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    • 1. 发明申请
    • Probabilistic reverse geocoding
    • 概率反向地理编码
    • US20100088019A1
    • 2010-04-08
    • US12588143
    • 2009-10-06
    • Bob BarcklayJohn HahnKevin Tsurutome
    • Bob BarcklayJohn HahnKevin Tsurutome
    • G01C21/36
    • G01C21/34G01C21/20G01C21/26G01C21/30G01C21/3415
    • The accuracy of a reverse geocode for a GPS fix in a mobile phone navigation device is improved significantly by considering together the user's last known location on an original route, the elapsed time between the last known location on the original route and the latest GPS fix, and the likelihood that the user could have traveled from the last known location on the original route to one of numerous candidate locations (generated from the reverse geocode) in the elapsed time. The navigation server relies only on a GPS fix, timestamps, and a back-end routing database to provide improved or superior accuracy of reverse geocoding a GPS fix (selection of a point on a road) when a relevant user has deviated from the intended route. The reverse geocoding allows for accurate and functional re-routing capabilities.
    • 通过考虑用户在原始路线上的最后一个已知位置,原始路线上的最后一个已知位置与最新的GPS定位之间的经过时间,将移动电话导航设备中的GPS修复的反向地理编码的精度大大提高, 以及在经过的时间内用户可能已经从原始路线上的最后一个已知位置行进到许多候选位置之一(由反向地理编码生成)的可能性。 导航服务器仅依赖于GPS定位点,时间戳和后端路由数据库,以便当相关用户偏离预期路线时,提供GPS定位(GPS选项)对路线进行反向地理编码的改进或更高精度 。 反向地理编码允许准确和功能重新路由功能。
    • 2. 发明授权
    • Probalistic reverse geocoding
    • 平衡反向地理编码
    • US08838379B2
    • 2014-09-16
    • US13790197
    • 2013-03-08
    • Bob BarcklayJohn HahnKevin Tsurutome
    • Bob BarcklayJohn HahnKevin Tsurutome
    • G01C21/34G01C21/30
    • G01C21/34G01C21/20G01C21/26G01C21/30G01C21/3415
    • The accuracy of a reverse geocode for a GPS fix in a mobile phone navigation device is improved significantly by considering together the user's last known location on an original route, the elapsed time between the last known location on the original route and the latest GPS fix, and the likelihood that the user could have travelled from the last known location on the original route to one of numerous candidate locations (generated from the reverse geocode) in the elapsed time. The navigation server relies only on a GPS fix, timestamps, and a back-end routing database to provide improved or superior accuracy of reverse geocoding a GPS fix (selection of a point on a road) when a relevant user has deviated from the intended route. The reverse geocoding allows for accurate and functional re-routing capabilities.
    • 通过考虑用户在原始路线上的最后一个已知位置,原始路线上的最后一个已知位置与最新的GPS定位之间的经过时间,将移动电话导航设备中的GPS修复的反向地理编码的精度大大提高, 以及在经过的时间内用户可能已经从原始路线上的最后一个已知位置行进到许多候选位置之一(由反向地理编码生成)的可能性。 导航服务器仅依赖于GPS定位点,时间戳和后端路由数据库,以便当相关用户偏离预期路线时,提供GPS定位(GPS选项)对路线进行反向地理编码的改进或更高精度 。 反向地理编码允许准确和功能重新路由功能。
    • 3. 发明申请
    • Probalistic Reverse Geocoding
    • 平衡反向地理编码
    • US20130184986A1
    • 2013-07-18
    • US13790197
    • 2013-03-08
    • Bob BarcklayJohn HahnKevin Tsurutome
    • Bob BarcklayJohn HahnKevin Tsurutome
    • G01C21/34
    • G01C21/34G01C21/20G01C21/26G01C21/30G01C21/3415
    • The accuracy of a reverse geocode for a GPS fix in a mobile phone navigation device is improved significantly by considering together the user's last known location on an original route, the elapsed time between the last known location on the original route and the latest GPS fix, and the likelihood that the user could have travelled from the last known location on the original route to one of numerous candidate locations (generated from the reverse geocode) in the elapsed time. The navigation server relies only on a GPS fix, timestamps, and a back-end routing database to provide improved or superior accuracy of reverse geocoding a GPS fix (selection of a point on a road) when a relevant user has deviated from the intended route. The reverse geocoding allows for accurate and functional re-routing capabilities.
