• Title/Summary/Keyword: FlexRay Protocol

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Implementation of FlexRay Protocol Specification and its Application to a Automobile Advance Alarm System (FlexRay 프로토콜 설계 및 자동차 경보 시스템 응용)

  • Xu, Yi-Nan;Yang, Sang-Hoon;Chung, Jin-Gyun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.45 no.8
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    • pp.98-105
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    • 2008
  • FlexRay is a high-speed communications protocol with high flexibility and reliability. It was devised by automotive manufacturers and semiconductor vendors and implemented as on vehicle LAN protocol using x-by-wire systems. FlexRay provides a high speed serial communication, time triggered bus and fault tolerant communication between electronic devices for automotive applications. In this paper, we first design the FlexRay communication controller, bus guardian protocol specification and function parts using SDL (Specification and Description Language). Then, the system is re-designed using Verilog HDL based on the SDL source. The FlexRay system was synthesized using Samsung $0.35{\mu}m$ technology. It is shown that the designed system can operate in the frequency range above 76 MHz. In addition, to show the validity of the designed FlexRay system, the FlexRay system is combined with automobile advance alarm system in vehicle applications. The FlexRay system is implemented using ALTERA Excalibur ARM EPXA4F672C3. It is shown that the implemented system operates successfully.

Study on Automatic Generation of Platform Configuration Register in FlexRay Protocol (FlexRay 프로토콜에서 플랫폼 구성 변수의 자동 생성에 관한 연구)

  • Yang, Jae-Sung;Park, Jee-Hun;Lee, Suk;Lee, Kyung-Chang;Choi, GwangHo
    • IEMEK Journal of Embedded Systems and Applications
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    • v.7 no.1
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    • pp.41-52
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    • 2012
  • Recently, FlexRay was developed to replace controller area network (CAN) protocol in chassis networking systems, to remedy the shortage of transmission capacity and unsatisfactory real-time transmission delay of conventional CAN. FlexRay network systems require correct synchronization and complex scheduling parameters. However, because platform configuration register (PCR) setting and message scheduling is complex and bothersome task, FlexRay is more difficult to implement in applications than CAN protocol. To assist a network designer for implementing FlexRay cluster, this paper presents an analysis of FlexRay platform configuration register and automatic generation program of PCR. To demonstrate the feasibility of the automatic generation program, we evaluated its performance using experimental testbed.

Implementation of FlexRay Communication Controller Protocol and its Application to a Robot System (FlexRay 프로토콜 설계 및 로봇 시스템 응용)

  • Kang, Hyun-Soo;Xu, Yi-Nan;Kim, Yong-Eun;Chung, Jin-Gyun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.45 no.6
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    • pp.1-7
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    • 2008
  • FlexRay is a new standard of network communication system which provides a high speed serial communication, time triggered bus and fault tolerant communication between electronic devices for future automotive applications. FlexRay communication controller (CC) is the core of the FlexRay protocol specification. In this paper, we first design the FlexRay CC protocol specification and function parts using SDL (Specification and Description Language). Then, the system is re-designed using Verilog HDL based on the SDL source. The FlexRay CC system was synthesized using Samsung $0.35\;{\mu}m$ technology. It is shown that the designed system can operate in the frequency range above 80 MHz. In addition, to show the validity of the designed FlexRay system the FlexRay system is combined with sound source localization system in Robot applications. The combined system is implemented using ALTERA Excalibur ARM EPXA4F672C3. It is shown that the implemented system operates successfully.

Implementation of FlexRay Network System for Distributed Systems of Intelligent Vehicle (지능형 자동차의 분산형 시스템을 위한 FlexRay 네트워크 시스템의 구현)

  • Ha, Kyoung-Nam;Lee, Won-Seok;Lee, Kyung-Chang;Lee, Suk
    • Journal of Institute of Control, Robotics and Systems
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    • v.13 no.10
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    • pp.933-939
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    • 2007
  • Safety critical systems such as x-by-wire systems require in-vehicle network systems that can interconnect various sensors, actuators, and controllers. These networks need to have high data rate, deterministic operation, and fault tolerance. Recently, FlexRay protocol that is a time-triggered protocol has been introduced, and many automotive companies have been focusing on this protocol. This paper presents a design method of FlexRay network system and implementation of FlexRay-based motor control system.

FlexRay: Protocol, Time Hierarchy, Message Frame, Communication Controller, and Conformance Test (FlexRay: 프로토콜, 시간 계층, 메시지 프레임, 커뮤니케이션 컨트롤러, 적합성 시험)

  • Seokjun Hahn;Sua Shin;Naeun Park;Chan Park;Daegi Lee;Seongsoo Lee
    • Journal of IKEEE
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    • v.27 no.4
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    • pp.668-678
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    • 2023
  • FlexRay is an in-vehicle network with maximum two channels and maximum transmission speed of 10Mbps per channel. FlexRay exploits TDMA (Time Division Multiple Access) and FTDMA (Flexible Time division Multiple Access) to ensure real-time communication with efficient transmission, so it is used for real-time electronic control of safety-critical vehicular modules such as powertrain. This paper explains FlexRay protocol, time hierarchy, message frame, communication controller, and conformance test in detail based on ISO 17458 standard and FlexRay consortium documents.

