on the system, it generates reading errors of the TCS3200 color sensor is 5.34% and Soil Moisture sensor error based on the reading with a humidity measuring instrument is 2.41%. Naive Bayes Method Accuracy in the classification of soil nutrition content is 100% that is obtained from 26 training datas and 13 test datas. The computing time of the system was 0.0814 seconds with 26 times test.
Rancang Bangun Pengenalan Modul Komunikasi dengan Konfigurasi Otomatis Berbasis UART Mukmin Mukmin; Sabriansyah Rizqika Akbar; Dahnial Syauqy
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Wireless communication is a communication technology that uses electromagnetic waves to transmit signals with close distances and long distances. However, the use of wireless communication modules such as ESP8266 and NRF24l01 for wireless data transmission learning media for beginners who hadware use some microcontroller like Arduino constrained during initial configuration. From the problem it is necessary research about making wireless communication module that is Plug and Play (PnP) when connected with microcontroller like Arduino. In this research use 2 wirelesss communication module that is ESP8266 type E-01 and NRF24l01 and use serial communication (UART) to connect to microntroler like Arduino Uno. There is an ATmega 328P chip or ATtiny85 chip as an intermediary / serial communication control from ESP8266 or NRF24l01 to Arduino Uno acting as a core module. The design of communication module testing ESP8266 and NRF24l01 is done in 3 stages of introduction, selection, and transmission of PnP communication module data. In the introduction phase - the selection of communication module using Triple Handshaking process while in the data transmission phase for communication module ESP8266 using MQTT protocol and communication module NRF24101 using RF24 library to do data transmission. For the introduction phase module / handshaking 1 takes 1.5 while the module selection stage of handshaking 2 and 3 takes 0.2 seconds each time. The results of data transmission from 21 times the delivery of communication module is 100%. It is influenced by the delivery of data delivery delay, for ESP8266 given delay of at least 1.1 seconds while NRF24l01 given delay at least 1 second.
Implementasi Pervasive Computing Pada Sistem Monitoring Konsumsi Daya Listrik Stop Kontak Rumah Ikhwan Zulfy; Dahnial Syauqy; Sabriansyah Rizqika Akbar
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Power saving consumption is necessary. The power consumption of a house can be monitored through kWh meters. The usual kWh meter monitors the overall power consumption of the house, it doesn't measure the details of the total power consumption of the home. Therefore we need to monitor the system of electric power consumption in every room of the house. Based on that requirement, an electrical power consumption of the outlet system monitoring is available in every room of the house using pervasive computing method. The system is using some devices that is a smartphone application and 2 node devices comprising NodeMCU v1.0 as the microcontroller and the current YHDT SCT-013-020 sensor. The system requires some nodes and an application device to be connected in the same network through the websocket protocol. Device node and the application are communicating through a router. The node device processes the sensor readings and then sends the data to the application. The application will scan the IP subnet mask, if the IP adresses are detected and configured on port 19105, the IP will be identified as node device. Then the application will request the sensor data to the node device and display its data to the user. After the test results are done, it will be known that the system can perform discovery with an average total time of 11156.3 ms, then it will send and display the data via the websocket protocol and the smartphone application.
Implementasi Protokol MQTT Pada Monitoring Suhu Dan Ketersediaan Pakan Ikan Pada Akuarium Moh. Saifud Daulah; Dahnial Syauqy; Rakhamadhany Primananda
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Fish feeding is generally still very dependent on human resources that are still manual. Also knowing the temperature in the aquarium water is also necessary for the maintenance of fish. However, there is still much indifference to the temperature and feeding of irregular fish. So we need a system of fish feeding automation and monitoring of temperature conditions in the water. In this system using DS18B20 temperature sensor to know the temperature in the aquarium and loadcell sensor is used to determine the availability of fish feed on the container. The loadcell sensor is used to determine the change of the weight of the container that holds the fish feed, so that information is forwarded to the application. Information obtained by hardware is sent to the application using MQTT protocol communication where data is sensed. The hardware acting as a publisher will send the data to the broker. Applications android acting subscriber will display data in the form of water temperature information, the availability of feed and fish feed scheduling based on information obtained from the hardware. Based on the results of the tests performed is the average percentage error error of 21.87%. Then for the average weight value of feed out for 5 seconds of 28.29 gr. Scheduling for open feed cover is done every 1 minute.
