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    • 3. 发明申请
    • REMOTE INITIATION OF TASKS ON IDLE WIRELESS COMPUTING DEVICES
    • 空闲无线计算设备上远程启动任务
    • WO2017055382A1
    • 2017-04-06
    • PCT/EP2016/073163
    • 2016-09-29
    • KONINKLIJKE PHILIPS N.V.
    • VAN DEN DUNGEN, Wilhelmus, Andreas, Marinus, Arnoldus, Maria
    • H04W52/02
    • H04W52/0229Y02D70/00Y02D70/1242Y02D70/1262Y02D70/142Y02D70/144Y02D70/164Y02D70/26
    • In various embodiments, a wireless computing device (102, 202, 302) for monitoring a person (100) may include: a processor (230); one or more sensors (236) operably coupled with the processor; and one or more radio antennas (232) operably coupled with the processor. The processor may be configured to transition the wireless computing device between at least an idle state and an active state, and to receive, from a remote computing device (112, 212, 312) via the one or more radio antennas while the wireless computing device is in the idle state, via control plane signaling, a request for one or more data points pertaining to a context of the person. One or more sensor signals may then be obtained from the one or more sensors. The requested one or more data points may be generated based on the one or more sensor signals and provided to the remote computing device via the one or more radio antennas.
    • 在各种实施例中,用于监视人(100)的无线计算设备(102,202,302)可以包括:处理器(230); 与所述处理器可操作地耦合的一个或多个传感器(236) 以及与所述处理器可操作地耦合的一个或多个无线电天线(232)。 处理器可以被配置为在至少空闲状态和活动状态之间转换无线计算设备,并且经由一个或多个无线电天线从远程计算设备(112,212,312)接收无线计算设备 通过控制平面信号处于空闲状态,请求与人的上下文有关的一个或多个数据点。 然后可以从一个或多个传感器获得一个或多个传感器信号。 可以基于一个或多个传感器信号生成所请求的一个或多个数据点,并经由一个或多个无线电天线提供给远程计算设备。
    • 7. 发明申请
    • GEO-FENCING BASED ON MULTIPLE SIGNALS AND CONFIGURATION
    • 基于多个信号和配置的GEO-FENCING
    • WO2017207572A1
    • 2017-12-07
    • PCT/EP2017/063041
    • 2017-05-30
    • KONINKLIJKE PHILIPS N.V.
    • VAN DEN DUNGEN, Wilhelmus, Andreas, Marinus, Arnoldus, MariaLEDINGHAM, StephenRUSS, TomasBOX, Wilhelmus, Josephus
    • H04W4/02G01S7/40
    • A geo-fencing system (102) includes a base device (104) configured to create a virtual fence (108) around the base devise that bounds a safe zone (110). The geo-fencing system further includes a wearable device (106) initially located within the safe zone. The geo-fencing system further includes a processor configured to execute a dynamic adaptive control algorithm that computes at least one operating parameter for at least one of the base device and the wearable device based on a dynamic and adaptive combination of different signals indicative of distance measurements between the wearable device and the base device computed by the at least one of the base device and the wearable device. The processor conveys the at least one operating parameter to the at least one of the base device and the wearable device, which employs the at least one operating parameter for operation and determination of subsequent distance measurements.
    • 地理围栏系统(102)包括被配置为在围绕安全地带(110)的基础设施周围创建虚拟围栏(108)的基础设备(104)。 地理围栏系统还包括最初位于安全地带内的可穿戴设备(106)。 地理围栏系统还包括处理器,该处理器被配置为执行动态自适应控制算法,该动态自适应控制算法基于指示距离测量的不同信号的动态和自适应组合计算用于基础设备和可穿戴设备中的至少一个的至少一个操作参数 在由所述基础设备和所述可穿戴设备中的所述至少一个计算的所述可穿戴设备和所述基础设备之间。 处理器将至少一个操作参数传送给基础设备和可穿戴设备中的至少一个,该至少一个操作参数采用至少一个操作参数用于后续距离测量的操作和确定。
    • 8. 发明申请
    • MOTION DETECTION DEVICE AND CORRESPONDING METHOD
    • 运动检测装置及相应方法
    • WO2017046080A1
    • 2017-03-23
    • PCT/EP2016/071543
    • 2016-09-13
    • KONINKLIJKE PHILIPS N.V.
    • KECHICHIAN, PatrickTEN KATE, Warner, Rudolph, TheophileVAN DEN DUNGEN, Wilhelmus, Andreas, Marinus, Arnoldus, Maria
    • G08B21/04
    • G01V3/00A61B5/1117G06F1/163G08B21/0446
    • The present disclosure relates to a wearable motion detection device (12) configured for detecting body-to-ground proximity, and to a related method. The motion detection device (12) comprising a capacitance detection unit (70) arranged to detect body-to-ground capacitance, the capacitance detection unit (70) comprising a first electrode (30) arranged to contact a body portion (16) of a monitored subject, when the device (12) is worn, a second electrode (32) that is arranged separately from but operatively connected with the first electrode (30), a shield electrode (34) that is arranged to shield the second electrode (32) from the first electrode (30), the device (12) further comprising a control unit (74) arranged to determine, under consideration of a body-to-ground capacitance signal provided by the capacitance detection unit (70), whether a fall event occurs. The present disclosure further relates to a corresponding computer program for implementing a motion detection method.
    • 本公开涉及一种被配置为检测身体对地面接近度的可佩戴运动检测装置(12)以及相关方法。 运动检测装置(12)包括被布置成检测体对地电容的电容检测单元(70),该电容检测单元(70)包括第一电极(30),其布置成接触 当所述装置(12)被磨损时,与所述第一电极(30)分开设置但可操作地连接的第二电极(32),被配置为屏蔽所述第二电极(32)的屏蔽电极 ),所述装置(12)还包括控制单元(74),所述控制单元(74)被布置成在考虑由所述电容检测单元(70)提供的体对地电容信号时确定是否下降 事件发生。 本公开还涉及用于实现运动检测方法的对应的计算机程序。