• Title/Summary/Keyword: On-Board Diagnostics(OBD)

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Developing integrated black-box system for proving sudden unintended acceleration of vehicles utilizing OBD-II and a camera attached to a foot (자동차 급발진 사고 시 원인 규명을 위하여 OBD-II 와 차량 내 풋 카메라를 이용한 통합 블랙박스 시스템 개발)

  • Lee, Jung-eun;Jang, Jong-wook
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2013.10a
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    • pp.438-441
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    • 2013
  • 알려진바 한 해 우리나라에서 200여 건 이상의 차량 급발진으로 추청 되는 사고(Sudden Unintended Acceleration, SUA)가 발생하지만 지금까지 명확하게 급발진으로 추정되는 사고의 원인을 밝혀내지 못해 사고를 당한 운전자는 막대한 정신적, 물질적 피해를 보고 있다. 이에 차량의 급발진으로 추정되는 사고 시 차량의 상태 및 원인 파악을 위하여 차량 내 설치되는 OBD-II(On Board Diagnostics-II)와 운전자의 발쪽을 촬영하는 Foot Camera를 이용하여 통합 블랙박스 시스템을 구현하고자 한다. 지금까지의 블랙박스 시스템은 단순히 사고 시 영상을 촬영 저장하여 운전자에게 보여 주는 장치라면 현재 구현하려는 통합시스템은 블랙박스 자체에서 이동 통신을 통한 차량데이터 실시간 서버 전송 및 스마트 폰과 스마트 패드의 앱(App)으로 OBD-II와 메인서버와의 통신을 통해 사용자 차량의 현재 상태, 차량의 이상 유무, 소모품 교환 시기, 차량사고 시 영상 및 급발진 추정 시 차량상태, 위치, 이동거리, 운전자의 발쪽 영상 저장 및 재생 등 사용자가 필요로 하는 다양한 기능과 정보들을 블랙박스 하나로 통합하여 구현 할 것이다. 이 시스템이 개발되면 차량 관리에 서툰 여성 운전자들, 좀 더 체계적이고 손쉽게 내 차 정보를 원하는 운전자들과 전 세계 자동차 소비자들의 관심사인 급발진에 대한 사고 분석이 정확해 질 것으로 여겨진다.

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Implement integrated vehicle state and video recorder system with OBD-II and MOST network (OBD-II 와 MOST를 이용한 통합형 자동차 상태 및 영상 저장 시스템 구현)

  • Baek, Sung-Hyun;Jang, Jong-Wook
    • Journal of the Institute of Convergence Signal Processing
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    • v.12 no.4
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    • pp.303-308
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    • 2011
  • Vehicle black boxes that have similar functions as airplane black boxes are currently being used due to the loss of many lives and properties arising from vehicle accidents. Both black-box products and Event Data Recorder(EDR) systems are currently available in the market. Most of the existing in-vehicle black boxes, however, record only external videos and images and cannot show the vehicle's driving status, whereas EDR products record only the driving status and not external videos. To address the problem of black boxes that can record only videos and images and that of EDR systems that can record only driving data, an integrated vehicle state and video recording system that uses MOST(Media-oriented System Transport) and OBD-II(Onboard Diagnostics II) and CAM (camera) and GPS (global positioning system).

A STUDY ON A CATALYTIC CONVERTER OBD BEFORE LIGHT-OFF

  • Yun, Seung-Won;Son, Geon-Seog;Lee, Kwi-Young
    • International Journal of Automotive Technology
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    • v.3 no.1
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    • pp.33-40
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    • 2002
  • Increasingly stringent emission regulations of EU and CARB (California Air resource Board) require mandatory OBD (On Board Diagnostics) far the catalytic converters of a vehicle. It demands that MIL(Malfunction Indication Light) should be tuned on to inform the driver of catalytic converter failures. Currently dual oxygen sensor method Is widely used for the converter OBD. However, since it works only alter converter light-off, it has a serious limitation when applied to TLEV or more stringent emission regulations where more than 85% of total emission is coming out before converter light-off. In addition, a recent development in catalyst material. coating technology and additive catalysts leads to a much improved OSC (Oxygen Storage Capacity) after converter light-off, current methods are very difficult to determine levels of converter aging. Therefore, it is desired to develop an OSC detecting method before converter light-off to diagnose converter failures with higher reliability. In this study, OSCs of converters are measured by an absolute measuring method and a dynamic measuring method, and some of fundamental ideas are suggested about converter OBD before converter light-off. The converters are aged with two different aging methods; those are a furnace aging and an engine bench aging: to represent aging conditions in actual field applications. Dual oxygen sensor method at the lower temperature than light-off is also studied at a model gas bench with the converters. It is fecund that there is a certain point in temperature lower than light-off where difference due to aging level becomes maximum, thus a proper dynamic method to effectively monitor catalytic converters could be implemented fur the range lower than light-off temperatures. With this result, the aging level of converters is examined at an engine bench.