Implementasi Modul Antarmuka Perangkat Sensor Dan Komunikasi Pada Uart Dan I2C Dengan Fitur Plug And Play Bunga Boru Hasian Siahaan; Sabriansyah Rizqika Akbar; Dahnial Syauqy
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Currently there are many products from various vendors of IOT service providers in the world. The product that intended here is a sensor and Communication Module. Sensor is a device that can sensing a condition and can provide value of the condition. Communication Module is a devices that can allow two or more microcontrollers like Arduino to communicate. Each sensor and Communication Module from each vendor has its own configuration and also its own way to communicating. While users have a variety of needs that sometimes require to combine various devices. Therefore, it takes a way to connect the various sensors and Communication Modules in one module that is a Interface Module, so that it can be easier in its use. In this study there are four sensors and two Communication Modules that connected to one Interface Module. Installation of sensors and Communication Modules with Plug and play features that eliminate configuration during installation. The path used for the installation of sensors is I2C (Inter Integrated Circuit) through path SDA and SCL. Connecting lines with the Communication Module that is UART (Universal Asynchronous Receiver Transmitter) through path RX (receiver) and TX (transmitter). From the test results, the Interface Module successfully detects the Sensor through the address and detects the Communication Module with the translation of the code. Data successfully received from the sensor and successfully forwarded to the Communication Module without configuration.
Implementasi Low Power Mode Pada Perangkat Sistem Pendeteksi Dini Kebocoran Gas Menggunakan Atmega328p Eko Hilmi Firmansyah; Dahnial Syauqy; Sabrian Rizqika Akbar
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

LPG (Liquefied Petroleum Gas) is an economic necessity that needed a day by day in the household. Precautions against the use of LPG can not be underestimated. Because the LPG may leak so that high-risk fire against the onset of gas equipment. By using a system of early detection of gas leakage, the anticipation towards high risk can be prevented much faster and easier to use. In order to make the device the system running efficiently, then the device in its application performance using low power to save power consumption. Saving is done so that the device can work in a relatively long period of time using the battery's energy source. Utilize low power performance at mikrokontroller ATmega328p expected give implementation needs the device on power consumption more efficient. The features are used i.e. sleep mode power down to turn off multiple sub systems on early detection system device gas leaks. Testing resulted in the conclusion that the system is running in accordance with the principles of its work. On testing reading sensor MQ-6 can take the data of gas is detected on the sensor. On testing the sensor reading FC-4 can read the value of digital data. On the power consumption of the device is able to suppress the flow of 23.54 from 157.02 mA with the application of the sleep mode power down.
Implementasi Perangkat Rumah Cerdas Pervasif Menggunakan Komunikasi Websocket dan Struktur Data JSON Ahmad Mustafidul Ibad; Sabriansyah Rizqika Akbar; Dahnial Syauqy
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Perkembangan teknologi telah memicu pergeseran mendasar dalam gaya hidup modern. Salah satu penerapan dalam teknologi yang saat ini banyak dikupas secara mendalam adalah rumah cerdas (smart home). Perangkat dari teknologi rumah cerdas sangat beragam sehingga sulit untuk menyelaraskan kinerja sistem yang dibuat. Hal tersebut diatasi dengan membagi sistem menjadi sub-sistem yang lebih kecil sehingga akan memudahkan dalam manajemen sistem yang dibuat. Hal itu disebut juga sebagai modular system. Adanya self-management devices sangat penting agar perangkat pada rumah cerdas dapat memanajemen dirinya sendiri. Pervasive devices merupakan istilah yang digunakan untuk perangkat yang meresap dalam kehidupan sehari-hari yang memberikan layanan serta kemudahan kepada penggunanya. Untuk mencapai hal itu, pervasive devices harus mampu bekerja secara mandiri. Penelitian ini merancang dan menerapkan sistem yang dapat mendeteksi adanya raspberry pi (pervasive devices) secara otomatis pada jaringan lokal dan secara mandiri sistem dapat menyiapkan serta menyediakan layanan dimana pengguna dapat menggunakan layanan tersebut yaitu kendali led melalui web browser. Teknologi atau metode komunikasi antara web browser dan raspberry pi yang digunakan adalah websocket, sedangkan antara raspberry pi dengan wemos sebagai mikrokontroler untuk led yaitu menggunakan socket UDP (User Datagram Protocol). Pengujian dilakukan dengan menghitung waktu penemuan (discovery time) untuk menemukan raspberry pi pada jaringan lokal serta waktu respon layanan (on off, dimming dan rgb). Dari hasil pengujian, waktu penemuan didapatkan rata-rata waktu sebesar 4,23 detik dan rata-rata waktu respon layanan sebesar 0,52 detik.
