Perancangan Sistem Monitoring Kemiringan Bongkar Muat di Kapal Bulkcarrier Menggunakan Sensor Gy-521 Berbasis Lora
DOI:
https://doi.org/10.61132/jupiter.v2i3.328Keywords:
Stability, Loading and Unloading, Experiment, Sensor GY-521 Mpu-6050, LoRa Ra-02 SX1278Abstract
Ship stability problems are one of the causes of ship accidents such as ships that are difficult to control, unbalanced and sinking, either at sea during shipping or during loading and unloading. This is the background for the need to improve ship safety systems to reduce ship accidents. The purpose of this research is to accurately monitor the loading and unloading slope and determine the maximum distance that can be connected to LoRa. The working system of this tool is made with the intention of preventing ship accidents and creating a better sea transportation system. The work process of this tool is done by reading the tilt angle of the ship which will then be read through the LCD screen and the LED lights will light up and the buzzer will sound if it reaches a certain tilt angle. Making it easier for loading and unloading operators to manage their cargo so that the ship remains stable.The methodology and design of the applied scientific work tool system that will be carried out using experimental research methods. Experimental research methods are used to produce certain products, and test their effectiveness. The results of research on this applied scientific work are the accuracy of the gyroscope sensor GY-521 mpu-6050 which is 98.71% with an error of 1.29% and the distance of LoRa Ra-02 SX1278 that can be reached on a stable wireless system is as far as 370m in water and 205m on land. More than that the receiver cannot receive data anymore or is invalid.
References
Abdurrasyid, A., Agtriadi, H. B., & Alifiana, L. (2017, November 2). Pemanfaatan Raspberry Pi pada model sistem monitoring stabilitas kemiringan kapal penumpang untuk antisipasi kecelakaan. Retrieved May 3, 2023, from Google Scholar: https://jurnal.umj.ac.id/index.php/semnastek/article/view/1986
Anshari, D. F. (2014). Kapal Roro tenggelam di Pelabuhan Tanjung Priok. Jakarta: KOMPAS.COM.
Baedowi, A. (2018, February 22). Rancang bangun prototype keseimbangan kapal terhadap beban berat dengan menggunakan gyroscope berbasis Arduino Uno. Retrieved February 7, 2023, from Repository.unej.ac.id: https://repository.unej.ac.id/handle/123456789/85880
Mangkusasmito, F., Tadeus, D. Y., Winarno, H., & Ariyanto, E. (2020). Peningkatan akurasi sensor GY-521 MPU-6050 dengan metode koreksi faktor drift. ULTIMA Computing, 12(2), 91.
Mashuda, A., & Kholis, N. (2019, January 30). Rancang bangun sistem monitoring kestabilan kapal berbasis Arduino menggunakan sensor GY-521 secara wireless. Retrieved May 10, 2023, from Jurnal Teknik Elektro Unesa: https://ejournal.unesa.ac.id/index.php/JTE/article/view/29941
Nantan, Y., et al. (2023). Pemodelan kotak 3D menggunakan sensor MPU6050. In Seminar Nasional Teknik Elektro dan Informatika (SNTEI), 37-40.
Santoso, B., Romadhoni, & Suzdayan. (2021). Pengukuran titik stabilitas secara melintang kapal dengan percobaan kemiringan simulator stabilitas kapal berbasis mikrokontroler Arduino. Retrieved from http://eprosiding.snit-polbeng.org/index.php/snit/article/view/249, 552-562.
SOLAS. (1974). Chapter VI - Carriage of Cargoes & Chapter VII - Carriage of Dangerous Goods.
Taylor, L. G. (1977). The principles of ship stability. In S. &. Glasgow: Brown, Nautical Publisher (pp. 7-60.). Glasgow: Brown, Son & Publisher, Ltd., Nautical Publisher.
Zamzami, M. R. (2016). Perencanaan sistem mekanis pengatur stabilitas kapal barge pengangkut lumpur saat melakukan proses unloading. Retrieved from https://repository.its.ac.id/72487/, 5-9.
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