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    • 6. 发明授权
    • Vehicle control system and method
    • 车辆控制系统及方法
    • US07289889B2
    • 2007-10-30
    • US10823170
    • 2004-04-13
    • Sanjeev M. NaikPradyumna K. MishraMark N. HowellRami I. DeboukMutasim A. Salman
    • Sanjeev M. NaikPradyumna K. MishraMark N. HowellRami I. DeboukMutasim A. Salman
    • G06F17/00
    • B60W50/023B60T8/885B60T2270/413B62D5/001
    • A control system and method for use in vehicles, such as automotive vehicles. The control system and method is particularly adapted for use in vehicles having by-wire control systems. The control system uses three system controllers. Each of the controllers is adapted to receive redundant control inputs from at least one input device, such as a steering actuator, an accelerator actuator and a brake actuator. Each controller is adapted to receive a different unprocessed actuator sensor signal and a processed actuator sensor signal which are associated with the input device. Each controller may also be adapted to receive a sensor status signal which is also associated with the input device. In accordance with the method of the invention, these signals may be used to determine a sensor signal which may be used as the basis for control of control systems or components in response to the input device. Depending on the status of these signals, the sensor signal used for control may comprise the processed sensor signal or a resolved sensor signal. The sensor signal used for control may be determined by implementing a voting process in conjunction with the controllers which utilizes both the unprocessed sensor signals and the processed sensor signals.
    • 用于诸如汽车的车辆的控制系统和方法。 控制系统和方法特别适用于具有线控制系统的车辆。 控制系统使用三个系统控制器。 每个控制器适于接收来自至少一个输入装置(例如转向致动器,加速器致动器和制动致动器)的冗余控制输入。 每个控制器适于接收与输入设备相关联的不同的未处理的致动器传感器信号和经处理的致动器传感器信号。 每个控制器还可以适于接收也与输入设备相关联的传感器状态信号。 根据本发明的方法,可以使用这些信号来确定传感器信号,该传感器信号可以用作响应于输入装置的控制系统或部件的控制的基础。 根据这些信号的状态,用于控制的传感器信号可以包括经处理的传感器信号或分辨的传感器信号。 用于控制的传感器信号可以通过结合使用未处理的传感器信号和处理的传感器信号的控制器实施投票过程来确定。
    • 7. 发明授权
    • Real time traffic aide
    • 实时交通助手
    • US07804423B2
    • 2010-09-28
    • US12140031
    • 2008-06-16
    • Upali Priyantha MudaligeWilliam C. LinRami I. DeboukCem U. Saraydar
    • Upali Priyantha MudaligeWilliam C. LinRami I. DeboukCem U. Saraydar
    • G06G1/00
    • G08G1/161G08G1/164
    • A system and method for providing real-time traffic information using a wireless vehicle-to-vehicle communications network. A vehicle includes a plurality of sensors that detect other vehicles around the vehicle. The wireless communications system on the vehicle uses the sensor signals to calculate a traffic condition index that identifies traffic information around the vehicle. The vehicle broadcasts the traffic condition index to other vehicles and/or road side infrastructure units that can present the information to the vehicle driver, such as in a navigation system, and/or rebroadcast the traffic information to other vehicles. The traffic condition index can be calculated using the speed of the surrounding vehicles, posted speed limits, the distance between the surrounding vehicles and the traffic density of the surrounding vehicles.
