DEVELOPMENT OF UNDERWATER ROV (REMOTELY OPERATED VEHICLE) SYSTEMS AND MECHANISM
Authors/Creators
Description
Remotely Operated Vehicle or abbreviated as ROV is an underwater explorer robot where the robot is controlled remotely by an operator using a remote control system. Indonesia is a maritime country where most of Indonesia's territory is waters which of course requires monitoring to protect aquatic resources and ecosystems. Water ecosystems certainly have various kinds of hazards that cause harm to divers, such as wild animals, waters contaminated with toxic waste, limited oxygen, and many other risks. Based on these problems, research was carried out, namely the Design and Development of Underwater ROV (Remotely Operated Vehicle) Mechanisms and Systems where the tool built is an underwater robot that uses 8 DC motors to be able to perform 12 types of movements under water. The final result obtained by the ROV is that it is able to perform all of these movements except for the right somersault and left somersault. The speed and direction of rotation of the motor is controlled by a device, namely the BTS7960 motor driver. This robot aims to measure pressure and temperature and capture images underwater to a depth of 4m. Pressure and temperature measurements were made using a BMP180 pressure sensor and a DS18B20 temperature sensor where the measurement results will be displayed on a 16x2 LCD. Based on the test results, the pressure sensor has an error rate of 3.6% and a temperature sensor of 0.34%. Images and videos are captured by a device, namely a CCTV camera where the device is connected to a laptop device as a monitor. The test produced results in the form of images and videos that were quite clear.
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References
- Aldino, Y., Sulistiyanti, S.R., & Komarudin, M. (2018). Rancang Bangun Perangkat Kendali Rov Berbasis Joypad Dan Aplikasi Pemantauan Kondisi Bawah Air Berbasis Video Streaming. Jurnal Rekayasa dan Teknologi Elektro, Vol. 12, No. 3. https://doi.org/10.23960/elc.v12n3.2091 Abidin, Z., Chrismianto, D., & Trimulyono, A. (2015). Analisa Underwater Thruster Pada Remotely Operated Vehiicle (Rov) Dengan Metode Cfd. Jurnal Teknik Perkapalan Universitas Diponegoro, Vol. 3, No. 2. https://ejournal3.undip.ac.id/index.php/naval/article/view/8594 Anam, H., & Setiawan, J.D. (2015). Simulasi Dan Analisa Dinamika Remotely Operated Vehicle(Rov). Jurnal Teknik Mesin Universitas Diponegoro, Vol. 3, No. 1, pp.1-7.https://ejournal3.undip.ac.id/index.php/jtm/article/view/8689 Arief, Hollanda. (2012). RANCANG BANGUN MINI REMOTELY OPERATED VEHICLE (ROV) UNTUK EKSPLORASI BAWAH AIR. Laporan tesis Departemen Ilmu dan Teknologi Kelautan, Fakultas Perikanan dan Ilmu Kelautan, Institut Pertanian Bogor, Bogor, Indonesia. Bluerobotics.com.