VARIABLE RATE ADAPTIVE ACTIVE NOISE CANCELLATION
    1.
    发明申请
    VARIABLE RATE ADAPTIVE ACTIVE NOISE CANCELLATION 审中-公开
    可变速率自适应主动噪声消除

    公开(公告)号:WO2016069201A1

    公开(公告)日:2016-05-06

    申请号:PCT/US2015/053679

    申请日:2015-10-02

    Abstract: A method of audio signal processing includes determining a difference between a first set of filter parameters of a first input frame of an active noise cancellation (ANC) filter and a second set of filter parameters of a second input frame of the ANC filter. The method further includes selectively modifying a duty cycle of adaptive ANC processing associated with the ANC filter based on the difference between the first set of filter parameters and the second set of filter parameters.

    Abstract translation: 音频信号处理的方法包括确定有源噪声消除(ANC)滤波器的第一输入帧的第一组滤波器参数与ANC滤波器的第二输入帧的第二组滤波器参数之间的差。 该方法还包括基于第一组滤波器参数和第二组滤波器参数之间的差异选择性地修改与ANC滤波器相关联的自适应ANC处理的占空比。

    POWER OPTIMIZATIONS FOR CHALLENGING WAN SERVICE CONDITIONS

    公开(公告)号:EP2974474B1

    公开(公告)日:2018-10-10

    申请号:EP14726022.8

    申请日:2014-03-13

    Abstract: A method for a tracking device optimizing power to remain reachable for a desired period based on evaluated wide-area-network conditions. The tracking device may communicate via a power-intensive long-range transceiver and may continually measure service conditions related to network communications. The tracking device may periodically calculate statistical information describing the service conditions, such as a percentage of time in which the tracking device was out-of-network-service. Based on the statistics, the tracking device may operate in an optimization mode to conserve power when out-of-network-service. In an embodiment, the tracking device may calculate the statistics based on evaluation periods defined by predefined numbers of out-of-network-service occurrences, predefined time periods, and/or a hybrid of both. In an embodiment, the tracking device may conserve power in a power save state that alternates with another operating state in which the tracking device periodically evaluates criteria before either continuing to conserve power or utilize network resources.

    VARIABLE RATE ADAPTIVE ACTIVE NOISE CANCELLATION
    4.
    发明公开
    VARIABLE RATE ADAPTIVE ACTIVE NOISE CANCELLATION 审中-公开
    可变速率自适应有源噪声消除

    公开(公告)号:EP3213321A1

    公开(公告)日:2017-09-06

    申请号:EP15781828.7

    申请日:2015-10-02

    Abstract: A method of audio signal processing includes determining a difference between a first set of filter parameters of a first input frame of an active noise cancellation (ANC) filter and a second set of filter parameters of a second input frame of the ANC filter. The method further includes selectively modifying a duty cycle of adaptive ANC processing associated with the ANC filter based on the difference between the first set of filter parameters and the second set of filter parameters.

    Abstract translation: 音频信号处理的方法包括确定主动噪声消除(ANC)滤波器的第一输入帧的第一组滤波器参数与ANC滤波器的第二输入帧的第二组滤波器参数之间的差。 该方法还包括基于第一组滤波器参数和第二组滤波器参数之间的差有选择地修改与ANC滤波器相关联的自适应ANC处理的占空比。

    POWER OPTIMIZATIONS FOR CHALLENGING WAN SERVICE CONDITIONS
    5.
    发明公开
    POWER OPTIMIZATIONS FOR CHALLENGING WAN SERVICE CONDITIONS 审中-公开
    性能优化广域网难的工作条件

    公开(公告)号:EP2974474A1

    公开(公告)日:2016-01-20

    申请号:EP14726022.8

    申请日:2014-03-13

    Abstract: A method for a tracking device optimizing power to remain reachable for a desired period based on evaluated wide-area-network conditions. The tracking device may communicate via a power-intensive long-range transceiver and may continually measure service conditions related to network communications. The tracking device may periodically calculate statistical information describing the service conditions, such as a percentage of time in which the tracking device was out-of-network-service. Based on the statistics, the tracking device may operate in an optimization mode to conserve power when out-of-network-service. In an embodiment, the tracking device may calculate the statistics based on evaluation periods defined by predefined numbers of out-of-network-service occurrences, predefined time periods, and/or a hybrid of both. In an embodiment, the tracking device may conserve power in a power save state that alternates with another operating state in which the tracking device periodically evaluates criteria before either continuing to conserve power or utilize network resources.