A implement of vehicle Blackbox system with OBD and MOST network (OBD와 MOST 네트워크를 이용한 차량용 블랙박스 시스템 설계)

  • Baek, Sung-Hyun;Jang, Jong-Wook
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2010.10a
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    • pp.66-69
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    • 2010
  • Lately, vehicle combined vehicle and IT(Information Technology) for vehicle's safety and convenience. so, vehicles is equipped with many ECU(Electronic control unit). the ECU's transmit data about each electronic control unit with OBD(On-Board Diagnostics) Network and data about each multimedia with MOST(Media Oriented System Transport) Network. In this paper, Supplementing disadvantage of existing blackbox, Using MOST of in-vehicle multimedia network and OBD-II of in-vehicle control network, blackbox system obtain the vehicle's driving state data. so, blackbox system judge vehicle's driving state and provide vehicle's driving state information to driver. Blackbox system implement the features mentioned above. as a result, blackbox is going to be more accurate blackbox system.

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OBD2 Vehicle Operation Information Black Box System for Accident Preparedness (사고 발생에 대비한 OBD2 차량 운행 정보 블랙박스)

  • Jun-Young Kim;Jun-Hee Kim;Hyung-Seong Oh;Jae-Hyung Choi;Kyung-Ho Ko;Myung-Chun Ryoo
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2024.01a
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    • pp.279-280
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    • 2024
  • 본 논문에서는 주행 중 차량의 상태를 실시간으로 모니터링함과 동시에, 페달 조작 여부를 확인할 수 있는 영상 촬영 및 저장 시스템을 제안한다. 개발된 차량 운행 정보 블랙박스는 블루투스 OBD2 커넥터를 통해 차량의 PID 값을 식별하고 수집한다. 이 데이터는 비동기 방식으로 처리되며, 라즈베리파이와 7인치 터치 디스플레이를 이용해 운전자에게 한눈에 보일 수 있는 형태로 정보를 제공한다. 특히, 멀티스레드를 활용하여 ECU 정보를 페달 조작 여부 영상에 표시하는 동시에 녹화하고, CSV 파일로 SD 카드에 실시간으로 저장한다. 수집된 차량 데이터와 영상 데이터는 예기치 못한 사고 발생 시 운전자의 과실 비율 측정과 대처행동을 입증하는 데 중요한 역할을 할 것으로 기대되며, 차량 정비 시 참고 자료로 활용될 수 있다.

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DTG Big Data Analysis for Fuel Consumption Estimation

  • Cho, Wonhee;Choi, Eunmi
    • Journal of Information Processing Systems
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    • v.13 no.2
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    • pp.285-304
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    • 2017
  • Big data information and pattern analysis have applications in many industrial sectors. To reduce energy consumption effectively, the eco-driving method that reduces the fuel consumption of vehicles has recently come under scrutiny. Using big data on commercial vehicles obtained from digital tachographs (DTGs), it is possible not only to aid traffic safety but also improve eco-driving. In this study, we estimate fuel consumption efficiency by processing and analyzing DTG big data for commercial vehicles using parallel processing with the MapReduce mechanism. Compared to the conventional measurement of fuel consumption using the On-Board Diagnostics II (OBD-II) device, in this paper, we use actual DTG data and OBD-II fuel consumption data to identify meaningful relationships to calculate fuel efficiency rates. Based on the driving pattern extracted from DTG data, estimating fuel consumption is possible by analyzing driving patterns obtained only from DTG big data.