    • 通过考虑用户在原始路线上的最后一个已知位置,原始路线上的最后一个已知位置与最新的GPS定位之间的经过时间,将移动电话导航设备中的GPS修复的反向地理编码的精度大大提高, 以及在经过的时间内用户可能已经从原始路线上的最后一个已知位置行进到许多候选位置之一(由反向地理编码生成)的可能性。 导航服务器仅依赖于GPS定位点,时间戳和后端路由数据库,以便当相关用户偏离预期路线时,提供GPS定位(GPS选项)对路线进行反向地理编码的改进或更高精度 。 反向地理编码允许准确和功能重新路由功能。
    • 4. 发明授权
    • Probabilistic reverse geocoding
    • 概率反向地理编码
    • US08396658B2
    • 2013-03-12
    • US12588143
    • 2009-10-06
    • Bob BarcklayJohn HahnKevin Tsurutome
    • Bob BarcklayJohn HahnKevin Tsurutome
    • G01C21/34
    • G01C21/34G01C21/20G01C21/26G01C21/30G01C21/3415
    • The accuracy of a reverse geocode for a GPS fix in a mobile phone navigation device is improved significantly by considering together the user's last known location on an original route, the elapsed time between the last known location on the original route and the latest GPS fix, and the likelihood that the user could have traveled from the last known location on the original route to one of numerous candidate locations (generated from the reverse geocode) in the elapsed time. The navigation server relies only on a GPS fix, timestamps, and a back-end routing database to provide improved or superior accuracy of reverse geocoding a GPS fix (selection of a point on a road) when a relevant user has deviated from the intended route. The reverse geocoding allows for accurate and functional re-routing capabilities.
    • 通过考虑用户在原始路线上的最后一个已知位置,原始路线上的最后一个已知位置与最新的GPS定位之间的经过时间,将移动电话导航设备中的GPS修复的反向地理编码的精度大大提高, 以及在经过的时间内用户可能已经从原始路线上的最后一个已知位置行进到许多候选位置之一(由反向地理编码生成)的可能性。 导航服务器仅依赖于GPS定位点,时间戳和后端路由数据库,以便当相关用户偏离预期路线时,提供GPS定位(GPS选项)对路线进行反向地理编码的改进或更高精度 。 反向地理编码允许准确和功能重新路由功能。
    • 5. 发明授权
    • Remotely provisioned wirelessly proxy
    • 远程配置无线代理
    • US08594627B2
    • 2013-11-26
    • US12588142
    • 2009-10-06
    • Kevin TsurutomeBob BarcklayRobert Wang
    • Kevin TsurutomeBob BarcklayRobert Wang
    • H04M1/66
    • H04W4/001H04L67/12H04L67/2814H04L67/2819H04W4/50H04W4/80H04W88/182
    • A remotely provisioned proxy within a wireless/mobile phone that proxies a wireless communication path between a disconnected piconet (e.g., BLUETOOTH™) device and a network resource such as a universal resource locator (URL) via a mating mobile phone. Thus, an application proxy module embodied within the mobile phone provides managed access of a piconet device connected to the mating mobile phone to remote services. A disconnected piconet device uses the full data bandwidth available to a wireless phone, without the need for the disconnected piconet device to include its own separate wireless front end, or to require use of a modem within the mobile phone. Thus, using a mobile phone with application proxy, the user need not pay for the luxury of a tethered data plan.