    POWER OPTIMIZATIONS FOR CHALLENGING WAN SERVICE CONDITIONS
    6.
    发明申请
    POWER OPTIMIZATIONS FOR CHALLENGING WAN SERVICE CONDITIONS 审中-公开
    改善WAN服务条件的功率优化

    公开(公告)号:WO2014151527A1

    公开(公告)日:2014-09-25

    申请号:PCT/US2014/025927

    申请日:2014-03-13

    Abstract: A method for a tracking device optimizing power to remain reachable for a desired period based on evaluated wide-area-network conditions. The tracking device may communicate via a power-intensive long-range transceiver and may continually measure service conditions related to network communications. The tracking device may periodically calculate statistical information describing the service conditions, such as a percentage of time in which the tracking device was out-of-network-service. Based on the statistics, the tracking device may operate in an optimization mode to conserve power when out-of-network-service. In an embodiment, the tracking device may calculate the statistics based on evaluation periods defined by predefined numbers of out-of-network-service occurrences, predefined time periods, and/or a hybrid of both. In an embodiment, the tracking device may conserve power in a power save state that alternates with another operating state in which the tracking device periodically evaluates criteria before either continuing to conserve power or utilize network resources.

    Abstract translation: 一种跟踪装置的方法,其基于评估的广域网状况,优化功率以保持期望期望。 跟踪设备可以经由功率密集型远程收发器进行通信,并且可以连续地测量与网络通信相关的服务条件。 跟踪装置可以周期性地计算描述服务条件的统计信息,例如跟踪装置在网络外服务之外的时间百分比。 基于统计,跟踪设备可以在优化模式下操作以在网络外服务时节省功率。 在一个实施例中,跟踪设备可以基于由预定义数量的网络外服务事件,预定时间段和/或两者的混合来定义的评估周期来计算统计。 在一个实施例中,跟踪设备可节省与另一操作状态交替的省电状态下的功率,其中跟踪设备在继续节省功率或利用网络资源之前周期性地评估标准。

    LOW ENERGY SIGNALING SCHEME FOR BEACON FENCING APPLICATIONS
    7.
    发明申请
    LOW ENERGY SIGNALING SCHEME FOR BEACON FENCING APPLICATIONS 审中-公开
    BEACON FENCING应用的低能量信号方案

    公开(公告)号:WO2014151516A1

    公开(公告)日:2014-09-25

    申请号:PCT/US2014/025894

    申请日:2014-03-13

    Abstract: Systems, methods, and devices of the various embodiments provide modified frequency hopping patterns that enable synchronization of a wireless tracking device with a beacon signal that defines a predetermined area (i.e., beacon fence). In an embodiment, a beacon may transmit a beacon signal according to a modified frequency hopping pattern and a wireless tracking device may receive the beacon signal by tuning a receiver according to the frequency hopping pattern. In an embodiment, the modified frequency hopping pattern may include a reference frequency generated at a high redundancy pattern multiplexed with a pseudo random sequence of frequencies. In an embodiment, the packets of the beacon signal transmitted at the reference frequency may include an indication of the next frequency according to the modified frequency hopping pattern.

