• Title/Summary/Keyword: DSRC(Dedicated Short Range Communications System)

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The Design for DSRC Communication Technology of On Board Equipment in the Intelligent Transport System (지능형 교통체제에서 차량 단말장치의 DSRC 통신기술 설계)

  • Lee, Dae Sik
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.8 no.4
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    • pp.135-142
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    • 2012
  • DSRC system is a communication system that consists of road side equipment and on board equipment to provide services of communication technology for intelligent transportation systems. In this paper, we carry out a short-range dedicated high-speed wireless communications via DSRC system based on board equipment that is installed in the vehicle and road side equipment through wireless channels of communication. on board equipment is system that have a memory which initialization information is stored, it loads physical layer and MAC layer, LLC layer, L7 layer in turn. In the upper, it should analyze the various commands that are sent from roadside base stations, and carry out the operation which is in accordance with the command. and also it designs the structure of protocol stack which is TRM Layer loaded that is to initialize on L7 layer and MAC layer and efficiently designs operation between on board equipment and the road side equipment.

A study on the estimation performance for Dedicated Short Range Communication(DSRC) system in 5.8GHz (5.8GHz 단거리 전용 통신(DSRC) 시스템 성능평가 및 분석)

  • 정영욱;정재승;박성진;임춘식;오현서;이병섭
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.25 no.8A
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    • pp.1186-1197
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    • 2000
  • In this paper, we investigated performance for 5.8GHz Dedicated Short Range Communication(DSRC) packet communication system which will be applied to domestic Intelligent Transportation System(ITS) services and analyzed modulation technique and interference cancellation method to improve performance in physical layer. We presented the most suitable DSRC uplink protocol to apply to multiple access protocol for DSRC system. Finally, we presented channel model to estimate performance between Roadside Unit(RSU) and Onborad Unit(OBE), and showed their validity through the result of numerical analysis.

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Embedded ARM based SoC Implementation for 5.8GHz DSRC Communication Modem (임베디드 ARM 기반의 5.8GHz DSRC 통신모뎀에 대한 SOC 구현)

  • Kwak, Jae-Min;Shin, Dae-Kyo;Lim, Ki-Taek;Choi, Jong-Chan
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.11 s.353
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    • pp.185-191
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    • 2006
  • DSRC((Dedicated Short Range Communication) is dedicated short range communication for wireless communications between RSE(Road Side Equipment) and OBE(On-Board Unit) within vehicle moving high speed. In this paper, we implemented 5.8GHz DSRC modem according to Korea TTA(Telecommunication Technology Association) standard and investigated implementation results and design process for SoC(System on a Chip) embedding ARM CPU which control overall signal and process arithmetic work. The SoC is implemented by 0.11um design technology and 480pins EPBGA package. In the implemented SoC ($Jaguar^{TM}$), 5.8GHz DSRC PHY(Physical Layer) modem and MAC are designed and included. For CPU core ARM926EJ-S is embedded, and LCD controller, smart card controller, ethernet MAC, and memory controller are designed as main function.

Electromagnetic Wave Absorber Sheet for 940 MHz Dedicated Short Range Communication Frequency Bands Using Fe Based Alloy Soft Magnetic Metal Powder (Fe-계 연자성 금속분말을 이용한 940 MHz 단거리 전용 통신 (DSRC) 대역 전파 흡수체)

  • Kim, ByeongCheol;Seo, ManCheol;Yun, Yeochun
    • Korean Journal of Materials Research
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    • v.29 no.6
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    • pp.363-370
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    • 2019
  • The recent development of information and communication technologies brings new changes to automobile traffic systems. The most typical example is the advancement of dedicated short range communication(DSRC). DSRC mainly consists of an intelligent transportation system(ITS), an electronic toll collection system(ETCS) and an advanced traveler information system(ATIS). These wireless communications often cause unnecessary electromagnetic waves, and these electromagnetic waves, in turn, cause frequent system malfunction. To solve this problem, an absorber of electromagnetic waves is suggested. In this research, various materials, such as powdered metal and iron oxides, are used to test the possibility for an effective absorption of the unnecessary electromagnetic waves. The various metal powders are made into a thin sheet form by compositing through processing. The electromagnetic characteristics(complex permittivity, complex permeability) of the fabricated sheet are measured. As a result, we achieve -6.5 dB at 940 MHz(77.6 % absorption rate) with a 1.0 mm-thickness electromagnet wave absorber, and -9.5 dB at 940 MHz(88.8 % absorption rate) with a 2.0 mm-thickness absorber.

Performance Analysis of DSRC Transmission Efficiency at MAC Layer (MAC 계층에서의 DSRC 전송 효율 분석)

  • Kwag Su-Jin;Ahn Jin-Ho;Lee Sang-Sun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.6B
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    • pp.527-533
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    • 2006
  • In this paper, we analyze the performance of MAC (Media Access Control) layer in DSRC (Dedicated Short Range Communication). It will be widely applied for ITS (Intelligent Transportation System) services; for example ETC (Electric Toll Control), BIS (Bus Information System) etc., needed to small packet size. But If ITS service is evolving to advance ITS, ADIS (Advanced Driver Information Systems) and AVHS (Advanced Vehicle Highway System) etc, be needed larger packet size. In the future, it may offer more various services such as traffic information, collection, and multimedia information. There are two kind of physical media, IR(Infrared) and RF(Radio frequency). And each system has their own protocol that is adaptive in special characteristics of physical medium for using efficiently limited radio resources. In this paper, we analyze the special characteristics of each system. And we study practical use of some related services expected to be used in the near future, by analyzing the transmission efficiency in each DSRC system.

