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차량 추적 시스템에서 RMA와 RCP 사이의 다중세션 설계 및 구현
장청룡,이용권,이대식 (사)디지털산업정보학회 2014 디지털산업정보학회논문지 Vol.10 No.3
A Vehicle Tracking System consists of GPS tracking device which fits into the vehicle and captures the GPS location information at regular intervals to a central GIS server, and GIS tracking server providing three major responsibilities: receiving data from the GPS tracking unit, securely storing it, and serving this information on demand of the user. GPS based tracking systems supporting a multi-session processing among RMA, RM, and RCP can make a quick response to various services including other vehicle information between RSU and OBU on demand of the user. In this paper we design RSU lower layers and RCP applications in OBU for a multi- session processing simulation and test message processing transactions among RMA-RM and RM-RCP. Furthermore, we implement the additional functions of handling access commands simultaneously on multiple service resources which are appropriate for the experimental testing conditions. In order to make a multi-session processing test, it reads 30 resource data,0002/0001 ~ 0002/0030, in total and then occurs 30 session data transmissions simultaneously. We insert a sequence number field into a special header of dummy data as a corresponding response to check that the messages are received correctly. Thus, we find that GIS service system with a multi-session processing is able to provide additional 30 services in a same speed of screen presentation loading while identifying the number of session processing of Web GIS service, the number of OBU service, and the speed of screen presentation loading by comparing a single session and a multi-session of GIS service system.
차량 통신 기술을 위한 WME 모듈과 MLME 모듈 간의 상호 메시지
장청룡,이용권,이대식 (사)디지털산업정보학회 2013 디지털산업정보학회논문지 Vol.9 No.2
WAVE(Wireless Access for Vehicular Environment) System is a communication technology to monitor system failure and vehicle functions and management services to prevent possible incidents of driving a vehicle. In this paper, we have designed and implemented the mutual message processing through parameter between WME management module that manages WAVE system and MLME that manages the upper layer MAC(Media Access Control)module. Also, in order to verify the validity, we have carried out experiments to compare the speed of data processing by dividing data of 1Mbyte, 2Mbyte, 3Mbyte into the packets of 2KByte and 4KByte. Experiments data processing speed of 2KByte packet were shown about 173.62ms in 1MByte, 2MByte about 352.61ms, 3MByte about 550.13ms and, data processing speed of 4KByte packet, 1MByte approximately 87.56ms, 2MByte about 177.94ms,3MByte about 277.18ms. Therefore, in WAVE system, the mutual messages processing through the parameters between WME and MLME module can be utilized in the various service of ITS(Intelligent Transportation Systems) depending on the speed of data processing.
단거리 전용 통신을 이용한 지능형 교통시스템에서의 안전한 전자 지불 시스템
장청룡,이용권 한국콘텐츠학회 2004 한국콘텐츠학회논문지 Vol.4 No.4
Dedicated Short Range Communications(DSRC) as a prominent communications candidate for Intelligent Transportation Systems(ITS) have been developed to support ITS applications such as value-added information service, e-commerce, electronic toll payment, etc. These various applications associated with electronic payment through unsecure communication channel of DSRC suffer from security threats. To ensure secure payment, we have adopted appropriate cryptographic mechanisms including encipherment, authentication exchange and digital signature. The cryptographic mechanisms require to use cryptographic keys established between two communication entities.In this paper, we propose a secure electronic payment system which is designed to have some functions for strong authentication, encryption, key agreement, etc. Especially, we adopt domestic developed cryptographic algorithms such as EC-KCDSA and SEED for digital signature and block cipher, respectively. We can show those mechanisms are appropriate for the secure electronic payment system for ITS services under the DSRC wireless environment in aspects of constrained computational resource use and processing speed. 교통체계의 구성요소에 다양한 첨단기술을 접목시켜 체계적이며 효율적인 교통제어를 위하여 차세대 지능형 교통시스템(ITS ; Intelligent Transportation Systems)을 구축, 운영하기 위하여 많은 연구와 개발이 이루어지고 있다. 이러한 ITS 응용서비스 중에서 요금의 자동결재가 요구되는 다양한 전자 지불 형태의 서비스에는 정당한 통신 실체들간에 인증이 반드시 요구되고 있다. 본 논문에서는 단거리 전용통신을 이용하여 고속도로에서의 톨 요금 자동 결재에 있어 인증 기능이 처리되는 차량 탑재 장치와 노변장치의 무선구간에서 차량의 이동 속도, 각 장치에서의 암호 기능 처리 또는 이를 관할하는 요금 정산 시스템 등에서의 제한된 처리 속도를 고려한 효율적인 인증 및 세션키 설정 프로토콜을 포함하는 암호 메커니즘과 이들을 이용한 전자지불시스템의 구현 방안을 제시한다. 특히, 국내에서 개발한 인증메커니즘인 EC-KCDSA와 암호화를 위한 SEED 암호 기법을 이용하여 무선망의 하나인 DSRC 환경의 ITS 서비스에 적용이 가능함을 확인할 수 있게 되었다.