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    • 7. 发明申请
    • RECORDS BASED ON BIT-SHIFTING
    • 基于位移的记录
    • WO2016126239A1
    • 2016-08-11
    • PCT/US2015/014300
    • 2015-02-03
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, LP
    • FORMAN, George
    • G06F17/30
    • G06F17/30448G06F17/3053G06F17/30554
    • Example implementations relate to records based on bit-shifting. For example, a computing device may include at least one processor to receive a query, create a normalized query, and generate a mapping of the normalized query for each record in a set of records in a database using a state array, the mapping being based on bit-shifting of bits associated with similarities between each character in the normalized query and each character in a field of the respective record in the set of records, each successive level of the state array indicating a stronger match between the query and the respective record than an immediately prior level in the state array. The processor may calculate a score associated with each record based on the respective mapping and may provide a subset of the set of records in response to the query based on the score associated with each record.
    • 示例实现涉及基于位移的记录。 例如,计算设备可以包括至少一个处理器来接收查询,创建归一化查询,并且使用状态阵列生成数据库中的一组记录中的每个记录的归一化查询的映射,该映射基于 在归一化查询中的每个字符与记录集合中各个记录的字段中的每个字符之间的相似性相关联的比特位移动时,状态数组的每个连续级别指示查询和相应记录之间更强的匹配 比状态阵列中的紧前一级。 处理器可以基于相应的映射来计算与每个记录相关联的分数,并且可以基于与每个记录相关联的分数来响应于查询来提供该组记录的子集。
    • 8. 发明申请
    • 3D VISUALIZATION
    • 3D可视化
    • WO2016099556A1
    • 2016-06-23
    • PCT/US2014/071575
    • 2014-12-19
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, LP
    • COOK, Gregory WilliamHSIAO, Chih PinWEI, JishangVANKIPURAM, MithraCHANG, Nelson L
    • G06F3/01
    • G06F3/013G06F3/011G06F3/012G06F3/017G06F3/0304G06F3/04815G06F2203/011
    • An example system is provided in according with one implementation of the present disclosure. The system includes a 3D display displaying at least one three-dimensional (3D) visualization, an auxiliary computing device including a multi-touch display and a plurality of sensors, and a behavior analysis engine to perform a behavior analysis of a user by using data from the plurality of sensors. The behavior analysis engine is to: determine an attention engagement level of the user, and determine a pose of the user in relation to the auxiliary computing device. The system further includes an intention analysis engine to determine an intention of the user in relation to the at least one 3D visualization based on the users attention engagement level and the users pose, and an interaction mode engine to automatically adjust the system to an interaction mode based on the identified user intention.
    • 根据本公开的一个实施例提供了示例系统。 该系统包括显示至少一个三维(3D)可视化的3D显示器,包括多点触摸显示器和多个传感器的辅助计算设备,以及行为分析引擎,通过使用数据来执行用户的行为分析 从多个传感器。 行为分析引擎是:确定用户的关注度水平,并确定用户相对于辅助计算设备的姿态。 该系统还包括意图分析引擎,用于基于用户的关注度水平和用户姿势来确定与至少一个3D可视化相关的用户的意图,以及交互模式引擎,以将系统自动地调整为交互模式 基于所识别的用户意图。