UTILIZATION OF ADAS FOR IMPROVING IDLE STOP-AND-GO CONTROL

被引:0
|
作者
Jeong, Kwangwoo [1 ]
Lee, Hoon [1 ]
Lee, Jaihyun [1 ]
Yoo, Sanghoon [1 ]
Lee, Byungho [1 ]
Kim, Sejun [1 ]
机构
[1] Hyundai Kia Amer Tech Ctr Inc, Powertrain Prod Dev, Superior Township, MI 48198 USA
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Idle Stop and Go (ISG), also known as Automatic Engine Stop/Start, has been widely implemented in production vehicles as one of the "Eco" functions that save fuel, and the application has been promoted to meet stringent fuel economy regulations throughout the world. However, the vibration and the hesitation caused by engine stop and restart often discourage the usage. Because a conventional ISG system usually restarts the engine when it sees the brake pedal release, the driver may perceive a delay in immediate vehicle launch. Furthermore, there are some driving conditions where engine on/off is undesirable or unnecessary. A quick stop-and-go situation such as making a complete stop at a stop sign is one of the conditions where ISG would be inappropriate, and in those cases, ISG may irritate the driver or even end up increasing fuel consumption with too frequent engine stop/start. In order to mitigate aforementioned issues, a utilization of Advanced Driver Assistance System (ADAS) is proposed. With the surrounding traffic information obtained from the ADAS module, ISG control algorithm is able to determine when to turn on or off the engine prior to driver's input. The applications demonstrated in this paper include the following usage examples: The ISG control logic monitors the movement of the vehicle in front and restarts the engine out of ISG mode before brake release, which eliminates the delay in the following vehicle launch. By employing traffic sign recognition and vehicle location info, the control logic is also able to inhibit engine off when the vehicle stops at stop signs which will avoid unwanted ISG activation. In this paper; the advanced ISG control logic is introduced, and the real-world vehicle test results are provided with the description of prototype vehicle configuration.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] “Stop-and-go” error analysis of geosynchronous SAR
    Yurun TIAN
    Shenglong GUO
    Weidong YU
    Science China(Information Sciences), 2016, 59 (06) : 177 - 188
  • [42] "Stop-and-go" error analysis of geosynchronous SAR
    Tian, Yurun
    Guo, Shenglong
    Yu, Weidong
    SCIENCE CHINA-INFORMATION SCIENCES, 2016, 59 (06)
  • [43] Hysteresis and stop-and-go waves in traffic flows
    Corli, Andrea
    Fan, Haitao
    MATHEMATICAL MODELS & METHODS IN APPLIED SCIENCES, 2019, 29 (14): : 2637 - 2678
  • [44] Modeling Stop-and-Go Waves in Pedestrian Dynamics
    Portz, Andrea
    Seyfried, Armin
    PARALLEL PROCESSING AND APPLIED MATHEMATICS, PART II, 2010, 6068 : 561 - 568
  • [45] Noise-Induced Stop-and-Go Dynamics
    Tordeux, Antoine
    Schadschneider, Andreas
    Lassarre, Sylvain
    TRAFFIC AND GRANULAR FLOW '17, 2019, : 337 - 345
  • [46] SELECTING TRANSMISSION SYSTEMS FOR STOP-AND-GO APPLICATIONS
    APPELBLA.I
    MECHANICAL ENGINEERING, 1966, 88 (07) : 68 - &
  • [47] BRAKES AND CLUTCHES LEAD STOP-AND-GO LIVES
    不详
    MACHINE DESIGN, 1995, 67 (15) : 96 - &
  • [48] Distracted Driving Detection in Stop-and-Go Traffic
    Ucar, Seyhan
    Sisbot, E. Akin
    Muralidharan, Haritha
    Oguchi, Kentaro
    2022 IEEE 25TH INTERNATIONAL CONFERENCE ON INTELLIGENT TRANSPORTATION SYSTEMS (ITSC), 2022, : 1196 - 1201
  • [49] A Vehicle stop-and-go control strategy based on human drivers driving characteristics
    Kyongsu Yi
    Donghoon Han
    Journal of Mechanical Science and Technology, 2005, 19 : 993 - 1000
  • [50] Robust grey-box closed-loop stop-and-go control
    Villagra, Jorge
    d'Andrea-Novel, Brigitte
    Fliess, Michel
    Mounier, Hugues
    47TH IEEE CONFERENCE ON DECISION AND CONTROL, 2008 (CDC 2008), 2008, : 5378 - 5383