    • 一种用于使用无线车对车通信网络提供实时交通信息的系统和方法。 车辆包括检测车辆周围的其他车辆的多个传感器。 车辆上的无线通信系统使用传感器信号来计算识别车辆周围交通信息的交通状况指标。 车辆向其他车辆和/或路侧基础设施单元广播交通状况指标,其可以将信息呈现给车辆驾驶员,例如在导航系统中,和/或将交通信息转播给其他车辆。 交通状况指数可以使用周边车辆的速度,速度限制,周边车辆之间的距离和周围车辆的交通密度来计算。
    • 8. 发明申请
    • REAL TIME TRAFFIC AIDE
    • 实时交通辅助
    • US20090309757A1
    • 2009-12-17
    • US12140031
    • 2008-06-16
    • Upali Priyantha MudaligeWilliam C. LinRami I. DeboukCem U. Saraydar
    • Upali Priyantha MudaligeWilliam C. LinRami I. DeboukCem U. Saraydar
    • G08G1/09G08G1/01G08G1/065
    • G08G1/161G08G1/164
    • A system and method for providing real-time traffic information using a wireless vehicle-to-vehicle communications network. A vehicle includes a plurality of sensors that detect other vehicles around the vehicle. The wireless communications system on the vehicle uses the sensor signals to calculate a traffic condition index that identifies traffic information around the vehicle. The vehicle broadcasts the traffic condition index to other vehicles and/or road side infrastructure units that can present the information to the vehicle driver, such as in a navigation system, and/or rebroadcast the traffic information to other vehicles. The traffic condition index can be calculated using the speed of the surrounding vehicles, posted speed limits, the distance between the surrounding vehicles and the traffic density of the surrounding vehicles.
    • 一种用于使用无线车对车通信网络提供实时交通信息的系统和方法。 车辆包括检测车辆周围的其他车辆的多个传感器。 车辆上的无线通信系统使用传感器信号来计算识别车辆周围交通信息的交通状况指标。 车辆向其他车辆和/或路侧基础设施单元广播交通状况指标,其可以将信息呈现给车辆驾驶员,例如在导航系统中,和/或将交通信息转播给其他车辆。 交通状况指数可以使用周边车辆的速度,速度限制,周边车辆之间的距离和周围车辆的交通密度来计算。
    • 10. 发明授权
    • Method and system for limited time fault tolerant control of actuators based on pre-computed values
    • 基于预先计算值的执行器的有限时间容错控制方法和系统
    • US08843218B2
    • 2014-09-23
    • US13188785
    • 2011-07-22
    • Markus JochimLawrence E. PeruskiBarbara J. CzernyJoseph G. D'AmbrosioRami I. Debouk
    • Markus JochimLawrence E. PeruskiBarbara J. CzernyJoseph G. D'AmbrosioRami I. Debouk
    • G05B11/01G06F11/00G05B9/02
    • G05B9/02
    • A method of controlling an actuator includes developing a sequence of actuation commands S(tx)=C(tx, tx), C(tx, tx+1), . . . , C(tx, tx+n) obtained from data sensed before time tx for controlling the actuator at different time intervals (tx, tx+1), (tx+1, tx+2), . . . , (tx+n−1, tx+n). The sequence of actuation commands is transmitted to and stored in memory of an actuation ECU, which then applies the actuation command for time interval (tx, tx+1). If a fault affects a sensor, a control ECU or data communication therebetween, the actuation ECU will not receive an updated sequence of actuation commands S(tx+1) at time tx+1. If the updated actuation command sequence, the actuation ECU applies the actuation command for the time intervals (tx+1, tx+2), . . . , (tx+n−1, tx+n) from the sequence of actuation commands S(tx) that is stored in the memory of the actuation ECU.
    • 控制致动器的方法包括:开发一系列致动指令S(tx)= C(tx,tx),C(tx,tx + 1),。 。 。 (tx,tx + 1),(tx + 1,tx + 2),(tx + 1,tx + 2)控制执行器的时间tx之前检测到的数据获得的C(tx,tx + n) 。 。 ,(tx + n-1,tx + n)。 致动命令的顺序被传送到并存储在致动ECU的存储器中,然后致动ECU将时间间隔(tx,tx + 1)的致动命令应用。 如果故障影响传感器,控制ECU或其间的数据通信,则在时间tx + 1,致动ECU将不会接收更新的致动指令序列S(tx + 1)。 如果更新的致动命令序列,则致动ECU对时间间隔(tx + 1,tx + 2)施加致动命令。 。 。 ,(tx + n-1,tx + n)根据存储在致动ECU的存储器中的致动指令S(tx)的顺序。