Relay Protocol in DSRC System (DSRC 시스템에서 릴레이 프로토콜)

  • Choi Kwang-Joo;Choi Kyung-Won;Cho Kyong-Kuk;Yoon Dong-Weon;Park Sang-Kyu
    • 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.32-39
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    • 2006
  • 5.8GHz DSRC(Dedicated Short Range Communications) is a short to medium range communications service that supports both public safety and private operations in roadside to vehicle and vehicle communication. However the 5.8GHz frequency may cause the shadowing effect or communication blocking problem when there is an obstacle or another vehicle between RSE (Road Side Equipment) and OBE (On Board Equipment). In this paper, to solve this problem of the 5.8GHz DSRC, we propose a relay protocol based on the standard of DSRC radio communication between RSE and OBE in the 5.8GHz band made by TTA (Telecommunication Technology Association). By using the proposed relay protocol to DSRC system and intervehicle communication, we also consider a fixed relay protocol and mobile relay protocol. We expect to apply this relay protocol for the DSRC intervehicle communication and video communication between drivers and safe distance among vehicles in the near future.

A Secure Electronic Payment System in Intelligent Transportation Systems Using the Dedicated Short Range Communications (단거리 전용통신을 이용한 지능형 교통시스템에서의 안전한 전자 지불 시스템)

  • Jang Chung-Ryong;Lee Yong-Kwon
    • The Journal of the Korea Contents Association
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    • v.4 no.4
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    • pp.71-78
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    • 2004
  • 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.

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Study on Communication Each Other Cars by OBE Terminal (OBE 단말기를 이용한 차량 간 통신시스템)

  • Park, Se-Jun;Yoo, Seung-Sun;Yang, Tae-Kyu
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.8A
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    • pp.838-845
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    • 2008
  • In this study, we developed a OBE(On Board Equipment) system in which moving cars communicate directly each other to exchange traffic information. this system achieved by using DSRC(Dedicated Short Range Communication). this technology can improve the fidelity of collected information by transferring current state information from a moving car to center in real time. As a consequence of it, moving cars can be offer information service of hight quality even in a shadow zone. and also, in addition to basic ETC function for toll payment, using our newly developed system, delivering traffic information and providing additive service like GPS can be achieved by car-to-car direct communication within shadow areas without additional infra-structure.

Data Rate Enhancement by using QPSK on Physical Layer of Korea Dedicated Short Range Communications (QPSK 변조를 통한 DSRC Data Rate 향상 방안)

  • Park, Jin-Young;Kim, Han-Kyoung;Jeon, Wang-Won
    • 한국정보통신설비학회:학술대회논문집
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    • 2007.08a
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    • pp.50-54
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    • 2007
  • 현재 국내에서 ITS(Intelligent Transport Systems) 통신방식으로 이 용되고 있는 DSRC 방식은 TTA(한국정보통신기술협회)의 기술표준으로서 대전시,전주시에 적용되어 BIS(Bus Information Service)에 이용되고 있고,최근 고속도로 ETCS(Electronic Toll Collection System)가 DSRC방식으로 전국고속도로 Tollgate 에서 2007년 연말에 개통될 예정이다. DSRC 방식은 2000년에 TTA(한국정보통신기술협회)에서 기술표준이 제정되어 현재 1Mbps 의 Data 용량을 가진다. DSRC 방식의 물리링크 변조방식은 ASK(Amplitude Shift Keying)로 ITS 확장 서비스 적용을 위해 변조방식을 QPSK(Quadrature Phase Shift Keying )로 개선하게 되면 이론적으로 4배의 Data Rate 향상이 이루어진다. 물리적인 RF 변조방식을 ASK에서 QPSK로 바꿔 간단히 Data Rate을 개선하게 되면 회로구현의 경제성이 향상되어 DSRC 응용 서비스가 활성화 될 것이다.

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Adaptive Logical Link Control for Wireless Internet Service in ITS (ITS에서의 인터넷 서비스를 위한 무선 링크 제어 방안)

  • 박지현;조동호
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.24 no.10A
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    • pp.1501-1506
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    • 1999
  • DSRC(Dedicated Short Range Communications), which is a radio mobile communication protocol in ITS, is suited for traffic related information services. But in WAC(Wide-Area wireless communications), we could consider a conventional communication infrastructure in the case of supporting other applications besides ITS. Especially considering the current the trends to introduce wireless internet service into the mobile communication network, wireless internet service in ITS system is valuable. Although ITS LLC(Logical Link Control) protocols recommended by Europe and Japan are effective for traffic related services, it is not suitable for services related with geographical information, image or internet. That is because the data traffic characteristics is changed according to service types. Therefore we suggest a logical link control algorithm effective for traffic information related services as well as internet web service, and analyze its performance. As a result of numerical analysis and simulation, proposed algorithm shows larger performance improvements. For traffic information related services, the performance of DSRC LLC recommended by Europe and Japan is the same as that of proposed LLC protocol. However, for wireless internet web service, the performance of proposed protocol is much better than that of LLC protocol used in Europe and Japan.

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