SENSOR CALIBRATION
    12.
    发明公开
    SENSOR CALIBRATION 审中-公开

    公开(公告)号:US20230266147A1

    公开(公告)日:2023-08-24

    申请号:US17675725

    申请日:2022-02-18

    CPC classification number: G01C25/00 G01P21/00

    Abstract: Systems and techniques are described herein. For example, a process can include obtaining first sensor measurement data associated with a and second sensor measurement from one or more sensors. In some cases, the first measurement data can be associated with a first time and the second sensor measurement data can be associated with a second time occurring after the first time. In some aspects, the process includes determining that the first sensor measurement data and the second sensor measurement data satisfy at least one batching condition. In some examples, the process includes, based on determining that the first sensor measurement data and the second sensor measurement data satisfy the at least one batching condition, generating a sensor measurement data batch including the first sensor measurement data, the second sensor measurement data, and at least one target sensor measurement data. Ins examples the process includes outputting the sensor measurement data batch.

    MOTION DIRECTION DETERMINATION AND APPLICATION
    13.
    发明申请
    MOTION DIRECTION DETERMINATION AND APPLICATION 审中-公开
    运动方向确定和应用

    公开(公告)号:US20150316577A1

    公开(公告)日:2015-11-05

    申请号:US14268973

    申请日:2014-05-02

    Abstract: This disclosure provides devices, computer programs and methods for determining a motion direction. In one aspect, a mobile device includes sensors for measuring acceleration data. The mobile device also includes a processor and memory that implement a plurality of motion direction estimation modules for calculating a plurality of respective motion directions. Each of the motion direction estimation modules uses a respective set of parameters and calculates the respective motion direction based on the acceleration data and the respective set of parameters. The modules also include a plurality of reliability metric computation modules for determining a plurality of respective reliability metrics for the respective estimated motion directions. The modules also include a selection module for identifying the reliability metric that indicates the greatest reliability, identifying the corresponding motion direction, and generating a resultant motion direction. In some implementations, the selection module selects the identified motion direction as the resultant motion direction.

    Abstract translation: 本公开提供了用于确定运动方向的装置,计算机程序和方法。 一方面,移动设备包括用于测量加速度数据的传感器。 移动设备还包括处理器和存储器,其实现用于计算多个相应运动方向的多个运动方向估计模块。 每个运动方向估计模块使用相应的参数集合,并且基于加速度数据和相应的参数集计算相应的运动方向。 模块还包括多个可靠性度量计算模块,用于确定各个估计的运动方向的多个相应的可靠性度量。 模块还包括用于识别指示最大可靠性的可靠性度量的选择模块,识别相应的运动方向,以及生成合成运动方向。 在一些实现中,选择模块选择所识别的运动方向作为合成运动方向。

    SENSOR AUTO-CALIBRATION
    14.
    发明申请
    SENSOR AUTO-CALIBRATION 有权
    传感器自动校准

    公开(公告)号:US20130124126A1

    公开(公告)日:2013-05-16

    申请号:US13673950

    申请日:2012-11-09

    Abstract: Aspects of the disclosure relate to computing technologies. In particular, aspects of the disclosure relate to mobile computing device technologies, such as systems, methods, apparatuses, and computer-readable media for scheduling an execution of a task, such as a non-real time, non-latency sensitive background task on a computing device. In one implementation, the technique includes detecting a first state of a device, wherein the first state of the device is associated with a first power level and a first task, wherein the first power level is at least partially based on power consumption of a first task, determining that the first power level associated with the first state is above a threshold, and in response to determining that the first power level associated with the first state is above the threshold, and scheduling an execution of a second task on the device, wherein the second task is associated with automatically collecting of calibration data using at least one sensor.

    Abstract translation: 本公开的方面涉及计算技术。 特别地,本公开的方面涉及移动计算设备技术,例如用于调度任务的执行的系统,方法,设备和计算机可读介质,诸如非实时非延迟敏感的后台任务 计算设备。 在一个实现中,该技术包括检测设备的第一状态,其中设备的第一状态与第一功率电平和第一任务相关联,其中第一功率电平至少部分地基于第一功率电平的功率消耗 确定与第一状态相关联的第一功率电平高于阈值,并且响应于确定与第一状态相关联的第一功率电平高于阈值,并且调度设备上的第二任务的执行, 其中所述第二任务与使用至少一个传感器自动收集校准数据相关联。

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