Penerapan Metode Waterfall pada Skema Sistem Pengaman Sepeda Motor dengan Arduino Nano

Respati ◽  
2021 ◽  
Vol 16 (2) ◽  
pp. 63
Author(s):  
Fajar Mahardika, Asep Saepullah, Muhammad Zaky Nur Fuadi,Indra Darmawan

INTISASIDengan meningkatnya pertumbuhan kendaraan bermotor, khususnya kendaraan bermotor roda dua setiap tahun, juga menyebabkan peningkatan kejahatan yang terjadi di masyarakat. Berdasarkan data statistik na-sional, tindakan kriminal, terutama kendaraan roda dua saat ini, tidak lagi mengejutkan. Pencurian ini banyak terjadi baik di kota-kota besar maupun di pedesaan. Dengan perkembangan saat ini kendaraan bermotor roda dua bukan kendaraan khusus lagi, karena setiap kepala rumah tangga memiliki lebih dari satu kendaraan bermotor roda dua. Masyarakat banyak memilih kendaraan bermotor roda dua karena fleksibilitas. Sistem kunci ini kadang lupa di lakukan oleh pemilik kendaan bermotor roda dua. Hal ini menyebabkan para pelaku kejahatan bebas mengambil tindakan tanpa dicurigai oleh masyarakat sekitar. Dengan kondisi tersebut, kurang efektif dengan keamanan yang menggunakan sistem kunci. Dengan perkembangan ilmu teknologi saat ini menjadi pengaruh sangat besar untuk pengembangan sistem keamanan kendaraan bermotor roda dua. Teknologi yang sedang berkembang sekrang yaitu mikrokontroler. Dengan menggabungkan sistem keamanan kunci dengan arduino bisa menghasilkan sistem pengaman kendaraan bermotor roda dua dengan alarm Arduino.  Dengan semakin meningkatnya kejadian peneliti melakukan penelitian tentang sistem keselamatan sepeda motor. Dalam penelitian ini menggunakan metode waterfall sebagai desain sistem keamanan. Dari hasil penelitian diperoleh skema keselamatan kendaraan bermotor menggunakan Arduino Nano V3.Kata kunci— Sepeda motor, Sistem Keamanan, Waterfall. ABSTRACTWith the increasing growth of motor vehicles, especially two-wheeled motorized vehicles each year, also causes an increase in crime that occurs in the community. Based on national statistical data, criminal acts, especially two-wheeled motor vehicles today, are no longer surprising. This theft happens a lot both in big cities and in the countryside. With the current development of two-wheeled motorized vehicles is not a special vehicle anymore, because every head of household has more than one two-wheeled motorized vehicle. Many people choose two-wheeled motorized vehicles because of their flexibility. This key system is sometimes forgot-ten by the owner of a two-wheeled motorized vehicle. This causes the perpetrators of crime to be free to take action without being suspected by the surrounding community. Under these conditions, it is less effective with security using a key system. With the development of technology now is a very big influence for the develop-ment of two-wheeled motor vehicle safety systems. The technology that is currently developing is a microcon-troller. By combining a key security system with Arduino it can produce a two-wheeled motorized vehicle safety system with an Arduino alarm. With the ever increasing incidence of researchers conducting research on mo-torcycle safety systems. In this study using the waterfall method as a security system design. From the research results obtained a motor vehicle safety scheme using Arunio Nano V3.Kata kunci—  Motorcycle, Safety System, Waterfall..

2007 ◽  
Vol 63 (2) ◽  
pp. 300-306 ◽  
Author(s):  
Troy Lisa Holbrook ◽  
David B. Hoyt ◽  
A Brent Eastman ◽  
Michael J. Sise ◽  
Frank Kennedy ◽  
...  

2017 ◽  
Vol 3 (1) ◽  
pp. 23
Author(s):  
Rahmat Saepul Turohman ◽  
Abubakar Iskandar ◽  
M.YGG Seran

The purpose of this study are to describe the discipline of motor vehicle drivers in traffic and the level of traffic safety in Bogor City, to analyze the effect of discipline motorists against motor vehicle safety in Bogor, to describes the efforts undertaken Bogor City Government cq. DLLAJ city of Bogor in improving discipline of motorists against motor vehicle safety in Bogor. Methods used are descriptive and associative method. The data used are primary data and secondary data. Primary data is collected by distributing a questionnaire, and supported by the observations and interviews. The collection of secondary data sourced from documents, literature and related research. The sampling technique is simple random sampling that amounted to 56 motorists on the three streets are: Jl.Raya Tajur as many as 20 riders, 16 riders from Jl.KS Tubun, and 20 riders from Jl.Jalak Harupat. Based on the correlation coefficient between the disciplines of motor vehicles with safety in traffic amounted to 0.513 and the interpretation is quite strong, and the positive direction indicates that the variable of riders discipline with variable of safety is significant correlation, means that the higher discipline the higher the level of safety. That correlation between the variable X (Discipline) with Y (Safety) is significant at an error rate of 0.01 (1%) and 99% confidence. Based on the conclusion, the author recommend: the Department of Transportation in Bogor through the Section of Communication, Information, Education and Communications-Section Guidance and Safety in order to continue disseminating safety riding, and equipping of road infrastructure such as mounting traffic signs, road markers, tool of speed limit, a safety device road users to improve road safety. Keywords: High-Discipline, safety drive, the higher discipline the higher the level of safety


2019 ◽  
Vol 9 (4) ◽  
pp. 1-7
Author(s):  
Mega Putra Yogia Santoso

Currently, most motorized vehicle safety technologies, especially cars, still rely heavily on the manufacturer's default safety system from the car system itself. By using a security system from the factory default there are still shortcomings because a motorized vehicle or car can still be used by anyone and there is no age limit in its use. For that, we need a car safety system that is able to prevent the occurrence of car theft and underage drivers. The purpose of this research is to design a central lock security system for motor vehicles, especially cars, using e-KTP identification to improve the security system and reduce underage drivers. For the identification process of e-KTP ID using the RFID reader MFRC522. The RFID reader is connected to the Arduino Nano as a controller. The results of the research used the RFID reader to read e-KTP ID in a vertical and horizontal position with a distance of less than 12 mm. When there is an acrylic barrier and a glass barrier the maximum reading distance is less than 9 mm and the plate barrier cannot be read. The existence of obstacles makes reading the e-KTP card will be reduced.


INFO-TEKNIK ◽  
2020 ◽  
Vol 20 (1) ◽  
pp. 121
Author(s):  
M. Adi Rahman ◽  
Hamsir Hamsir ◽  
Lukman Lukman

One of the problems faced by motor vehicle users is the frequent theft and loss of motorbikes. The purpose of the study was to design a finger with the aim of increasing the safety of motorvehicles. The method use in the research is the research method used with the case study approach method which is the innovation of making motorcycle vehicle safety devices that will function as a log out so that motorized vehicles cannot run if they do not use the ignition key of the motor vehicle owner. The expect results of this study are the availability of motor vehicles safety devices so that the potential loss of motorvehicles can be reduce. The results of this study are expect to be useful for the benefit of many people and can be develoveas industrial innovation


1985 ◽  
Vol 14 (8) ◽  
pp. 822-823 ◽  
Author(s):  
AMERICANCOLLEGEOFEMERGENCYPHY

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