• Title/Summary/Keyword: RC car

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Implementation of Lane Tracking System using a Autonomous RC Toy Car (자율주행이 가능한 무선 장난감 자동차의 차선 추적 시스템 구현)

  • Ko, Eunsang;Lee, Chang Woo
    • IEMEK Journal of Embedded Systems and Applications
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    • v.8 no.5
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    • pp.249-254
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    • 2013
  • In this paper we propose nonlinear control system for automatic unmanned vehicle using a RC (Radio Controlled) car which is usually controlled by a remote controller. In the proposed system, a RC car is dissembled and reassembled with several parts enabling it to be controlled by an android mobile platform with Bluetooth communication. In our system, an android mobile smartphone is mounted on the RC car and plays an important role as an eye of the car. The proposed system automatically controls the RC car to follow a lane that we draw on the floor of our laboratory. Also, the proposed RC car system can also be controlled manually using the accelerometer sensor of a smartphone through a Bluetooth module. Our proposed system that has both manual mode and automatic mode consists of several components; a microprocessor unit, a Bluetooth serial interface module, a smartphone, a dual motor controller and a RC toy car. We are now in the development of a group driving system in which one car follows the front car that tracks a lane automatically.

Driving three kinds of Course Test with RC car by Color Recognition (색깔 인식에 의한 RC car의 3가지 코스 시험 주행)

  • Lee, Jong-Min;Sohn, Young-Sun
    • Journal of the Korean Institute of Intelligent Systems
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    • v.24 no.1
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    • pp.33-39
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    • 2014
  • Automatic driving needs many functions such as the obstacle recognition, the lane recognition, and the lane change, etc. In this paper, we realized a system which automatically drove the three-kinds of vehicle driving course, to introduce and apply the concept of 'color recognition' that expands the scope of 'lane recognition' for vehicle driving. We made the reduced each course compared with RC(Radio Control) car size, and controlled the steering considering the position and the slope of the detection line and the speed. Because the RC car does not have the brake function, we consider the speed and the position of the detection line to stop the RC car.

Raspberry-based multi-function RC car controller (라즈베리파이 기반 다기능 RC카 컨트롤러)

  • Lee, Myoung-Gyun;Lee, Yong-Soo;Kim, Jeong-Joon
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.18 no.2
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    • pp.149-156
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    • 2018
  • Now RC cars have become a culture where everyone who wants to feel precise control and rushing instinct regardless of sex, young or old can participate. In addition, RC cars have attracted a lot of people because they can feel the feeling of driving while driving a car in a small, lightweight body. In line with these trends, various development companies are focusing on functional aspects such as driving and speed improvement for each environment and their sophistication. Of course, driving performance alone can bring a tremendous ripple effect, but what you can do with a RC car is only part replacement and motor modification. Therefore, we will develop RC car based on raspberry pie, control by application, add various functions through sensor recognition, and develop RC car that can travel through video information that can be obtained using web cam. As a small RC car, we carry out research that can combine the functions that can be used as a robot that moves at various construction sites and accident sites where people can not enter, and which can attract users' interest.

Mecha-numwheel RC Car for Overcoming Obstacles Based on Bluetooth (블루투스 기반의 장애물 극복용 메카넘휠 RC 카)

  • Se-Chan Cha;Dong-Hyeon Im;Sang-Hwi Lee;Woung-Jae Lee;Young-Oh Han
    • The Journal of the Korea institute of electronic communication sciences
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    • v.19 no.1
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    • pp.283-288
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    • 2024
  • In this paper, a novel mechanism for overcoming obstacles is studied by designing an All-Directional RC car for obstacle traversal and creating test courses with various obstacles. We propose an algorithm for controlling the RDS3115 servo motor and utilize a gyro sensor to detect the incline of various obstacle terrains, adjusting the servo motor's angle to enable the RC car to navigate the terrain. Through terrain experiments in the test course, we determined the most suitable RC car turning angles for traversing all obstacle terrains created in the experimental terrain.

Inter-vehicular Instruction Transmission Scheme Based on Optical Camera Communication (카메라 통신 기반 리더 차량 추종 기술 연구)

  • Kim, Deok-Kyu;Kim, Min-Jeong;Jung, Sung-Yoon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.67 no.7
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    • pp.878-883
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    • 2018
  • This paper proposes a method for transmitting instruction between vehicles in a moving situation using RC Car having camera. Information of preceding RC Car was transmitted by LED using Optical Camera Communication(OCC). Rear RC Car follows the preceding one by analyzing transmitted OCC data based on image processing. Through this procedure, the information reception ratio according to the distance change of two RC Cars is confirmed. Through experiments, we showed that our proposed scheme enables the possibility of vehicle platooning.

