APPARATUS AND METHODS FOR SYNCHRONIZING A CONTROLLER AND SENSORS
    1.
    发明申请
    APPARATUS AND METHODS FOR SYNCHRONIZING A CONTROLLER AND SENSORS 审中-公开
    用于同步控制器和传感器的装置和方法

    公开(公告)号:US20170041897A1

    公开(公告)日:2017-02-09

    申请号:US15299382

    申请日:2016-10-20

    Abstract: Disclosed are methods and apparatus for transmitting sensor timing correction messages with a host controller. The methods and apparatus determine synchronization messages that are transmitted to a sensor coupled with the host controller via an interface, where the messages indicate a beginning of a synchronization period for synchronizing timing of the host controller and the sensor. Additionally, a delay time message is determined that indicates a time delay between the beginning of the synchronization period and an actual transmission time of the synchronization message. The synchronization message is transmitted with the delay time message in an information message to the sensor, where information message is configured to allow the sensor to correct timing of a sensor timer by accounting for the delay time.

    Abstract translation: 公开了用于利用主机控制器发送传感器定时校正消息的方法和装置。 方法和装置确定经由接口传送到与主控制器耦合的传感器的同步消息,其中消息指示用于同步主机控制器和传感器的定时的同步周期的开始。 此外,确定延迟时间消息,其指示同步时段的开始和同步消息的实际发送时间之间的时间延迟。 同步消息与信息消息中的延迟时间消息一起发送到传感器,其中信息消息被配置为允许传感器通过计算延迟时间来校正传感器定时器的定时。

    Passively determining a position of a user equipment (UE)

    公开(公告)号:US11368573B1

    公开(公告)日:2022-06-21

    申请号:US17317416

    申请日:2021-05-11

    Abstract: In some aspects, a user equipment (UE) determines, using an inertial measurement unit, an orientation of the UE and determines, using ambient light sensors, an ambient light condition of the UE. The UE determines, using a machine learning module and based on the orientation and the ambient light condition, a position of the UE. If the position comprises an on-body position, the UE uses the machine learning module and touch data received by a touchscreen of the UE to determine whether the position comprises an in-hand position. If the position comprises the in-hand position, the UE determines, using the machine learning module and based on the orientation and the touch data, a grip mode. If the position comprises an off-body position, the UE determines, using the machine learning module and at least one of the inertial measurement unit or the ambient light sensors, a user presence or a user absence.

    Algorithm engine for ultra low-power processing of sensor data

    公开(公告)号:US10416750B2

    公开(公告)日:2019-09-17

    申请号:US14498510

    申请日:2014-09-26

    Abstract: Disclosed is a method and apparatus for power-efficiently processing sensor data. In one embodiment, the operations implemented include: configuring a sensor fusion engine and a peripheral controller with a general purpose processor; placing the general purpose processor into a low-power sleep mode; reading data from a sensor and storing the data into a companion memory with the peripheral controller; processing the data in the companion memory with the sensor fusion engine; and awaking the general purpose processor from the low-power sleep mode.

    System and methods of reducing energy consumption by synchronizing sensors
    9.
    发明授权
    System and methods of reducing energy consumption by synchronizing sensors 有权
    通过同步传感器降低能耗的系统和方法

    公开(公告)号:US09436214B2

    公开(公告)日:2016-09-06

    申请号:US14304699

    申请日:2014-06-13

    CPC classification number: G06F1/12 G01D21/00 G06F1/14 G06F1/329 Y02D10/24

    Abstract: Aspects of the invention are related to a method for synchronizing a first sensor clock of a first sensor. The exemplary method comprises: correcting the first sensor clock for a first time, transferring data from the first sensor, and correcting the first sensor clock for a second time, wherein a time interval between two corrections of the first sensor clock is selected such that the first sensor clock is sufficiently aligned with a processor clock of a processor over the time interval.

    Abstract translation: 本发明的方面涉及一种用于同步第一传感器的第一传感器时钟的方法。 该示例性方法包括:第一次校正第一传感器时钟,从第一传感器传送数据,并且第二次校正第一传感器时钟,其中选择第一传感器时钟的两次校正之间的时间间隔,使得 第一传感器时钟在时间间隔内与处理器的处理器时钟充分对齐。

    Persistent two-stage activity recognition

    公开(公告)号:US11927601B2

    公开(公告)日:2024-03-12

    申请号:US17463451

    申请日:2021-08-31

    CPC classification number: G01P13/00

    Abstract: A method for energy-efficient state change detection and classification of streaming sequential data includes receiving via a first prediction model, sequential data from a sensor. The first prediction model determines a change in an activity state based on the sequential data. An indication that the activity state has changed is transmitted to a second prediction. The second prediction model determines an updated activity state based on the sequential data. The updated activity state is sent to the first prediction model, after which the second prediction enters an inactive state.

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