Sistem Monitoring RPM Roda Smart Wheelchair Pada Halaman Web Berbasis Ajax Menggunakan Sensor Optocoupler Afdy Clinton; Dahnial Syauqy; Fitri Utaminingrum
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 9 (2018): September 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

The difference in the speed of an electric motor can produce an unsuitable output. The use of two electric motors with different speeds to move the wheels of a smart wheelchair or a robot car causes the device to move in the direction that is not intended. Based on these problems, it needs a wireless RPM monitoring system in order to know the speed difference between the two motors or both wheels with ease. This study focuses on knowing the RPM of both wheels smart wheelchair by using incremental encoder. 2 Optocoupler Sensors and 2 encoder disks with 20holes is implemented in the smart wheelchair to know the RPM value of each wheel. The Optocoupler sensor is used to detect how many holes are detected in 1sec, so the RPM of the motor or wheel can be known. Based 50 tests ​​of the Optocoupler Sensor on the right side of the prototype obtained an average percent error of 0.92% and the left side obtained 0.87%. Based on 10 tests of Sensor Optocoupler on the right side on smart wheelchair obtained an average percent error of 2.00% and left side obtained 2.06%. The connection status of NodeMCU WiFi when connected to a laptop at a distance of 10-50meter is connected and the connection status at a distance of 60-70meter is disconnected.
Rancang Bangun Pengenalan Modul Sensor dengan Konfigurasi Otomatis Berbasis Komunikasi I2C Nicho Ferdiansyah Kusna; Sabriansyah Rizqika Akbar; Dahnial Syauqy
Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer Vol 2 No 10 (2018): Oktober 2018
Publisher : Fakultas Ilmu Komputer (FILKOM), Universitas Brawijaya

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Abstract

Wireless Sensor Network is one of the many technologies currently used in various fields. But in fact to be able to make a WSN system can work requires a lot of time, experience and also sufficient knowledge. It is difficult to configure a node to work properly. In order for the sensor node can be used alone the process to be traversed quite complicated, starting from the arrangement of the circuit, wiring, programming and others. Solution to this problem is by applying a Modular WSN system where part of the node is separated into specific modules by type and usability, the module type is divided into core module (controller device), communication module and sensor module. In the existing module itself applied Plug and Play system so that each module can be directly used without having to go through any configuration process. In this study only focuses on the sensor module where the sensor module consists of several different types of sensors. The sensor modules that the PnP system has implemented can be directly used when connected to the controller. The process of detection and identification process is done by utilizing serial communication I2C (Inter Integrated Circuit). From the results of several tests conducted known that the process of detection, data transmission and also the selection of active modules successfully done without experiencing any constraints.