Smart CCTV Security Service in IoT(Internet of Things) Environment (사물인터넷 환경에서 스마트 CCTV 방범 서비스)

  • Cho, Jeong-Rae;Kim, Hye-Suk;Chae, Doo-Keol;Lim, Suk-Ja
    • Journal of Digital Contents Society
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    • v.18 no.6
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    • pp.1135-1142
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    • 2017
  • In this paper, we propose IoT based smart CCTV security service to prevent crime in blind spot and prevent unexpected fire or danger. In the proposed method, a RC (Radio Control) car is made using Raspberry pie, and a camera and various modules are installed in an RC car. It was then implemented using Raspbian O / S, Apache Web Server, Shell script, Python, PHP, HTML, CSS, Javascript. The RC car provides a security service that informs the manager of the situation by judging the risk of the scene with modules such as video, voice and temperature. Experimental results show that the transmission time of video and audio information is less than 0.1 second. In addition, real-time status transmission was possible in AVG, emergency, and manual mode. It is expected that the proposed method will be applied to the development of smart city by applying it to unmanned vehicles, drones and the like.

User Oriented Autonomous Shopping Cart by Noncontacting User Interface (비접촉성 사용자 인터페이스를 통한 사용자지향 자율주행 쇼핑카트 시스템)

  • Moon, Mi-Kyeong;Kim, Gwang-Soo
    • Journal of the Korea Society of Computer and Information
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    • v.20 no.5
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    • pp.83-89
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    • 2015
  • we suggest a shopping cart system following the wheelchairs autonomously for the disabled to do shop easily. This system have been developed in order for a cart to follow the disabled using wheelchairs automatically without pulling a cart directly. This system use kinnect and an radio control car (RC-car). The kinnect detect whether movement of disabled is right turn, left turn or straight and according to this result the RC-car can be controlled autonomously. By this system, the disabled using wheelchairs can do shopping more easily than before.

Raspberry Pi-based Toy Car Control System Using DC Motor Driver (DC 모터 드라이버를 이용한 라즈베리 파이 기반의 장난감 자동차 제어 시스템)

  • Lee, Hye Seong;Lee, Chang Woo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.679-680
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    • 2018
  • IoT(Internet of Things) is no longer just a concept, and It has become common as individual users have tried to implement it directly through small boards and components. This research implemented a system to control a general toy car using Raspberry pi and motor driver. This research will help develop ordinary toy cars to RC cars or learn on their own and drive on their own through further development.

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RC Car System with LCD and Speed Control using Arduino (아두이노(Arduino)를 이용한 속도제어 및 LCD RC카 시스템)

  • Kang, Koo-Chang;Kim, Hyun-Hyuk;Song, Eun-Jee
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.676-677
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    • 2015
  • 최근 사물인터넷(IoT)의 기반이 되는 아두이노 기술을 접목하여 다양한 스위치와 센서로 입력 값을 받아들여 LED, 모터와 같은 외부출력장치를 제어함으로써 상호 작용을 만들어 낼 수 있는 시스템개발이 유행이다. 본 논문에서는 아두이노를 이용하고 여러 가지 센서들을 활용하여 RC카 제작 및 거리제어 센서를 통한 DC모터 정지와 RFID를 통하여 LCD광고를 할 수 있는 자동차 시스템을 개발하였다. 개발한 시스템은 모터제어를 통하여 RC카의 전진과, 후진, 좌, 우 등 서브모터와, DC모터를 제어 하게 하였으며, 모터제어를 한 RC카에 블루투스 모듈을 장착하여 블루투스를 통하여 스마트폰으로 조종이 가능하도록 하였다. 안드로이드 어플을 사용하는 과정 중에 멈춤 오류로 인하여 S값을 한번만주는 형식의 안드로이드 어플을 이클립스로 제작하여 수정하였으며 전방에 거리감지센서를 장착하여 자동차의 20~150cm앞에 물체가 있을시 모터를 정지하게 하여 속도를 제어 하도록 하였다. 또한 RFID리더기를 사용하여 태그키가 RFID리더기에 태그 될시 LCD화면에 광고를 노출할 수 있게 하였다.

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A Study on Basic Technology for Autonomous-Driving Using RC car (RC카를 이용한 자율주행 기초 기술 연구)

  • Shin, Jae-Ho;Yoo, Jae-Young;Han, Jun-Hee;Hwang, In-Jun;Park, Hyoung-Keun
    • The Journal of the Korea institute of electronic communication sciences
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    • v.17 no.1
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    • pp.49-58
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    • 2022
  • With the recent start of the 4th Industrial Revolution, markets related to autonomous driving are rapidly developing. In order to understand the rapidly developed technology trend of autonomous driving technology, we would like to investigate the characteristics and differences of level 0 to level 5 of autonomous driving. The overall configuration, recognition technology, and auxiliary technologies of autonomous vehicles are analyzed, and through this, the structure and algorithm of autonomous driving technology are identified. In addition, by manufacturing a simulated autonomous RC car using an ultrasonic sensor and a camera, the necessity of recognition technology and auxiliary technology is identified.