Ivana Lucia Kharisma, Kamdan, Asep Rizki Firdaus, Rizki Haddi Prayoga, Fakhriyal Riyandi Yasin, Mutiara Annisa Tresna Ati
{"title":"Construction Of Railway Door Automation Prototypes Using Arduino, Servo Motors and Ultrasonic Sensors","authors":"Ivana Lucia Kharisma, Kamdan, Asep Rizki Firdaus, Rizki Haddi Prayoga, Fakhriyal Riyandi Yasin, Mutiara Annisa Tresna Ati","doi":"10.31849/digitalzone.v14i1.13584","DOIUrl":null,"url":null,"abstract":"The Indonesian railway system is currently experiencing a lot of developments in terms of technology. The Indonesian railway system has been integrated with technology 4.0, where all transaction processes, whether payment, ordering tickets or monitoring trains, can be monitored via electronic media. Of course, this technology must be supported by adequate infrastructure, one of which is the railroad crossing. In Indonesia, several railroad lines have been constructed, and many portal or crossbar railroads have also been constructed. The railroad gate is part of the railway system which has a very important role, especially in regulating the safety of train travel. The rail gateway has been a problem and a source of accidents in recent years. This is because there are no security facilities at any rail portals, causing drivers to continue to break traffic laws. The making of this automatic railroad doorstop uses the Prototype method, namely a simulation that uses Arduino UNO R3, servo motors, HC-SR04 ultrasonic sensors and other components that can support the manufacture of this railroad doorstop prototype. The prototype of this automatic train doorstop is equipped with many sensors that works automatically according to what is ordered, so that its use can be easily controlled and implemented in real life. This automatic railroad crossing system is expected to optimize the task of the railroad crossing guard by providing automation for the process of opening and closing the railway door and providing additional warning information for the community around the railway door location so as to reduce the potential for accidents caused by drivers or people who break traffic laws.","PeriodicalId":33266,"journal":{"name":"Digital Zone Jurnal Teknologi Informasi dan Komunikasi","volume":"5 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-05-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Digital Zone Jurnal Teknologi Informasi dan Komunikasi","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31849/digitalzone.v14i1.13584","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The Indonesian railway system is currently experiencing a lot of developments in terms of technology. The Indonesian railway system has been integrated with technology 4.0, where all transaction processes, whether payment, ordering tickets or monitoring trains, can be monitored via electronic media. Of course, this technology must be supported by adequate infrastructure, one of which is the railroad crossing. In Indonesia, several railroad lines have been constructed, and many portal or crossbar railroads have also been constructed. The railroad gate is part of the railway system which has a very important role, especially in regulating the safety of train travel. The rail gateway has been a problem and a source of accidents in recent years. This is because there are no security facilities at any rail portals, causing drivers to continue to break traffic laws. The making of this automatic railroad doorstop uses the Prototype method, namely a simulation that uses Arduino UNO R3, servo motors, HC-SR04 ultrasonic sensors and other components that can support the manufacture of this railroad doorstop prototype. The prototype of this automatic train doorstop is equipped with many sensors that works automatically according to what is ordered, so that its use can be easily controlled and implemented in real life. This automatic railroad crossing system is expected to optimize the task of the railroad crossing guard by providing automation for the process of opening and closing the railway door and providing additional warning information for the community around the railway door location so as to reduce the potential for accidents caused by drivers or people who break traffic laws.
印尼铁路系统目前在技术方面正在经历许多发展。印尼的铁路系统已经集成了4.0技术,所有的交易过程,无论是付款、订票还是监控火车,都可以通过电子媒体进行监控。当然,这项技术必须得到足够的基础设施的支持,其中之一就是铁路道口。在印度尼西亚,修建了几条铁路线,还修建了许多门户或横贯铁路。铁路闸板是铁路系统的重要组成部分,在调节列车运行安全方面起着十分重要的作用。近年来,这个铁路门户一直是个问题,也是事故的一个来源。这是因为铁路出入口没有保安设施,导致司机继续违反交通法规。该铁路自动挡门器的制作采用了Prototype方法,即利用Arduino UNO R3、伺服电机、HC-SR04超声传感器等能够支持该铁路挡门器原型制造的部件进行仿真。这款火车自动挡门器的原型配备了许多传感器,可以根据命令自动工作,因此它的使用可以很容易地控制和实现在现实生活中。该铁路自动道口系统旨在优化铁路道口守卫的任务,为铁路道口开合过程提供自动化,并为铁路道口位置周围的社区提供额外的警告信息,以减少驾驶员或违反交通法规的人造成事故的可能性。