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    • 1. 发明申请
    • Mobile Application DRx Synchronization with Embedded Vehicle Hardware
    • 移动应用DRx与嵌入式车载硬件同步
    • US20120243528A1
    • 2012-09-27
    • US13072215
    • 2011-03-25
    • Mark S. FryeLawrence D. CepuranSteven P. Schwinke
    • Mark S. FryeLawrence D. CepuranSteven P. Schwinke
    • H04W56/00H04W4/00
    • H04W56/00
    • The described method and system provide for synchronizing a mobile application on a mobile device with a DRx (discontinuous receive) schedule of a vehicle. When the vehicle ignition is turned off, a telecommunications unit on the vehicle sends a synchronization message to the mobile device, which allows the mobile application to synchronize with the DRx schedule of the vehicle. The DRx schedule includes a standby mode, a cyclic mode, and a powered down mode for the vehicle, and user requests inputted into the mobile application will be processed according to the mobile application's determination of vehicle availability during those modes. The mobile application is thus able to inform the user of the vehicle status at any point during the vehicle's DRx schedule without requiring any further information from the vehicle after the synchronization message.
    • 所描述的方法和系统提供了使移动设备上的移动应用与车辆的DRx(不连续接收)时间表同步。 当车辆点火器关闭时,车辆上的电信单元向移动设备发送同步消息,其允许移动应用与车辆的DRx调度表同步。 DRx计划包括车辆的待机模式,循环模式和掉电模式,并且将根据移动应用程序在这些模式下的车辆可用性的确定来处理输入到移动应用的用户请求。 因此,移动应用能够在车辆的DRx调度期间的任何时刻通知用户车辆状态,而不需要在同步消息之后来自车辆的任何进一步的信息。
    • 2. 发明授权
    • Mobile application DRx synchronization with embedded vehicle hardware
    • 移动应用DRx与嵌入式车载硬件同步
    • US09237534B2
    • 2016-01-12
    • US13072215
    • 2011-03-25
    • Mark S. FryeLawrence D. CepuranSteven P. Schwinke
    • Mark S. FryeLawrence D. CepuranSteven P. Schwinke
    • H04W56/00
    • H04W56/00
    • The described method and system provide for synchronizing a mobile application on a mobile device with a DRx (discontinuous receive) schedule of a vehicle. When the vehicle ignition is turned off, a telecommunications unit on the vehicle sends a synchronization message to the mobile device, which allows the mobile application to synchronize with the DRx schedule of the vehicle. The DRx schedule includes a standby mode, a cyclic mode, and a powered down mode for the vehicle, and user requests inputted into the mobile application will be processed according to the mobile application's determination of vehicle availability during those modes. The mobile application is thus able to inform the user of the vehicle status at any point during the vehicle's DRx schedule without requiring any further information from the vehicle after the synchronization message.
    • 所描述的方法和系统提供了使移动设备上的移动应用与车辆的DRx(不连续接收)时间表同步。 当车辆点火器关闭时,车辆上的电信单元向移动设备发送同步消息,其允许移动应用与车辆的DRx调度表同步。 DRx计划包括车辆的待机模式,循环模式和掉电模式,并且将根据移动应用程序在这些模式下的车辆可用性的确定来处理输入到移动应用的用户请求。 因此,移动应用能够在车辆的DRx调度期间的任何时刻通知用户车辆状态,而不需要在同步消息之后来自车辆的任何进一步的信息。
    • 5. 发明申请
    • VEHICLE-INCIDENT DETECTION METHOD AND SYSTEM
    • 车辆碰撞检测方法与系统
    • US20140074315A1
    • 2014-03-13
    • US13606851
    • 2012-09-07
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • G06F7/00
    • G08G1/01G06F7/00G08G1/0104
    • A vehicle-incident detection method is disclosed herein. Vehicle data is received at a cloud computing system from a vehicle, where the vehicle data is generated by the vehicle in response to an initial detection of a vehicle-related event. After receiving the data, the cloud computing system requests additional vehicle data from the vehicle. The additional vehicle data is generated by the vehicle at a time subsequent to the initial detection of the vehicle-related event. The additional vehicle data is received from the vehicle, and an application resident in the cloud computing system analyzes the vehicle data and the additional vehicle data to determine that the vehicle-related event occurred. The application includes computer readable code embedded on a non-transitory, tangible computer readable medium for performing the analyzing. Also disclosed herein is a vehicle-incident detection system.
