• Title/Summary/Keyword: 차량네트워크

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Efficient Message Authentication Scheme for VANET (차량 애드혹 네트워크 환경에서 효율적인 메시지 인증 기법)

  • Yoo, Young-Jun;Lee, Jun-Ho;Lee, Dong-Hoon
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.19 no.6
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    • pp.37-47
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    • 2009
  • In VANET, each vehicle can obtain traffic information from other vehicles or infrastructure, and they frequently exchange life-critical safety message. Therefore, it is necessary among vehicles to establish a secure channel for keeping the driver's safe and protecting the channel against several attack challenges. TSVC is a representative scheme which needs low communication and computation to be performed. But, there is a delay when verifying the messages because it is designed based on TESLA. Thus, it is not acceptable to use TSVC for sending the time-critical messages. In this paper, we propose a novel message authentication scheme which reduces a delay for the verification of messages. Therefore, the proposed scheme can be suitable to transmitting time-critical messages. Furthermore, the scheme supports to privacy preservation and can robust against DoS attacks.

Scenario and Network Performance Evaluation for A Do Not Pass Warning Service Based on Vehicle-to-Vehicle Communications (차량 간 통신 기반 추월보조 서비스를 위한 시나리오 및 네트워크 성능 평가)

  • Seo, Hyun-Soo;Jung, Jin-Su;Lee, Sang-Sun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.38C no.3
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    • pp.227-232
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    • 2013
  • Due to the development of ITS technology, various services related to transportation under vehicular environments have been provided. Especially, as wireless communication technology, WAVE has been established as a standard for vehicle-to-vehicle communications. WAVE has fast connection and excellent mobility characteristics. A VSC-A project is conducting by global automotive OEMs in USDOT. This project introduces the advanced safety services with vehicle-to-vehicle communications. In this paper, we presented the scenario of a do not pass warning service, which prevents an accident during overtaking activity by using vehicle-to-vehicle communications. In addition, we analyzed network performance under WAVE. In conclusion, we introduced the simulation results. Finally, we summarized the communication range and delay values for consideration factors for a overtaking model.

Key Exchange Protocol based on Signcryption in SMART Highway (SMART Highway 환경에서의 사인크립션 기반 키 교환 프로토콜)

  • Kim, Su-Hyun;Lee, Im-Yeong
    • Journal of Korea Multimedia Society
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    • v.16 no.2
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    • pp.180-189
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    • 2013
  • The SMART Highway project combines road construction with advanced technology and vehicle telecommunications. Its expected outcome is a world-leading intelligent road that is green, fast, and comfortable. A vehicular ad-hoc network(VANET) is the core technology of the SMART Highway, whose transport operation is based on road vehicles. The VANET is a next-generation networking technology that enables wireless communication between vehicles or between vehicles and a road side unit(RSU). In the VANET system, a vehicle accident is likely to cause a serious disaster. Therefore, some information on safety is essential to serve as the key exchange protocol for communication between vehicles. However, the key exchange scheme of the general network proposed for a fast-moving communication environment is unsuitable for vehicles. In this paper, communication between multiple vehicles more efficient and secure key exchange at the vehicle certification by signcryption is proposed.

A Design of Group Authentication by using ECDH based Group Key on VANET (VANET에서 ECDH 기반 그룹키를 이용한 그룹간 인증 설계)

  • Lee, Byung Kwan;Jung, Yong Sik;Jeong, Eun Hee
    • Journal of Korea Society of Industrial Information Systems
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    • v.17 no.7
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    • pp.51-57
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    • 2012
  • This paper proposes a group key design based on ECDH(Elliptic Curve Diffie Hellman) which guarantees secure V2V and V2I communication. The group key based on ECDH generates the VGK(Vehicular Group key) which is a group key between vehicles, the GGK(Global Group Key) which is a group key between vehicle groups, and the VRGK(Vehicular and RSU Group key) which is a group key between vehicle and RSUs with ECDH algorithm without an AAA server being used. As the VRGK encrypted with RGK(RSU Group Key) is transferred from the current RSU to the next RSU through a secure channel, a perfect forward secret security is provided. In addition, a Sybil attack is detected by checking whether the vehicular that transferred a message is a member of the group with a group key. And the transmission time of messages and the overhead of a server can be reduced because an unnecessary network traffic doesn't happen by means of the secure communication between groups.

A Relay Node Selection Method of Vehicle Safety Messages for Protecting Traffic Accidents (교통사고 예방을 위한 차량안전메시지 중계노드 선택방법)

  • Yu Suk-Dea;Lee Moon-Kun;Cho Gi-Hwan
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.9 s.351
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    • pp.60-68
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    • 2006
  • Using the wireless communication among unacquainted vehicles, an intelligent vehicle safety system can be constructed to exchange vehicle safety-related information, such as urgency stop, traffic accident and road obstacles. In the majority of vehicle safety applications, vehicle safety messages are propagated in the form of broadcast. However, this approach causes some effectiveness and performance problems with massive radio collision, multi-hop propagation. This paper presents a priority based relay node selection method for propagating vehicle safety messages of traffic accident protection system. With this method, vehicle safety messages are relayed by a node that locates in proper distance out of the nodes that are included in the radio transmission range. By decreasing the number of duplicated messages, the packet overhead is lessened while the communication performance is raised. The proposed method was proven to be better than other schemes through network simulations.

