Collaborative healthcare
    2.
    发明授权

    公开(公告)号:US10902950B2

    公开(公告)日:2021-01-26

    申请号:US14012658

    申请日:2013-08-28

    Abstract: According to an example, collaborative healthcare may include retrieving healthcare data for a patient from at least one data source, and generating a plurality of distinct healthcare programs for the patient based on the healthcare data. Collaborative healthcare may further include reconciling the plurality of distinct healthcare programs to generate a universal patient healthcare plan for the patient. The universal patient healthcare plan may include a universal view of the overall healthcare for the patient and healthcare provider-specific views for the patient. The reconciling may include detecting conflicts for predetermined components of the healthcare programs, and in response to the detection of the conflicts, eliminating errors related to the detected conflicts.

    Unmanned vehicle (UV) control system
    4.
    发明授权
    Unmanned vehicle (UV) control system 有权
    无人驾驶车辆(UV)控制系统

    公开(公告)号:US09567077B2

    公开(公告)日:2017-02-14

    申请号:US14619854

    申请日:2015-02-11

    Abstract: Unmanned vehicle (UV) control may include receiving a UV work order and generating a mission request based on the UV work order. The mission request may identify an objective of a mission, assign a UV and a sensor to the mission from a fleet of UVs and sensors, and assign a first movement plan to the mission based on the identified objective of the mission. The assigned UV may be controlled according to the assigned first movement plan, and communication data may be received from the assigned sensor. The communication data may be analyzed to identify an event related to the mission. The identified event and the first movement plan may be analyzed to assign a second movement plan to the mission based on the analysis of the identified event and the first movement plan to meet the identified objective of the mission.

    Abstract translation: 无人驾驶车辆(UV)控制可以包括接收UV工作命令并基于UV工作命令生成任务请求。 任务要求可以确定一个任务的目标,从一个紫外线和传感器队伍的任务中分配一个紫外线和一个传感器,并根据任务的确定目标,向任务分配一个第一个移动计划。 可以根据所分配的第一移动计划来控制分配的UV,并且可以从分配的传感器接收通信数据。 可以分析通信数据以识别与任务相关的事件。 可以分析所识别的事件和第一移动计划,以基于对所识别的事件和第一移动计划的分析来向该任务分配第二移动计划,以满足所确定的任务的目标。

    COLLABORATIVE HEALTHCARE
    6.
    发明申请
    COLLABORATIVE HEALTHCARE 审中-公开
    协同健康

    公开(公告)号:US20140303988A1

    公开(公告)日:2014-10-09

    申请号:US14012658

    申请日:2013-08-28

    CPC classification number: G16H50/20

    Abstract: According to an example, collaborative healthcare may include retrieving healthcare data for a patient from at least one data source, and generating a plurality of distinct healthcare programs for the patient based on the healthcare data. Collaborative healthcare may further include reconciling the plurality of distinct healthcare programs to generate a universal patient healthcare plan for the patient. The universal patient healthcare plan may include a universal view of the overall healthcare for the patient and healthcare provider-specific views for the patient. The reconciling may include detecting conflicts for predetermined components of the healthcare programs, and in response to the detection of the conflicts, eliminating errors related to the detected conflicts.

    Abstract translation: 根据一个示例,协作医疗保健可以包括从至少一个数据源检索患者的保健数据,以及基于保健数据为患者生成多个不同的保健程序。 协作医疗保健可以进一步包括协调多个不同的保健程序以产生患者的通用患者保健计划。 普遍的患者医疗保健计划可能包括对患者的总体医疗保健和医疗服务提供者针对患者的具体观点的普遍观点。 协调可以包括检测保健程序的预定组件的冲突,并且响应于检测到冲突,消除与检测到的冲突相关的错误。

    Self-adaptive device intelligence as a service enterprise infrastructure for sensor-rich environments

    公开(公告)号:US10754328B2

    公开(公告)日:2020-08-25

    申请号:US14844286

    申请日:2015-09-03

    Abstract: A device intelligence architecture configures and controls on-site devices and performs environment monitoring to facilitate effective device functionality. The architecture facilitates efficient use of devices (e.g., robotics) in an unstructured and dynamic environment, which will allow deployments in many more environments than is currently possible. The architecture stores and shares information between segregated devices to avoid the silo effect of vendor specific stacks. The architecture also models capabilities of devices and maps actions to intelligence packages to deploy a specific intelligence package to the device. The architecture also implements distributed processing. For instance, computationally intensive tasks may be offloaded to the back end processing, with action updates resulting from the processing pushed to the devices.

    Unmanned vehicle (UV) control system

    公开(公告)号:US10031529B2

    公开(公告)日:2018-07-24

    申请号:US15394359

    申请日:2016-12-29

    Abstract: Unmanned vehicle (UV) control may include receiving a UV work order and generating a mission request based on the UV work order. The mission request may identify an objective of a mission, assign a UV and a sensor to the mission from a fleet of UVs and sensors, and assign a first movement plan to the mission based on the identified objective of the mission. The assigned UV may be controlled according to the assigned first movement plan, and communication data may be received from the assigned sensor. The communication data may be analyzed to identify an event related to the mission. The identified event and the first movement plan may be analyzed to assign a second movement plan to the mission based on the analysis of the identified event and the first movement plan to meet the identified objective of the mission.

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