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    • 1. 发明申请
    • PROVIDING SPEECH RECOGNITION DATA TO A SPEECH ENABLED DEVICE WHEN PROVIDING A NEW ENTRY THAT IS SELECTABLE VIA A SPEECH RECOGNITION INTERFACE OF THE DEVICE
    • 当通过设备的语音识别接口提供可选择的新入口时,将语音识别数据提供给语音启用设备
    • US20090157392A1
    • 2009-06-18
    • US11958713
    • 2007-12-18
    • Neal J. ALEWINEDaniel E. BADT
    • Neal J. ALEWINEDaniel E. BADT
    • G10L15/02
    • G10L15/183G10L15/06
    • The present invention discloses a solution for providing a phonetic representation for a content item along with a content item delivered to a speech enabled computing device. The phonetic representation can be specified in a manner that enables it to be added to a speech recognition grammar of the speech enabled computing device. Thus, the device can recognize speech commands using the newly added phonetic representation that involve the content item. Current implementations of speech recognition systems of this type rely internal generation of speech recognition data that is added to the speech recognition grammar. Generation of speech recognition data can, however, be resource intensive, which can be particularly problematic when the speech enabled device is resource limited. The disclosed solution offloads the task of providing the speech recognition data to an external device, such as a relatively resource rich server or a desktop device.
    • 本发明公开了一种用于为内容项目提供语音表示以及递送到支持语音的计算设备的内容项目的解决方案。 可以以使其能够被添加到支持语音的计算设备的语音识别语法的方式来指定语音表示。 因此,设备可以使用涉及内容项的新添加的语音表示来识别语音命令。 这种类型的语音识别系统的当前实现依赖于加入到语音识别语法中的语音识别数据的内部生成。 然而,语音识别数据的生成可以是资源密集型的,当语音使能设备被资源限制时,这可能是特别有问题的。 所公开的解决方案将提供语音识别数据的任务卸载到诸如相对资源丰富的服务器或桌面设备的外部设备。
    • 2. 发明授权
    • Automated traffic mapping using sampling and analysis
    • 使用抽样和分析的自动流量映射
    • US06333703B1
    • 2001-12-25
    • US09679033
    • 2000-10-04
    • Neal J. AlewineJames C. ColsonAbraham P. IttycheriahStephane H. MaesPaul A. Moskowitz
    • Neal J. AlewineJames C. ColsonAbraham P. IttycheriahStephane H. MaesPaul A. Moskowitz
    • G08G1123
    • G08G1/01G08G1/096716G08G1/096741G08G1/096775G08G1/096811G08G1/096844
    • A system of mobile units are installed in multiple vehicles in traffic, the vehicles with mobile units being a sample of all vehicles in traffic. These mobile units include both wireless communications devices and apparatus that determines the location of each vehicle. Monitoring a vehicle's position as a function of time also reveals the velocity of the vehicle. Position and speed information is periodically broadcast by the vehicles to a central monitoring station and to neighboring vehicles. At the central monitoring station, the collective input from the sample set of vehicles is processed using statistical analysis methods to provide an instant chart of traffic conditions in the area, the accuracy of said chart being within a range determined by the size of the sample. Warnings of delays or updates on traffic conditions on the road ahead are then automatically returned to subscribers of the information or are used as part of an Intelligent Vehicle Highway System (IVHS). Neighboring vehicles within a region communicating with one another form a network in which the broadcast information is processed locally on the respective vehicles to estimate possible problems ahead and consider computing an alternate road and/or checking with the central monitoring station for more information. If out of range of the central monitoring station, the vehicles in the network form a local area network for the exchange and update of information, and when any vehicle in the network is within range of the central monitoring station, the local area network data is uploaded to help update the overall traffic information.
    • 移动单元的系统安装在多个交通工具中,具有移动单元的车辆是所有交通工具的样本。 这些移动单元包括无线通信设备和确定每个车辆的位置的设备。 作为时间的函数监测车辆的位置也显示车辆的速度。 位置和速度信息被车辆周期性地广播到中央监控站和相邻车辆。 在中央监测站,使用统计分析方法处理来自车辆样本集合的集体输入,以提供该区域的交通状况的即时图表,所述图表的准确度在由样本大小确定的范围内。 对道路上的交通状况的延误或更新的警告将自动返回给用户的信息,或作为智能车辆公路系统(IVHS)的一部分使用。 在彼此通信的区域内的相邻车辆形成网络,其中在相应车辆上本地处理广播信息,以估计未来的可能问题,并且考虑与中央监控站计算更多信息的替代道路和/或检查。 如果超出中央监控站的范围,网络中的车辆形成一个局域网,用于交换和更新信息,当网络中的任何车辆在中央监控站的范围内时,局域网数据为 上传以帮助更新总体交通信息。
    • 4. 发明授权
    • Location based full address entry via speech recognition
    • 通过语音识别的基于位置的完整地址输入
    • US08315799B2
    • 2012-11-20
    • US12777924
    • 2010-05-11
    • Neal J. AlewineJohn W. EckhartPeder A. OlsenKenneth D. White
    • Neal J. AlewineJohn W. EckhartPeder A. OlsenKenneth D. White
    • G01C21/32
    • G01C21/3608
    • A computer implemented method, system and/or computer program product confirm an orally entered address to a mobile navigation device. The mobile navigation device receives a global positioning system (GPS) root address component from a GPS. The GPS root address component is a text name of a root location at which a mobile navigation device is currently located. The mobile navigation device receives an orally entered address that comprises an oral root address component and an oral subunit component of the oral root address component. In response to the converted root address component matching the GPS root address component, the orally entered address is partitioned into the oral subunit component and the oral root address component, and any additional speech-to-text conversion of the orally entered address after the oral root address component is terminated.