Co-Authors A. Ashar Ashari A. Baihaqi Mubarok Abdul Aziz, Muhammad Rafi Abdul Rahman Halim Abdussalam, Ghifarie Sa'id Achmad Basuki Achmad Fanani Kurniawan Saputra Achmad Rizal Zakaria Addin Miftachul Firdaus Adharul Muttaqin Adhisuwignjo, Supriatna Adhitya Bhawiyuga, Adhitya Adi Setiyawan Adinugroho, Sigit Adit Ilmawan Adryan Chiko Pratama Afdy Clinton Afflatuslloh Adi Salung Agastya Bramanta Sanjaya Aghnadiin, Radifan Muhammad Agi Putra Kharisma Agra Firmansyah Agung Bachtiar Sukmaarta Agung Leona Suparlin Agung Prasetyo Agung Setia Budi Agung Setia Budi, Agung Setia Agung Widya Gumelar Agung Wismawan Rochmatullah Ahmad Mustafidul Ibad Ahmad Rizqi Pratama Ahmad Wildan Ahmad Yazid Bastomi AJI, IBRAHIM Akbar, Muhammad Daffa Pradipta Akbar, Muhammad Faithur Adel Patria Alfian Reza Pahlevi Alrynto Alrynto Althaf Banafsaj Yudhistira Andhika Nino Pratama Anggi Diatma Styandi Angsar, Mohamad Rinaldi Anisa Awalia Rizky Anjasmoro, Reza Ardiansyah Ardiansyah Arief Kurniawan Arief Wahyu Wicaksono Aulady, Fadhli Aulia Zhafran Barlian Henryranu Prasetio Bayu Rahayudi Bayu Santoso Belsazar Elgiborado Giovani Djoedir Billy Gusparentaqi Bima Muridianto, Muhammad Bimo Dimas Nugraraga Buce Trias Hanggara Bukhori Darmawan Bunga Boru Hasian Siahaan Cahyanita Qolby Rahmarta Rizaputri Cipto Bagus Jati Kusumo Constantius Leonardo Pratama Dading Firwandhi Sukma Daffa, Ali Zhafran Dedi Siswanto Defri Alif Raihan Denis Reza Ramdani Devo Harwan Pradiansyah Dimas Rizqi Firmansyah Dini Eka Ristanti Dini Ismawati Duwi Hariyanto Dwi Arini, Talitha Dwi Firmansyah Dwiki Ilham Bagaskara Dyas Restu Palupi Edita Edita Rosana Widasari Edita Rosana Widasari, Edita Rosana Eka Nanda Sugianto Eko Ardiansyah Eko Hilmi Firmansyah Eko Setiawan Eko Setiawan Elisabeth Agustina Era Imanningtyas Ezra Maherian Fachry Ananta Fahmi Gymnastiar Gozali, Muhammad Faizal Ardiansyah FAQIH, ABDULLAH Farras Nabil Fatur Rahman, Mohammad Fauzi Ali Farhi Fauzi Rivani Fikri Fauzan Firdy Yantama Firmanda, Dwi Ady Firza Zamzani, Muhammad Fitriyah, Hurriyatul Fungki Pandu Fantara Ganda Wibawa Putra Gembong Edhi Setyawan Ghazy Timor Prihanda Govinda Dwi Kurnia Sandi Graciella Fiona Br. Panjaitan Grafidi, Alif Akbar Gunawan Wahyu Andreanto Hafidz Abdillah Masruri Hafiz Nul Hakim Hamdan Bagus Firmansyah Hamzah Attamimi Hanggara, Buce Trias Hannats Hanafi Ichsan Haqiqi, Farih Akmal Harahap, Syazwandy Hazal Kurniawan Putra Hazbiy Shaffan, Nur Henryranu Prasetio, Barlian Herenda Madi, Matius Herwin Yurianda Hurriyatul Fitriyah Hurriyatul Fitriyah Hurriyatul Fitriyah, Hurriyatul Idang Wahyuddin Septiawan Ihsanurrahim Ihsanurrahim Ikhwan Zulfy Imam Cholissodin Irfan Pratomo Putra Irvan Ramadan Issa Arwani Ivan Kasogi Izaaz Waskito Widyarto Izza Febria Nurhayati Jeffry Atur Firdaus Jevandika Jezriel Lukas Lumbantobing Johannes Archika Waysaka Khairul Anwar Khairul Anwar Kresna Wiska Kafila Kurnia, Yudisthira Dwi Kurniawan, Rizaldy Ariobimo Kurwniawan, Wijaya La Ode Muh. Fadlun Akbar Lase, Nicolash Jeremy Onoma Latief Nurrohman Alfansuri Lavanna Indanus Ramadhan Lb Novendita Ariadana Lutfi Anang Makruf M Nuzulul Marofi M. Adib Fauzi Rahmana M. Ali Fauzi Mahendra, I Gusti Putu Krisna Suaba Malik, Hifdzul Megananda, Muhammad