A Delay Tolerant Vehicular Routing Protocol for Low Vehicle Densities in VANETs (차량 밀도가 낮은 VANET 환경을 위한 지연 허용 차량 라우팅 프로토콜)

  • Cha, Si-Ho;Ryu, Min-Woo;Cho, Kuk-Hyun
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.49 no.4
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    • pp.82-88
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    • 2012
  • A VANET (Vehicular Ad Hoc Network), a subclass of MANET (Mobile Ad Hoc Network), is an ad hoc network using wireless communication between vehicles without fixed infrastructure such as base station. VANET suffers a frequent link breakage and network topology change because of the rapid movement of vehicles and the density change of vehicles. From these characteristics of VANET, geographical routing protocols such as GPSR (Greedy Perimeter Stateless Routing) using only the information of neighbor nodes are more suitable rather than AODV and DSR that are used in existing MANETs. However, GPSR may have a transmission delay and packet loss by frequent link disconnection and continual local maxima under the low vehicle density conditions. Therefore, in this paper, we propose a DTVR (Delay Tolerant Vehicular Routing) algorithm that perform a DTN-based routing scheme if there is no 2-hop neighbor nodes for efficient routing under the low vehicle densities in VANETs. Simulation results using ns-2 reveal that the proposed DTVR protocol performs much better performance than the existing routing protocols.

Deriving Essential Security Requirements of IVN through Case Analysis (사례 분석을 통한 IVN의 필수 보안 요구사항 도출)

  • Song, Yun keun;Woo, Samuel;Lee, Jungho;Lee, You sik
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.18 no.2
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    • pp.144-155
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    • 2019
  • One of the issues of the automotive industry today is autonomous driving vehicles. In order to achieve level 3 or higher as defined by SAE International, harmonization of autonomous driving technology and connected technology is essential. Current vehicles have new features such as autonomous driving, which not only increases the number of electrical components, but also the amount and complexity of software. As a result, the attack surface, which is the access point of attack, is widening, and software security vulnerabilities are also increasing. However, the reality is that the essential security requirements for vehicles are not defined. In this paper, based on real attacks and vulnerability cases and trends, we identify the assets in the in-vehicle network and derive the threats. We also defined the security requirements and derived essential security requirements that should be applied at least to the safety of the vehicle occupant through risk analysis.

CAN Communication System using CAN Protocol (CAN Protocol을 이용한 CAN 통신 시스템 설계 및 구현)

  • Lee Seo-Kyung;Lee Jae-Yong;Kim Dong-Hyun;Choi Kwang-Joo;Jung Jae-Il
    • Proceedings of the Korea Information Processing Society Conference
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    • 2006.05a
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    • pp.1423-1426
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    • 2006
  • 자동차 산업은 관련 기술의 진전과 함께 비약적인 발전을 거듭하여 신뢰성 및 안정성의 확보뿐만 아니라, 운전자의 편리성과 같은 새로운 기능 구현을 위한 연구개발이 가속화되고 있다. 최근 각종 텔레매틱스 서비스를 위해 차량 내 기능의 신뢰성과 성능을 향상시키기 위한 자동 조절의 필요성이 증가하고 있으며, 각종 기능에 대한 전자통신 시스템을 사용한 제어 및 네트워크의 통합화가 급속히 이루어지고 있다. 따라서 CAN(Controller Area Network)과 같은 네트워크 개념의 도입으로 차내 전선사용의 감소뿐만 아니라 제어 및 고장의 진단을 용이하게 하고 차량 내 안전성의 개선 및 자동차 품질과 비용 절감을 기대할 수 있다. 본 논문에서는 CAN Protocol을 분석하고 차량 내 제어 데이터 전송을 위해 CAN을 통한 통신 시스템을 구현 및 검증하였다.

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A Study on TMS signal Measurement of TTX(Tilting Train Express) (틸팅열차의 TMS 네트워크 신호 측정 연구)

  • Han, Young-Jae;Lee, Su-Gil;Lee, Chang-Young;Han, Seong-Ho
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1034-1035
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    • 2008
  • 최근 들어 열차의 고속화, 고성능화 추세에 맞는 철도의 안전성 확보가 더욱 필요해졌다. 이를 달성하기 위해서는 각 전기장치들에 대한 종합적인 시험평가가 이루어져야 한다. 특히 완성차 및 본선시운전 시험을 통해 차량에 대한 여러 상태를 확인해야 한다. 그 중에서도 차량 네트워크 신호는 인간의 두뇌에 해당되는 매우 중요한 시스템이다. 이 신호를 취득하기 위해 계측시스템을 개발하여 차량의 주요신호들을 비교 분석하였다.

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Design and Implementation of Automatic System in Car Based on Zigbee (지그비 기반 차량 자동화 시스템의 설계 및 구현)

  • Kim, Nam-Hee;Lee, Jong-Chan
    • Convergence Security Journal
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    • v.8 no.2
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    • pp.27-34
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    • 2008
  • In this paper, we designed and implemented mobile object automatic system based on senor networks for telematics. For developing this system, we gather the various sensing data through wireless communication method using zigbee sensor networks and analyze them in monitoring equipment. And we enable the driver to recognize the car state information on the whole by interfacing analyzed data to telematics unit. And, we implemented automatic controller that can control temperature and humidity in car automatically by actuating air conditioner based on the data that was monitored throughout temperature sensor, humidity sensor and brightness sensor based on sensor networks.

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