    • 计算机实现的方法,系统和/或计算机程序产品向口头输入的地址确认移动导航装置。 移动导航装置从GPS接收全球定位系统(GPS)根地址分量。 GPS根地址组件是移动导航设备当前所在的根位置的文本名称。 移动导航装置接收口头输入的地址,该地址包括口语根地址组件和口语根地址组件的口服子单元组件。 响应于匹配GPS根地址组件的转换的根地址组件,口头输入的地址被划分成口语子单元组件和口语根地址组件,以及口头地址之后的口头输入地址的任何附加语音到文本转换 根地址组件终止。
    • 5. 发明申请
    • LOCATION BASED FULL ADDRESS ENTRY VIA SPEECH RECOGNITION
    • 基于位置的完整地址通过语音识别
    • US20110282574A1
    • 2011-11-17
    • US12777924
    • 2010-05-11
    • Neal J. ALEWINEJohn W. ECKHARTPeder A. OLSENKenneth D. WHITE
    • Neal J. ALEWINEJohn W. ECKHARTPeder A. OLSENKenneth D. WHITE
    • G01C21/36
    • G01C21/3608
    • A computer implemented method, system and/or computer program product confirm an orally entered address to a mobile navigation device. The mobile navigation device receives a global positioning system (GPS) root address component from a GPS. The GPS root address component is a text name of a root location at which a mobile navigation device is currently located. The mobile navigation device receives an orally entered address that comprises an oral root address component and an oral subunit component of the oral root address component. In response to the converted root address component matching the GPS root address component, the orally entered address is partitioned into the oral subunit component and the oral root address component, and any additional speech-to-text conversion of the orally entered address after the oral root address component is terminated.
    • 计算机实现的方法,系统和/或计算机程序产品向口头输入的地址确认移动导航装置。 移动导航装置从GPS接收全球定位系统(GPS)根地址分量。 GPS根地址组件是移动导航设备当前所在的根位置的文本名称。 移动导航装置接收口头输入的地址,该地址包括口语根地址组件和口语根地址组件的口服子单元组件。 响应于匹配GPS根地址组件的转换的根地址组件,口头输入的地址被划分成口语子单元组件和口语根地址组件,以及口头地址之后的口头输入地址的任何附加语音到文本转换 根地址组件终止。
    • 6. 发明授权
    • Providing speech recognition data to a speech enabled device when providing a new entry that is selectable via a speech recognition interface of the device
    • 当提供可经由设备的语音识别接口选择的新条目时,将语音识别数据提供给支持语音的设备
    • US08010345B2
    • 2011-08-30
    • US11958713
    • 2007-12-18
    • Neal J. AlewineDaniel E. Badt
    • Neal J. AlewineDaniel E. Badt
    • G10L19/00
    • G10L15/183G10L15/06
    • The present invention discloses a solution for providing a phonetic representation for a content item along with a content item delivered to a speech enabled computing device. The phonetic representation can be specified in a manner that enables it to be added to a speech recognition grammar of the speech enabled computing device. Thus, the device can recognize speech commands using the newly added phonetic representation that involve the content item. Current implementations of speech recognition systems of this type rely internal generation of speech recognition data that is added to the speech recognition grammar. Generation of speech recognition data can, however, be resource intensive, which can be particularly problematic when the speech enabled device is resource limited. The disclosed solution offloads the task of providing the speech recognition data to an external device, such as a relatively resource rich server or a desktop device.