Rifqi Mela Tri Audina Merry Hassani, Fadila Muqtadaro Mhd. Idham Khalif Moch. Alfian Zainullah Moch. Alvin Yasyfa Salsabil Mochamad Iswandaru Mochammad Hannats Hanafi Mochammad Hannats Hanafi Ichsan Moh. Saifud Daulah Moh. Zainur Rodhi Mohammad Ali Muhsin Mohammad Faizal Ajizi Muchamad Rafi Dharmawan Muchammad Cholilulloh Muh. Syifau Mubarok Muhajir Ikhsanushabri Muhammad Alif Alfajra, Andi Muhammad Aminul Akbar Muhammad Daffa Bintang Nugroho Muhammad Eraz Zarkasih Muhammad Fadhil Sadeli Muhammad Fajaruddin Akbar Muhammad Habib Jufah Alhamdani Muhammad Hanif Haikal Muhammad Hannats Hanafi Ichsan Muhammad Irvine Fidellio Maiza Muhammad Jibriel Bachtiar Muhammad Kholash Fadhilah Muhammad Naufal Muhammad Nazrenda Ramadhan Muhammad Rizqi Zamzami Muhammad Wingga Woggiasworo Muhammad Yusuf Ramadan Mukhamad Angga Setiawan Mukhamad Roni Mukmin Mukmin Munif Cleveriandy, Ahmad Musharrif, Mohammad Faiz Mustajib Furqon Haqiqi Mutiara Pramesti Utami Muzayyin, Asep Nabila Eka Putri, Alisya Nadhifa, Nadaa Nanda Epriliana Asmara Putri Navayo, Bagja Nicho Ferdiansyah Kusna Nikmatus Soleha Niko Aji Nugroho Noveriko Noveriko Nur Aini Afifah Isbindra Nur Fuady, Muhammad Sholahuddin Nurul Ikhsan Nyoman Wira Prasetya Oggy Setiawan Parja, Mujianto Anda Perkasa, Septiyo Budi Prakoso, Aldo Hani Pramandha Saputra Prasetya, Nyoman Wira Prasetyo, Budi Eko Prasojo, Satya Haryo Pricillia, Lidya Ruth Purnomo, Welly Putra Pandu Adikara Putra Pandu Adikara Putra, Brylliano Maza Raga Jiwanda Raharja, Kahfi May Rahayu, Vina Trisnawati Rahman, Edy Raka Bagas Perdana Rakhamadhany Primananda Rakhmadhany Primananda Rakhmadhany Primananda, Rakhmadhany Randy Cahya Wihandika Rekyan Regasari Mardi Putri, Rekyan Regasari Mardi Renal Prahardis Reza Budi Pratikto Rezak Andri Purnomo Rifqi Anshari Ringga Aulia Primahayu Rint Zata Amani Rioadam Sayyid Abidin Riza Irfan, Muhammad Rizal Maulana Rizal Maulana, Rizal Rizal Setya Perdana Rizka Ayudya Pratiwi Rizky Putra Wijaya Rizqi Muh. Muqoffi Ashshidiqi Ronilaya, Ferdian Rudy Agus Santoso Sabrian Rizqika Akbar Sabriansyah Rizkiqa Akbar Sabriansyah Rizqika Akbar Sabriansyah Rizqika Akbar Sabriansyah Rizqika Akbar Safirurrasul Santoso, Mush'ab Safrudin Bendang, Dehleezto Lawanangkara Salman Farizy Nur Samuel Lamhot Ladd Palmer Simarmata Santoso, Bayu Saputro, Mauna Mohammad Wahyu Sari, Sylvia Sentosa, Azy Dwi Putra Septino, Fernando Setiawan , Eko Shaffan, Nur Hazbiy Shelsa Faiqotul Himmah Sigi Syah Wibowo Siradjuddin, Indrazno Sulaiman, Ihsan Susilo, Faizal Andy Sutikno Sutikno Syarief Taufik Hidayatullah Syauqi, Mohd Alfitra Syazwana, Selvia Tibyani Tibyani Tio Haryanto Adi Putra Toar, Mikhael Ryan Tobias Sion Julian Utaminingrum, Fitri Utomo, Satria Wahyudi Vira Muda Tantriburhan Mubarak Virza Audy Ervanda Wahyu Adi Prayitno Welly Purnomo Widasari, Edita Rosana Widhy Hayuhardhika Nugraha Putra Wijaya Kurniawan Wijaya Kurniawan Wijaya Kurniawan Wijaya, Jason Wildo Satrio Wirafadil Nugraha Wisik Dewa Maulana Wisnu Mahendra Xavierro Lawrenza Yanottama Oktabrian Yudhistira, Gevan Putra Yuita Arum Sari Yunan Alamsyah Nasution Yunus, Ahmad Haykal Yurliansyah Hirma Fajar Yusriansyah Shohibul Hamzah Zahra, Inez Bedwina Zakaria, Akhmad Nizar