    Abstract translation: 各种实施例的系统,方法和设备提供修改的跳频模式,其使无线跟踪设备能够与定义预定区域(即,信标屏障)的信标信号同步。 在一个实施例中,信标可以根据修改的跳频模式发送信标信号,并且无线跟踪设备可以通过根据跳频模式调谐接收机来接收信标信号。 在一个实施例中,修改的跳频图案可以包括以与伪随机的频率序列复用的高冗余模式生成的参考频率。 在一个实施例中,以参考频率发送的信标信号的分组可以包括根据修改的跳频模式的下一个频率的指示。

    ENERGY CONSERVATION APPARATUS FOR GEOFENCE APPLICATIONS
    8.
    发明申请
    ENERGY CONSERVATION APPARATUS FOR GEOFENCE APPLICATIONS 审中-公开
    用于GEOFENCE应用的能源保护装置

    公开(公告)号:WO2014144323A1

    公开(公告)日:2014-09-18

    申请号:PCT/US2014/028680

    申请日:2014-03-14

    Abstract: Methods, systems and devices are provided for operating a GPS engine in an active geofence monitoring state for no more than a first QoS period to obtain a first GPS fix. The GPS engine may also be set to operate in the active geofence monitoring state for no more than a second lower QoS period to obtain a second GPS fix in response to determining the first GPS fix was not obtained. The method may determine whether a geofence breach is detected in response to determining the GPS engine obtained the first GPS fix. The GPS engine may be set to operate in the active geofence monitoring state for no more than the second QoS period to obtain the second GPS fix in response to determining the geofence breach is not detected. The GPS engine may thus operate in the active geofence monitoring state to obtain the second GPS fix.

    Abstract translation: 提供方法,系统和设备用于在主动地理围栏监视状态下操作不超过第一QoS周期的GPS引擎以获得第一GPS定位。 响应于确定未获得第一GPS定位,也可以将GPS引擎设置为在主动地理围栏监视状态中操作不超过第二较低QoS周期以获得第二GPS定位。 该方法可以响应于确定获得第一GPS定位的GPS引擎来确定是否检测到地理围栏泄漏。 可以将GPS引擎设置为在主动地理围栏监视状态下操作不超过第二QoS周期以响应于确定未检测到地理围栏违规而获得第二GPS定位。 因此,GPS引擎可以在主动地理围栏监控状态下操作以获得第二GPS定位。

    ENERGY CONSERVATION APPARATUS FOR GEOFENCE APPLICATIONS
    10.
    发明公开
    ENERGY CONSERVATION APPARATUS FOR GEOFENCE APPLICATIONS 审中-公开
    ENERGIEEINSPARUNGSVORRICHTUNGFÜRGEOFENCE-ANWENDUNGEN

    公开(公告)号:EP2972490A1

    公开(公告)日:2016-01-20

    申请号:EP14716502.1

    申请日:2014-03-14

    Abstract: Methods, systems and devices are provided for operating a GPS engine in an active geofence monitoring state for no more than a first QoS period to obtain a first GPS fix. The GPS engine may also be set to operate in the active geofence monitoring state for no more than a second lower QoS period to obtain a second GPS fix in response to determining the first GPS fix was not obtained. The method may determine whether a geofence breach is detected in response to determining the GPS engine obtained the first GPS fix. The GPS engine may be set to operate in the active geofence monitoring state for no more than the second QoS period to obtain the second GPS fix in response to determining the geofence breach is not detected. The GPS engine may thus operate in the active geofence monitoring state to obtain the second GPS fix.

    Abstract translation: 提供方法,系统和设备用于在主动地理围栏监视状态下操作不超过第一QoS周期的GPS引擎以获得第一GPS定位。 也可以将GPS引擎设置为在主动地理围栏监视状态下操作不超过第二较低QoS周期,以响应于确定未获得第一GPS定位而获得第二GPS定位。 响应于确定GPS引擎获得第一GPS定位,该方法可以确定是否检测到地理围栏破裂。 响应于确定未检测到地理围栏违规,可以将GPS引擎设置为在主动地理围栏监视状态下操作不超过第二QoS周期以获得第二GPS定位。 因此,GPS引擎可以在主动地理围栏监控状态下操作以获得第二GPS定位。

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