    • 本发明公开了一种用于为内容项目提供语音表示以及递送到支持语音的计算设备的内容项目的解决方案。 可以以使其能够被添加到支持语音的计算设备的语音识别语法的方式来指定语音表示。 因此,设备可以使用涉及内容项的新添加的语音表示来识别语音命令。 这种类型的语音识别系统的当前实现依赖于加入到语音识别语法中的语音识别数据的内部生成。 然而,语音识别数据的生成可以是资源密集型的,当语音使能设备被资源限制时,这可能是特别有问题的。 所公开的解决方案将提供语音识别数据的任务卸载到诸如相对资源丰富的服务器或桌面设备的外部设备。
    • 9. 发明授权
    • Obtaining contextual vehicle information
    • 获取上下文车辆信息
    • US07212916B2
    • 2007-05-01
    • US11011628
    • 2004-12-14
    • Neal J. AlewineJonathan L. GabelJoseph G. RusnakAnthony W. Wrobel, Jr.
    • Neal J. AlewineJonathan L. GabelJoseph G. RusnakAnthony W. Wrobel, Jr.
    • G06F17/00
    • G07C5/008G07C5/0841
    • A system for permitting remotely located applications to obtain information about vehicle conditions and responsively perform programmatic actions based upon the vehicle conditions. The system can include a vehicle response server and a vehicle response agent. The vehicle response server can manage communications between one or more vehicles and at least one application remotely located from the vehicles. The application can automatically execute at least one context-dependent programmatic action based upon an event occurrence triggered by vehicle sensor input. The vehicle response agent, which resides within the vehicle can receive an activation context that specifies conditions for the event occurrence. The vehicle response agent can then monitor the vehicle for the event occurrence and, when appropriate, wirelessly convey an indication of the event occurrence to the vehicle response server. The indication can result in the automatic execution of the at least one context-dependent programmatic action.
    • 一种用于允许远程位置的应用获得关于车辆状况的信息并且基于车辆状况响应地执行编程动作的系统。 该系统可以包括车辆响应服务器和车辆响应代理。 车辆响应服务器可以管理一个或多个车辆与远离车辆的至少一个应用之间的通信。 该应用可以基于由车辆传感器输入触发的事件发生而自动地执行至少一个与上下文相关的编程动作。 驻留在车辆内的车辆响应代理可以接收指定事件发生的条件的激活上下文。 然后,车辆响应代理可以监视车辆的事件发生,并且在适当的时候向车辆响应服务器无线地传送事件发生的指示。 该指示可以导致至少一个与上下文相关的编程动作的自动执行。
    • 10. 发明授权
    • Automated traffic mapping
    • 自动流量映射
    • US6150961A
    • 2000-11-21
    • US198378
    • 1998-11-24
    • Neal J. AlewineJames C. ColsonAbraham P. IttycheriahStephane H. MaesPaul A. Moskowitz
    • Neal J. AlewineJames C. ColsonAbraham P. IttycheriahStephane H. MaesPaul A. Moskowitz
    • G08G1/01G08G1/09G08G1/123
    • G08G1/01G08G1/096716G08G1/096741G08G1/096775G08G1/096811G08G1/096844
    • A system of mobile units are installed in multiple vehicles in traffic. These mobile units include both wireless communications devices and apparatus that determines the location of each vehicle. Monitoring a vehicle's position as a function of time also reveals the velocity of the vehicle. Position and speed information is periodically broadcast by the vehicles to a central monitoring station and to neighboring vehicles. At the central monitoring station, the collective input of a set of vehicles is processed to provide an instant chart of traffic conditions in the area. Warnings of delays or updates on traffic conditions on the road ahead are then automatically returned to subscribers of the information or are used as part of an Intelligent Vehicle Highway System (IVHS). Neighboring vehicles within a region communicating with one another form a network in which the broadcast information is processed locally on the respective vehicles to estimate possible problems ahead and consider computing an alternate road and/or checking with the central monitoring station for more information. If out of range of the central monitoring station, the vehicles in the network form a local area network for the exchange and update of information, and when any vehicle in the network is within range of the central monitoring station, the local area network data is uploaded to help update the overall traffic information.
    • 移动单元的系统安装在多个交通工具中。 这些移动单元包括无线通信设备和确定每个车辆的位置的设备。 作为时间的函数监测车辆的位置也显示车辆的速度。 位置和速度信息被车辆周期性地广播到中央监控站和相邻车辆。 在中央监测站,处理一组车辆的集体输入,以提供该地区交通状况的即时图表。 对道路上的交通状况的延误或更新的警告将自动返回给用户的信息,或作为智能车辆公路系统(IVHS)的一部分使用。 在彼此通信的区域内的相邻车辆形成网络,其中在相应车辆上本地处理广播信息,以估计未来的可能问题,并且考虑与中央监控站计算更多信息的替代道路和/或检查。 如果超出中央监控站的范围,网络中的车辆形成一个局域网,用于交换和更新信息,当网络中的任何车辆在中央监控站的范围内时,局域网数据为 上传以帮助更新总体交通信息。