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    • 2. 发明申请
    • AUTOMATIC NAVIGATION TO A PRIOR KNOWN LOCATION
    • 自动导航到先前的位置
    • US20120316774A1
    • 2012-12-13
    • US13156365
    • 2011-06-09
    • Eran YarivYair E. GevaFadi Haik
    • Eran YarivYair E. GevaFadi Haik
    • G01C21/00
    • G01C21/26G01C21/3685
    • The disclosed architecture facilitates the capture of data associated with a specific geographic location, as captured by a mobile device of a user at the geographic location, for the purpose of guiding the user back to that specific geographic location. When applied to vehicles or other types of user mobility (e.g., walking) the architecture automatically detects that a user has controlled a means of transportation to a stationary (or parked) state, such as associated with a parked car. When the stationary state is reached, the location is detected (e.g., using user device sensing systems). Detection can include recording images, sounds, speech, geolocation data, etc., associated with the location and/or means of transportation. The user can configure a reminder to activate at the location to assist in the user recalling the location when returning to the means of transportation.
    • 所公开的架构便于捕获与由地理位置处的用户的移动设备捕获的特定地理位置相关联的数据,以便将用户引导回该特定地理位置。 当应用于车辆或其他类型的用户移动性(例如,步行)时,架构自动检测用户已经将运输工具控制到静止(或停放)状态,例如与停放的汽车相关联的状态。 当达到静止状态时,检测位置(例如,使用用户设备感测系统)。 检测可以包括与位置和/或运输方式相关联的记录图像,声音,语音,地理定位数据等。 用户可以配置提醒以在该位置激活以帮助用户在返回到运输工具时召回该位置。
    • 3. 发明申请
    • DELAYED AND TIME-SPACE BOUND NOTIFICATIONS
    • 延迟和时间间隔通知
    • US20120295645A1
    • 2012-11-22
    • US13110001
    • 2011-05-18
    • Eran YarivYair E. GevaFadi Haik
    • Eran YarivYair E. GevaFadi Haik
    • G06F15/16H04W4/12
    • H04W4/12H04L12/1895H04L51/24H04L67/322H04W68/00
    • Architecture that enables alerts and notifications to have priorities and time/space durations. Non-critical alerts can be displayed in a non-obtrusive manner and alert/notifications coalesced. Alerts/notifications can be assigned priorities, thereby enabling the alerts/notifications to be non-intrusive to the user. Methods include detecting when the user is using a mobile phone (or other suitable device) and then sending the alert/notification in response to the detected use based on threshold criteria relative to an accumulated sum of alerts/notifications, and an importance level (e.g., of each). Additionally, alert/notification priority can be changed (e.g. elevated, lowered) according to time (when) and space (where), thereby enabling the user to be intrusively notified based on the level, even if not previously signaled. Time and space bounds (criteria) can be assigned to alerts/notifications for merger/grouping and/or set to be auto-dismissed if no longer applicable.
    • 使警报和通知具有优先级和时间/空间持续时间的体系结构。 非关键警报可以以非突出的方式显示,警报/通知合并。 可以为警报/通知分配优先级,从而使警报/通知不会侵入用户。 方法包括检测用户何时使用移动电话(或其他合适的设备),然后响应于检测到的使用,基于相对于累加的警报/通知总和的阈值标准来发送警报/通知,以及重要性级别(例如, , 每个)。 此外,警报/通知优先级可以根据时间(何时)和空间(其中)改变(例如,升高,降低),从而使用户能够基于电平被静态地通知用户,即使以前没有被通知。 可以将时间和空间界限(条件)分配给用于合并/分组的警报/通知,和/或将其设置为自动关闭(如果不再适用)。
    • 5. 发明授权
    • Adaptation of notification perimeter based on relevance to a user
    • 根据与用户的相关性调整通知周界
    • US08682300B2
    • 2014-03-25
    • US13118490
    • 2011-05-30
    • Dima StopelYair E. Geva
    • Dima StopelYair E. Geva
    • H04M3/42
    • G06Q30/02G08G1/0962H04W4/022H04W4/029
    • Location-based notification architecture that provides notification relevance to a user and/or a user goal. The size of the virtual perimeter or boundary is changed dynamically based on changes in relevance to a user and/or user goal, and thus, can be made dependent on various factors. The size of the perimeter can increase or decrease according to user preferences that are learned over time (e.g., preference for a gas station of a specific company). These capabilities improve the relevance of the notification the user receives. The relevance of a notification to the user can be improved by tuning the perimeter size according to known parameters that depend on the point of interest (e.g., business) itself and/or by tuning of the size of virtual perimeter according to parameters associated with user behavior. Other parameters can be considered as well, such as environmental conditions, and traffic conditions, for example.
    • 基于位置的通知架构,提供与用户和/或用户目标的通知相关性。 基于与用户和/或用户目标的相关性的变化,虚拟周界或边界的大小被动态地改变,并且因此可以取决于各种因素。 根据随时间学习的用户偏好(例如,对特定公司的加油站的偏好),周长的大小可以增加或减少。 这些功能提高了用户收到的通知的相关性。 可以通过根据依赖于兴趣点(例如,业务)本身的已知参数调整周界尺寸和/或通过根据与用户相关联的参数来调整虚拟周界的大小来改进通知与用户的相关性 行为。 也可以考虑其他参数,例如环境条件和交通状况。
    • 7. 发明申请
    • ADAPTATION OF NOTIFICATION PERIMETER BASED ON RELEVANCE TO A USER
    • 基于与用户相关的通知周期的适应
    • US20120306660A1
    • 2012-12-06
    • US13118490
    • 2011-05-30
    • Dima StopelYair E. Geva
    • Dima StopelYair E. Geva
    • G08B21/00
    • G06Q30/02G08G1/0962H04W4/022H04W4/029
    • Location-based notification architecture that provides notification relevance to a user and/or a user goal. The size of the virtual perimeter or boundary is changed dynamically based on changes in relevance to a user and/or user goal, and thus, can be made dependent on various factors. The size of the perimeter can increase or decrease according to user preferences that are learned over time (e.g., preference for a gas station of a specific company). These capabilities improve the relevance of the notification the user receives. The relevance of a notification to the user can be improved by tuning the perimeter size according to known parameters that depend on the point of interest (e.g., business) itself and/or by tuning of the size of virtual perimeter according to parameters associated with user behavior. Other parameters can be considered as well, such as environmental conditions, and traffic conditions, for example.
    • 基于位置的通知架构,提供与用户和/或用户目标的通知相关性。 基于与用户和/或用户目标的相关性的变化,虚拟周界或边界的大小被动态地改变,并且因此可以取决于各种因素。 根据随时间学习的用户偏好(例如,对特定公司的加油站的偏好),周长的大小可以增加或减少。 这些功能提高了用户收到的通知的相关性。 可以通过根据依赖于兴趣点(例如,业务)本身的已知参数调整周界尺寸和/或通过根据与用户相关联的参数来调整虚拟周界的大小来改进通知与用户的相关性 行为。 也可以考虑其他参数,例如环境条件和交通状况。