Study on Real-Work NOx Emission Characteristics according to Load Factor of Excavator (굴착기의 부하율에 따른 실작업 질소산화물 배출 특성 연구)

  • Dal Ho Shin;Yun Seo Park;Chul Yoo;Suhan Park
    • Journal of Drive and Control
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    • v.20 no.3
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    • pp.1-8
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    • 2023
  • The purpose of this study was to investigate and compare the impact of engine load on the emission characteristics of excavator engines, with the aim of improving the method for calculating the emission inventory of construction machinery. The engine load in excavators is directly correlated with the operational workload, and variations in the load factor (LF) can significantly influence the emission inventory. Thus, on-board diagnostic (OBD) data from an excavator at a construction site were systematically collected to measure engine output and emissions. The results revealed discernible differences in emissions based on engine load, even when the average excavator engine performance remained constant. This highlights the significant influence of the type and characteristics of the work being carried out on emission characteristics. Making realistic adjustments to the LF used in emission calculation formulas emerges as a crucial strategy for environmental improvement. Moreover, the analysis of the effects of engine load on emissions from excavators provides valuable insights for enhancing environmental protection measures.

A Study on Solution to ERD-Navigation Interworking using USB Bulk Communication (USB Bulk 통신을 이용한 내비게이션과 차량용 영상저장장치 연동 솔루션에 관한 연구)

  • Nahm, Eui-Seok
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.66 no.9
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    • pp.1409-1415
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    • 2017
  • The navigation and EDR(Event Data Recorder) have a different roles but also a lot of similar or common functions and elements. A representative element is a GPS. The GPS of navigation is a more higher than the that of EDR in performance. The high performance GPS has a very short initialization time and more accurate than the GPS of EDR. And the informations of OBD(On Board Diagnostics) is able to be shared in navigation and EDR. But these inter-working product between the navigation and EDR has been not yet shown. So, this paper is aimed to show how to interwork in two devices. We utilize USB bulk communication in two devices for inter-working. It is very simple ways and it could interwork in GPS, event video and ODB II data. It could be effective in cost competence and convenience. These was implemented by hardware and software and proved by the standard test.

Ethernet Port를 이용한 차량 진단 모니터링 시스템의 설계

  • Shin, Ju-Young;Jang, Jong-wook
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2009.10a
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    • pp.98-101
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    • 2009
  • Recently, there is use of the vehicle network for vehicle diagnostic method and Increased use of the vehicle protocol such as (CAN(Controller Area Network), MOST, LIN, FlexRay), Distributed control and data about the vehicle are being sought methods for real-time observation and monitoring and trend tends to have gone into this. In this case of automotive diagnostic module in today, there is Primarily to use DLC(Data Link Connector)Connector called self-check terminal. Generally, vehicle Diagnoses to use DLC Connector such as OBD2(On Board Diagnostics) Through Diagnostic Module(scanner). But there limit diagnostic as engine and powertrain part, and not consider user's perspective In this paper, By designing Vehicle diagnostic monitoring system using Ethernet Port, transmit and Receives CAN protocol vehicle data, and implement Easily monitoring system that provide and Diagnoses to provide vehicle's state and information to use PC.

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A study on Development of Remote Vehicle Fault Diagnostic System (원격 자동차 고장 진단 시스템 개발에 대한 연구)

  • Nkenyereye, Lionel;Jang, Jong-Wook
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.224-227
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    • 2015
  • Data transmission via the car driver's tethered smart phone may have a volume-dependent billing in case car driver' phone transmits data in real-time to the remote data center. The on-board diagnosis data generated are temporary stored locally to mobile remote diagnosis application on the car driver's phone, and then transmit to the data center later when car driver connects to the Internet. To increase the easiest of using the remote vehicle application without blocking other tasks to be executing on the cloud, node.js stands as a suitable candidate for handling tasks of data storage on the cloud via mobile network. We demonstrate the effectiveness of the proposed architecture by simulating a preliminary case study of an android application responsible of real time analysis by using a vehicle-to- smart phones applications interface approach that considers the smart phones to act as a remote user which passes driver inputs and delivers output from external applications. In this paper, we propose a study on development of Remote Vehicle fault diagnostic system features web server architecture based event loop approach using node.js platform, and wireless communication to handle vehicle diagnostics data to a data center.

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