    • 在无线/移动电话内的远程配置代理,其通过配对移动电话代理在断开的微微网(例如,蓝牙(TM))设备和网络资源(例如通用资源定位符(URL))之间的无线通信路径。 因此,体现在移动电话内的应用代理模块提供连接到配对移动电话的微微网设备对远程服务的管理访问。 断开的微微网设备使用无线电话可用的完整数据带宽,而不需要断开连接的微微网设备包括其自己的单独的无线前端,或者需要使用移动电话中的调制解调器。 因此,使用具有应用代理的移动电话,用户不需要支付系列数据计划的奢侈。
    • 6. 发明申请
    • Remotely provisioned wirelessly proxy
    • 远程配置无线代理
    • US20100087167A1
    • 2010-04-08
    • US12588142
    • 2009-10-06
    • Kevin TsurutomeBob BarcklayRobert Wang
    • Kevin TsurutomeBob BarcklayRobert Wang
    • H04M1/66
    • H04W4/001H04L67/12H04L67/2814H04L67/2819H04W4/50H04W4/80H04W88/182
    • A remotely provisioned proxy within a wireless/mobile phone that proxies a wireless communication path between a disconnected piconet (e.g., BLUETOOTH™) device and a network resource such as a universal resource locator (URL) via a mating mobile phone. Thus, an application proxy module embodied within the mobile phone provides managed access of a piconet device connected to the mating mobile phone to remote services. A disconnected piconet device uses the full data bandwidth available to a wireless phone, without the need for the disconnected piconet device to include its own separate wireless front end, or to require use of a modem within the mobile phone. Thus, using a mobile phone with application proxy, the user need not pay for the luxury of a tethered data plan.
    • 在无线/移动电话内的远程配置代理,其通过配对移动电话代理断开的微微网(例如,蓝牙)设备和网络资源(例如通用资源定位符(URL))之间的无线通信路径。 因此,体现在移动电话内的应用代理模块提供连接到配对移动电话的微微网设备对远程服务的管理访问。 断开的微微网设备使用无线电话可用的完整数据带宽,而不需要断开连接的微微网设备包括其自己的单独的无线前端,或者需要使用移动电话中的调制解调器。 因此,使用具有应用代理的移动电话,用户不需要支付系列数据计划的奢侈。
    • 10. 发明授权
    • Remotely provisioned wireless proxy
    • 远程配置无线代理
    • US08712408B2
    • 2014-04-29
    • US13738525
    • 2013-01-10
    • Kevin TsurutomeRobert BarcklayRobert Wang
    • Kevin TsurutomeRobert BarcklayRobert Wang
    • H04W4/00
    • H04W4/001H04L67/12H04L67/2814H04L67/2819H04W4/50H04W4/80H04W88/182
    • A remotely provisioned proxy within a wireless/mobile phone that proxies a wireless communication path between a disconnected piconet (e.g., BLUETOOTH™) device and a network resource such as a universal resource locator (URL) via a mating mobile phone. Thus, an application proxy module embodied within the mobile phone provides managed access of a piconet device connected to the mating mobile phone to remote services. A disconnected piconet device uses the full data bandwidth available to a wireless phone, without the need for the disconnected piconet device to include its own separate wireless front end, or to require use of a modem within the mobile phone. Thus, using a mobile phone with application proxy, the user need not pay for the luxury of a tethered data plan.
    • 在无线/移动电话内的远程配置代理,其通过配对移动电话代理在断开的微微网(例如,蓝牙)设备和网络资源(例如通用资源定位符(URL))之间的无线通信路径。 因此,体现在移动电话内的应用代理模块提供连接到配对移动电话的微微网设备对远程服务的管理访问。 断开的微微网设备使用无线电话可用的完整数据带宽,而不需要断开连接的微微网设备包括其自己的单独的无线前端,或者需要使用移动电话中的调制解调器。 因此,使用具有应用代理的移动电话,用户不需要支付系列数据计划的奢侈。