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    • 1. 发明授权
    • Asymmetric dynamic geo-fencing
    • 不对称动力地质栅栏
    • US08471701B2
    • 2013-06-25
    • US13118495
    • 2011-05-30
    • Eran YarivVadim KuperBrian C. Beckman
    • Eran YarivVadim KuperBrian C. Beckman
    • G08B1/08
    • G01C21/3679H04W4/021
    • Architecture that enables location based notifications (e.g., geo-fences) using standard polygons the capture of complex regions. As applied to geo-fencing, it extends geo-fencing beyond the mere representation of the virtual perimeter (fenced) area. More specifically, the architecture takes into consideration geographical and demographical features, such as the layout of the roads and streets, the types of available of transportation (e.g., car, bus, walk, biking, etc.), the traffic conditions, and the dynamic properties of a point of interest (POI) such as opening hours, total wait time, etc. More specifically, the architecture enables the dynamic modification of polygon geo-fence based on POI properties, dynamic modification of polygon geo-fence based on road/street layout, dynamic modification of polygon geo-fence based on means of transportation, dynamic modification of polygon geo-fence based on traffic conditions, dynamic modification of polygon geo-fence based on user's state, and dynamic recalculation of regions and directions tailored to user interests.
    • 使用标准多边形捕获复杂区域的基于位置的通知(例如,地理围栏)的架构。 应用于地理围栏,它将地理围栏扩展到仅仅是虚拟边界(围栏)区域的表征之外。 更具体地说,该体系结构考虑了地理和人口特征,例如道路和街道的布局,运输的可用类型(例如,汽车,公共汽车,步行,骑车等),交通状况和 兴趣点(POI)的动态属性,如开放时间,总等待时间等。更具体地说,该架构使得能够基于POI属性对多边形地理围栏进行动态修改,基于道路的多边形地理围栏的动态修改 /街道布局,基于交通工具的多边形地理围栏的动态修改,基于交通条件的多边形地理围栏的动态修改,基于用户状态的多边形地理围栏的动态修改,以及根据用户状态的区域和方向的动态重新计算 用户兴趣
    • 3. 发明申请
    • ASYMMETRIC DYNAMIC GEO-FENCING
    • 不对称动态地球动力学
    • US20120310527A1
    • 2012-12-06
    • US13118495
    • 2011-05-30
    • Eran YarivVadim V.K. KuperBrian C. Beckman
    • Eran YarivVadim V.K. KuperBrian C. Beckman
    • G01C21/00G08B1/08
    • G01C21/3679H04W4/021
    • Architecture that enables location based notifications (e.g., geo-fences) using standard polygons the capture of complex regions. As applied to geo-fencing, it extends geo-fencing beyond the mere representation of the virtual perimeter (fenced) area. More specifically, the architecture takes into consideration geographical and demographical features, such as the layout of the roads and streets, the types of available of transportation (e.g., car, bus, walk, biking, etc.), the traffic conditions, and the dynamic properties of a point of interest (POI) such as opening hours, total wait time, etc. More specifically, the architecture enables the dynamic modification of polygon geo-fence based on POI properties, dynamic modification of polygon geo-fence based on road/street layout, dynamic modification of polygon geo-fence based on means of transportation, dynamic modification of polygon geo-fence based on traffic conditions, dynamic modification of polygon geo-fence based on user's state, and dynamic recalculation of regions and directions tailored to user interests.
    • 使用标准多边形捕获复杂区域的基于位置的通知(例如,地理围栏)的架构。 应用于地理围栏,它将地理围栏扩展到仅仅是虚拟边界(围栏)区域的表征之外。 更具体地说,该体系结构考虑了地理和人口特征,例如道路和街道的布局,运输的可用类型(例如,汽车,公共汽车,步行,骑车等),交通状况和 兴趣点(POI)的动态属性,如开放时间,总等待时间等。更具体地说,该架构使得能够基于POI属性对多边形地理围栏进行动态修改,基于道路的多边形地理围栏的动态修改 /街道布局,基于交通工具的多边形地理围栏的动态修改,基于交通条件的多边形地理围栏的动态修改,基于用户状态的多边形地理围栏的动态修改,以及根据用户状态的区域和方向的动态重新计算 用户兴趣
    • 6. 发明授权
    • Implicit iteration of keyed array symbol
    • 键控数组符号的隐式迭代
    • US08453114B2
    • 2013-05-28
    • US12344216
    • 2008-12-24
    • Brian C. BeckmanVijay MitalDarryl E. Rubin
    • Brian C. BeckmanVijay MitalDarryl E. Rubin
    • G06F9/44
    • G06F17/30333G06F9/44G06F17/30958
    • The use of a data structure that is a symbolic representation of a keyed array that has an array variable and an associated key variable. There is a correlation maintained between the variable type of the array variable and the corresponding keying set that is to be bound to the associated key variable. The keyed array may remain unbound thereby being simply symbolically represented, or the keying set may be bound to the key variable more immediately. In one embodiment, once the keying set is bound to the key variable, data may be bound to the array variable itself. This may be repeated for multiple keyed arrays. The data from multiple keyed arrays may be operated upon to about another array of values, which may then be aggregated in some way.
    • 使用数据结构,它是具有数组变量和关联键变量的键控数组的符号表示。 在数组变量的变量类型和要绑定到关联的键变量的对应的键集之间存在相关性。 键控阵列可以保持未绑定,从而被简单地象征性地表示,或者密钥集可以更加紧密地绑定到密钥变量。 在一个实施例中,一旦密钥集合被绑定到密钥变量,数据可以被绑定到数组变量本身。 对于多个键控阵列可能会重复。 来自多个键控阵列的数据可以被操作在大约另一数值阵列上,然后可以以某种方式聚合。
    • 9. 发明申请
    • ADAPTIVE DISTRIBUTION OF THE PROCESSING OF HIGHLY INTERACTIVE APPLICATIONS
    • 高度互动应用程序的自适应分配
    • US20110246549A1
    • 2011-10-06
    • US12752961
    • 2010-04-01
    • Gary Shon KatzenbergerVijay MitalOlivier ColleBrian C. BeckmanDarryl Ellis Rubin
    • Gary Shon KatzenbergerVijay MitalOlivier ColleBrian C. BeckmanDarryl Ellis Rubin
    • G06F15/16
    • G06F9/505
    • An application defined by expressions whose execution may be dynamically distributed over multiple devices. An application defined by expressions may include a number of expressions that provide a symbolic representation of computations to be performed. The application defined by expressions may have input variables and output variables and provide a solution for the output variables using the input variables and the expressions that define the application. In providing a solution for the output variables, an expression engine may determine dependencies for the expressions to be solved and distribute the solution of some of those expressions dynamically at runtime to other devices based on the capabilities of the devices, privacy and security concerns, communications bandwidth and latency, the resources available to devices, and commercial or cost implications of where the processing is done.
    • 由表达式定义的应用程序,其执行可以在多个设备上动态分布。 由表达式定义的应用可以包括提供要执行的计算的符号表示的多个表达式。 由表达式定义的应用程序可能具有输入变量和输出变量,并使用输入变量和定义应用程序的表达式为输出变量提供解决方案。 在为输出变量提供解决方案时,表达式引擎可以确定要解决的表达式的依赖性,并且基于设备的能力,隐私和安全性关注,通信,将运行时动态地将某些表达式的解释分布到其他设备 带宽和延迟,设备可用的资源以及处理完成的商业或成本影响。