基于LoRA的印尼传统渔民船舶安全监测系统(VSMS

F. Nofandi, R. Mahendra, Endang Purwanti
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引用次数: 0

摘要

根据印尼渔业统计数据,十多年来,印尼90%的渔船以30 GT以下的渔船为主,这些船只一般没有船舶建筑师的计算或规划图纸。在印度尼西亚,包括渔船事故在内的大部分航运灾难或船舶事故是由几个因素造成的:人为失误43.67%,自然因素32.37%,技术因素23.94%。在捕鱼作业中,由于恶劣天气造成的事故是不可避免的。然而,随着人力资源素质和技术因素的提高,船舶事故有望避免或最小化。根据全球海上遇险和安全系统(GMDSS),符合国际海事组织标准的船只已经基于卫星通信。要求使用GMDSS标准的船舶是300总吨及以上的船舶。我们开发了一种成本较低的船舶安全监测系统(VSMS),它可以用来确定船舶的位置,并通过使用求救按钮系统(如基于卫星的GMDSS系统)来增加。从海岸警卫队哨所到船只的通信使用基于无线电频率的LoRA模块,尽管没有按下船上的遇险按钮,船上的设备将继续向海岸警卫队哨所发送位置,船只的速度和rpm。如果按下遇险按钮,仍然会发送位置,海警哨所的蜂鸣器会打开,船只的位置可以在当地的web服务器上看到,这样海警哨所的官员就可以立即找到船只的坐标。它可以最大限度地减少搜索船只位置的时间,因为船只的坐标是已知的。根据船舶安全监测系统(VSMS)试验结果,10条数据从船舶传输到海警哨所可以工作,在陆地和海上可以发送9条数据,距离为0 - 50米,可以发送1条数据,距离为0 - 100米,平均传输延迟为5秒。数据量和交货延迟影响刀具的工作距离。遇险功能或危险信号需要手动或自动传输0-15秒的数据,直到海警哨所报警,因为船舶的危险信号是从船舶到海警哨所激活的
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Vessel Safety Monitoring System (VSMS) Based on LoRA for the Safety of Indonesian Traditional Fishers
Based on data obtained from Indonesian fisheries statistics, over ten years, it is known that 90% of the fishing fleet in Indonesia is dominated by fishing vessels under 30 GT. Generally, these vessels are not equipped with the calculations of the shipping architect or planning drawings. the large percentage of shipping disasters or vessel accidents in Indonesia, including fishing vessel accidents, is caused by several factors: 43.67% due to human error, 32.37% due to nature, 23.94% due to technical factors. Accidents due to bad weather cannot be avoided during fishing operations. However, with the quality of human resources and technical factors that have improved, it is hoped that vessel accidents can be avoided or minimized. According to the Global Maritime Distress and Safety System (GMDSS), vessels with the IMO standard are already based on satellite communications. Vessels required to use the GMDSS standard are vessels with a size of 300 GT and above. We develop a Vessel Safety Monitoring System (VSMS) which has a lower cost, which can be used to determine the vessel’s position and is added by using a distress button system such as the satellite-based GMDSS system. the communication from the coast guard post to the vessel uses the LoRA module based on radio frequency, although without pressing the distress button on the vessel, the device on the vessel will continue to send location, vessel's speed, and rpm to the coast guard station. If the distress button is pressed, the location will still be sent, the buzzer at the coast guard post will turn on, and the vessel's location can be seen on the local web server so that the coast guard post officers can immediately find out the coordinates of the vessel. It can minimize the time to search for the vessel's location because the vessel's coordinates are known. Based on the results of the Vessel Safety Monitoring System (VSMS) test, 10 data transmission from the vessel to the coast guard post can work on the land and the sea it can send nine types of data with 0 - 50 meters distance, it can send 1 type of data with a 0 - 100 meters distance, with an average delivery delay of 5 seconds. The amount of data and the delivery delay affects the working distance of the tool. The distress function or the danger signal requires data transmission for 0-15 seconds manually or automatically until the alarm goes off at the coast guard post since the vessel's danger signal is activated from the vessel to the coast guard post
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