(2019). Rov and Marine Robotics System and Components. https://bluerobotics.com/ (diakses 25 Juli 2020). HB, I. (2011). Perbaikan Kualitas Coran Propeller Pada Industri Kecil Dengan Metode Taguchi. AUSTENIT, Vol. 3, No. 1. https://doi.org/10.5281/zenodo.4544225 Husin, Z., Firmansyah, B., Lazuardi, E., Prasetyo, A., & Nurhasanah, N. (2014). Studi Awal Perancangan Prototipe Remotely Operated Vehicle (Rov). MICROTIGA Electrical Engineering Journal Sriwijaya University, Vol. 1, No. 2. https://ejournal3.undip.ac.id/index.php/jtm/article/view/8689 llang, Shanty. (2017). ANALISIS DESAIN AWAL RANCANG BANGUN REMOTELY OPERATED VEHICLE (ROV). Laporan tesis Program Studi Teknik Perkapalan, Fakultas Teknologi Kelautan, Universitas Darma Persada, Jakarta, Indonesia. Junan, Y., Poekoel, V.C., & Putro, M.D. (2018). Rancang Bangun Robot Bawah Air. Jurnal Teknik Elektro dan Komputer (JTEK), Vol. 7, No. 1. https://ejournal.unsrat.ac.id/v3/index.php/elekdankom/article/view/19139 Kurniawan, Robby. (2017). RANCANG BANGUN ROV (REMOTELY OPERATED VEHICLE) MENGGUNAKAN MOTOR AC SINGLE- PHASE. Laporan tesis jurusan Departemen Teknik Fisika, Fakultas Teknologi Industri, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia. http://repository.its.ac.id/id/eprint/45909 Marzuarman, M., Faizi, M.N., & Stephan, S. (2020). Rancang Bangun ROV (Remotely Operated Vehicle) Untuk Mengukur Kedalaman Air Berbasis Sensor MS5803-14BA. ELKHA Jurnal Teknik Elekro Universitas Tanjungpura, Vol. 12, No. 1, pp.19-25. http://dx.doi.org/10.26418/elkha.v12i1.39833 Mulyana, E., Adiningsih, N.U., & Fauzi, C.A. (2016). Rancang Bangun Robot Bawah Air Menggunakan Sistem Ballast Berbasis Rov (Remotely Operated Vehicle) Dengan Frekuensi 433 Mhz. Jurnal Telekomunikasi, Elektronika, Komputasi dan Kontrol TELKA, Vol. 2, No. 2. https://doi.org/10.15575/telka.v2n2.126-137 Pratama, R.A.,& Taufiqurrahman, M. (2018). Monitoring Suhu, Kadar PH, Dan Tingkat Salinitas Menggunakan Wahana Remotely Operated Vehicle (ROV) Sebagai Sarana Observasi Bawah Air. Jurnal Teknik Elektro CYCLOTRON, Vol. 1, No. 2. http://dx.doi.org/10.30651/cl.v1i2.1809 Rahmanto, A.I., Triwiatno, A., & Setiyono, B. (2015). Perancangan Stabilisasi Sudut Orientasi Pitch Pada Remotely Operated Vehicle (Rov) Dengan Metode Kontrol Proporsional Integral Derivatif. Jurnal Ilmiah Teknik Elektro TRANSIENT, Vol. 4, No. 3, pp.450-456. https://doi.org/10.14710/transient.v4i3.450-456 Septian, R.A., Rahmania, A., Nugraha, M.I., & Yudhi, Y. (2017). Remotely Operated Vehicle (ROV) untuk Eksplorasi Bawah Air di Lingkungan Industri Perkapalan. Jurnal Teknologi Manufaktur Manutech, Vol. 9, No. 1. https://doi.org/10.33504/manutech.v9i02.41 Siproni, S., Rasid, M., Seprianto, D., & Yahya. Y. (2018). Pengaruh Proses Pengecoran Terhadap Sifat-Sifat Mekanis Pada Baling-Baling Perahu Motor. AUSTENIT, Vol. 10, No. 1. https://doi.org/10.5281/zenodo.4547642 Susianti, E., Syahputra, N.A., Wibowo, A.U., & Maria, P.S. (2021). Rancang Bangun Robot Observasi Bawah Air – ROV (Remotely Operated Vehicle) menggunakan Arduino UNO. Jurnal Politeknik Caltex Riau ELEMENTER, Vol. 7, No. 2. https://doi.org/10.35143/elementer.v7i2.5207 Wijaya, M.F.R., Kurniantoro, H.L., & Media's, E. (2016). Robot ROV Underwater Berbasis Mikrokontroler. AUTOCRACY:Jurnal Otomasi, Kendali, dan Aplikasi Industri, Vol. 3, No. 2. https://journal.unj.ac.id/unj/index.php/autocracy/article/view/6869 Zaman, M.B., & Taufiqurrahman, M. (2018). Rancang Bangun Sistem Kontrol Dan Pemantau ROV (Remotely Operated Vehicles) Berbasis Android. Jurnal Teknik Elekro dan Komputer TRIAC, Vol. 5, No. 1. https://doi.org/10.21107/triac.v5i1.3833