    • 本文公开了车辆检测方法。 在云计算系统从车辆接收车辆数据,其中响应于车辆相关事件的初始检测,车辆数据由车辆生成。 收到数据后,云计算系统从车辆请求其他车辆数据。 车辆在车辆相关事件的初始检测之后的时刻由车辆产生附加的车辆数据。 从车辆接收附加车辆数据,并且驻留在云计算系统中的应用程序分析车辆数据和附加车辆数据以确定车辆相关事件发生。 该应用程序包括嵌入在用于执行分析的非暂时有形计算机可读介质上的计算机可读代码。 本文还公开了车辆入场检测系统。
    • 7. 发明授权
    • Vehicle interior component for supporting a communication system
    • 用于支持通信系统的车辆内部部件
    • US08666464B2
    • 2014-03-04
    • US13430406
    • 2012-03-26
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • H04M1/00
    • B60J3/0278B60R11/02B60R11/0241B60R2011/0035B60R2011/0075
    • An vehicle interior component for supporting a communication system is disclosed herein. The vehicle interior component includes, but is not limited to, a body that is adapted for attachment to an interior of the vehicle and that is configured to receive a smartphone. The vehicle interior component further includes a hardware module that is configured to communicatively couple with the smartphone. The vehicle interior component still further includes a user input module communicatively coupled with the hardware module. The user input module is configured to generate a first input signal in response to a first user input and to transmit the first input signal to the hardware module. The hardware module is further configured to generate a first output signal and to transmit the first output signal to the smartphone in response to receiving the first input signal.
    • 本文公开了一种用于支撑通信系统的车辆内部部件。 车辆内部部件包括但不限于适于附接到车辆内部并被配置为接收智能电话的主体。 车辆内部组件还包括被配置为与智能手机通信地耦合的硬件模块。 车辆内部部件还包括与硬件模块通信地连接的用户输入模块。 用户输入模块被配置为响应于第一用户输入生成第一输入信号,并将第一输入信号发送到硬件模块。 硬件模块还被配置为响应于接收到第一输入信号而产生第一输出信号并将第一输出信号发送到智能电话。
    • 9. 发明授权
    • Vehicle-incident detection method and system
    • 车辆检测方法及系统
    • US08874279B2
    • 2014-10-28
    • US13606851
    • 2012-09-07
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • Mark S. FryeLawrence D. CepuranSteven SwansonCharles A. Everhart
    • G06F7/00G06F17/00G08G1/01
    • G08G1/01G06F7/00G08G1/0104
    • A vehicle-incident detection method is disclosed herein. Vehicle data is received at a cloud computing system from a vehicle, where the vehicle data is generated by the vehicle in response to an initial detection of a vehicle-related event. After receiving the data, the cloud computing system requests additional vehicle data from the vehicle. The additional vehicle data is generated by the vehicle at a time subsequent to the initial detection of the vehicle-related event. The additional vehicle data is received from the vehicle, and an application resident in the cloud computing system analyzes the vehicle data and the additional vehicle data to determine that the vehicle-related event occurred. The application includes computer readable code embedded on a non-transitory, tangible computer readable medium for performing the analyzing. Also disclosed herein is a vehicle-incident detection system.
    • 本文公开了车辆检测方法。 在云计算系统从车辆接收车辆数据,其中响应于车辆相关事件的初始检测,车辆数据由车辆生成。 收到数据后,云计算系统从车辆请求其他车辆数据。 车辆在车辆相关事件的初始检测之后的时刻由车辆产生附加的车辆数据。 从车辆接收附加车辆数据,并且驻留在云计算系统中的应用程序分析车辆数据和附加车辆数据以确定车辆相关事件发生。 该应用程序包括嵌入在用于执行分析的非暂时有形计算机可读介质上的计算机可读代码。 本文还公开了车辆入场检测系统。