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Design and Build Pedestrian Lane Automatic Vehicle Restraint System: Solutions to Make It Easier for Road Crossers Istiyanto, Bambang; Syah, Angga David Maolana; An Najwa, Dihya; Ariffansyah, Yunindra Eka
Fidelity : Jurnal Teknik Elektro Vol 7 No 1 (2025): Edition for January 2025
Publisher : Universitas Nusa Putra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52005/fidelity.v7i1.272

Abstract

The problem that is often faced in the crossing area is the lack of safety for pedestrians due to the absence of automatic vehicle protective equipment. Without a system that can automatically hold or slow down the vehicle, drivers are less likely to reduce their speed when approaching the crosswalk, increasing the risk of accidents and making it difficult for pedestrians to cross safely. In this study, the variables used are dependent variables or bound variables. Explain the effectiveness of vehicle restraint, pedestrian safety level, driver reaction time and system success percentage. The method in this study is experimental, namely by manipulating pedestrians with tools. At the same time regarding the overview of the principles or process of the tool. The design of this system is expected to be an innovative solution to make it easier for pedestrians, reduce the risk of accidents in crossing areas and make a positive contribution to improving road safety.
Rancang Bangun Prototipe Sistem Jalur Bongkar Muat Cerdas (Smart Loading Zone) Rizal Aprianto; Dandy Aji Saputra; Ariffansyah, Yunindra Eka
Telekontran : Jurnal Ilmiah Telekomunikasi, Kendali dan Elektronika Terapan Vol. 13 No. 1 (2025): TELEKONTRAN vol 13 no 1 April 2025
Publisher : Program Studi Teknik Elektro, Fakultas Teknik dan Ilmu Komputer, Universitas Komputer Indonesia.

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.34010/telekontran.v13i1.16980

Abstract

The rapid growth of cities in Indonesia, especially in market and terminal areas, poses challenges in managing logistics and parking of goods vehicles. The main problem is the limited land that causes vehicles to park haphazardly, resulting in congestion and delays in distribution. This study develops a Smart Loading Zone system based on Arduino Uno, with ultrasonic sensors to detect vehicles, servo motors as automatic portal drivers, and LCD screens to display available parking slot information. After the system was assembled and tested, the results showed that the ultrasonic sensor was able to detect vehicles accurately, while the servo motor and LCD worked according to the specified system logic. The portal opens automatically when a vehicle is detected and slot information is immediately updated on the LCD. This system helps regulate vehicle flow to be more orderly, avoids haphazard parking, and speeds up the loading and unloading process. This system is effective and economical to be applied in dense areas, and supports the smart city concept in micro logistics management. This technology can also be further developed as an IoT-based solution for more efficient distribution management.