A Vehicle SoC Fault Diagnosis Technique using FlexRay Protocol

  • Kang, Seung-Yeop;Jung, Ji-Hun;Park, Sung-Ju
    • Journal of the Korea Society of Computer and Information
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    • v.21 no.1
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    • pp.39-47
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    • 2016
  • In this paper, we propose vehicle SoC fault diagnosis platform using FlexRay protocol in order to detect the faults of semiconductor control chip even after vehicle production. Before FlexRay protocol by sending NFI (Null Frame Indicator) bit among the header segment and a specific identifier in the payload segment of FlexRay frame, this technique can be distinguishable from normal mode and test mode. By using this technique, it is possible to detect the faults such as performance degradation of vehicle network system caused by the aging or several problems of vehicle semiconductor chip. Also high reliability and safety of vehicle can be maintained by using structural test for vehicle SoC fault detection.

Development of FlexRay Module based on the AUTOSAR (AUTOSAR 기반의 FlexRay 모듈 개발)

  • Ju, Hong-Taek;Jeong, Seol-Young;Lee, Myung-Suk
    • The KIPS Transactions:PartC
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    • v.16C no.6
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    • pp.747-752
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    • 2009
  • The AUTOSAR(AUTOmotive Open System ARchitecture) is an open software platform for automotive. The AUTOSAR contains the modules of FlexRay that is the next generation automotive network protocol. We have developed the modules including FlexRay State Manager, FlexRay Transport, FlexRay Interface, FlexRay Transceiver Driver and FlexRay Driver based on the standard of the module. This thesis presented not only the result of development but the result of design and implementation. And the developed modules were ported to the microcontroller board and verified.

Implementation of Intelligent BNWAS and NMEA protocol Bridge Based on RlexRay (FlexRay 기반의 지능형 BNWAS 및 NMEA 프로토콜 브릿지 구현)

  • Kim, Gwan-Hyung;Kim, Min;Byun, Gi-Sig
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2010.10a
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    • pp.183-186
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    • 2010
  • This paper presents a stable real-time based FlexRay technology which is employed with a standard protocol of the marine electronic equipments and the bridge navigational watch alarm system (BNWAS). The traditional marine communications use NMEA communication protocols, and RS-232 and RS-422 techniques in the BNWAS, thus there are difficulty in seeking stability and reliability. To overcome such problems we utilize the FlexRay protocol technique to prevent data loss or error.

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Implementation of FlexRay Systems for Vehicle Appliacations (차량 내 통신을 위한 FlexRay 시스템 구현)

  • Jeon, Chang-Ha;Lee, Jae-Kyung;Jang, In-Gul;Chung, Jin-Gyun
    • Proceedings of the IEEK Conference
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    • 2009.05a
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    • pp.182-184
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    • 2009
  • FlexRay is a new standard of network communication system which provides a high speed serial communication, time triggered bus and fault tolerant communication between electronic devices for future automotive and ship applications. FlexRay communication controller(CC) is the core of the FlexRay protocol specification. In this paper, we first design the FlexRay CC protocol specification and function parts using SDL(Specification and Description Language). Then, the system is re-designed using Verilog HDL based on the SDL source. The FlexRay CC system was synthesized using Samsung $0.35{\mu}m$ technology. It is shown that the designed system can operate in the frequency range above 80 MHz. In addition, to show the validity of the designed FlexRay system, the FlexRay system is combined with sound source localization system in Robot applications. The combined system is implemented using ALTERA Excalibur ARM EPXA4F672C3. It is shown that the implemented system operates successfully.

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The Development of FlexRay Driver for Vehicle Network System (자동차 네트워크 시스템을 위한 FlexRay 드라이버 개발)

  • Koo, Yong-Je;Kim, Jong-Chul;Shin, Choong-Yup;Park, Sang-Jong
    • Journal of Institute of Control, Robotics and Systems
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    • v.16 no.6
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    • pp.546-552
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    • 2010
  • As the demands for the safety and convenience applications of the vehicles increase, the data load for the In-vehicle Network has increased significantly. As a result, a deterministic and fault-tolerant communication system is required to implement the safety critical applications such as X-by-wire systems. FlexRay communication system is a new standard of network communication system which provides the high speed serial communication, time triggered bus and fault tolerant communication between electronic devices. In addition to time-triggered communication, as providing of the event-triggered communication such as CAN, FlexRay protocol is able to manage the restricted communication resource more effectively. This paper presents the development of FlexRay driver which will be applied to the future ECU's communication system. To develop the FlexRay driver, the FlexRay requirement specification and FlexRay specification is analyzed. The developed FlexRay driver is implemented by using MPC5567 microprocessor of the Freescale semiconductor. To verify the developed FlexRay driver, the waveform of the FlexRay driver was measured and compared with the CAN communication system. As a result, the bus load is reduced about 13% compared with the CAN communication system.