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    • 4. 发明授权
    • Controlling intensity of a light through qualified motion sensing
    • 通过合格的运动感应来控制光的强度
    • US08461778B2
    • 2013-06-11
    • US12943199
    • 2010-11-10
    • Tanuj MohanPremal Ashar
    • Tanuj MohanPremal Ashar
    • H05B41/36
    • H05B37/0227F24F11/30F24F2120/10H05B37/0218H05B37/0281Y02B20/42Y02B20/46
    • Methods and apparatuses for controlling light intensity of a light through motion sensing are disclosed. One method includes sensing a first instance of motion. The light is activated only if consecutive instances of motion are sensed, wherein each instance is sensed within a gap of time of a previously sensed instance of motion, and the consecutive instances of motion being sensed span an entire window of time after sensing the first instance of motion. One apparatus includes a motion sensor for sensing a first instance of motion. The apparatus further includes a controller interfaced to the motion sensor and the light, the controller operative to activate the light only if consecutive instances of motion are sensed, wherein each instance is sensed within a gap of time of a previously sensed instance of motion, and the consecutive instances of motion being sensed span an entire window of time after sensing the first instance of motion.
    • 公开了通过运动检测来控制光的光强度的方法和装置。 一种方法包括感测第一运动实例。 仅当感测到运动的连续实例时才激活光,其中每个实例在先前感测到的运动实例的时间间隔内被感测,并且感测到的运动的连续实例跨越整个感觉第一实例的时间窗口 的运动。 一种装置包括用于感测第一运动实例的运动传感器。 该装置还包括与运动传感器和光接口连接的控制器,所述控制器仅在感测到运动的连续实例时激活光,其中每个实例在先前感测到的运动实例的时间间隙内被感测,以及 感测运动的连续实例在感测到第一运动实例之后跨越整个时间窗口。
    • 6. 发明申请
    • Lighting Control With Automatic and Bypass Modes
    • 具有自动和旁路模式的照明控制
    • US20120229049A1
    • 2012-09-13
    • US13043745
    • 2011-03-09
    • Tanuj MohanPremal AsharLoharasp M. NasarbadiDavid Perkins
    • Tanuj MohanPremal AsharLoharasp M. NasarbadiDavid Perkins
    • H05B37/02
    • H05B37/0245
    • Methods, systems and apparatuses for controlling a light through an automatic mode and a bypass mode are disclosed. One method includes receiving physical signaling. Detection of a predetermined sequence of the physical signaling is used to determine whether to control the light in the automatic mode or the bypass mode. The automatic mode provides network control of the light, and the bypass mode bypasses the network control of the light. One lighting system includes a light, a sensor for receiving and sensing the physical signaling, and a controller detecting a predetermined sequence of the physical signaling. Detection of a predetermined sequence of the physical signaling is used to determine whether to control the light in the automatic mode or the bypass mode. The automatic mode provides network control of the light, and the bypass mode bypasses the network control of the light.
    • 公开了用于通过自动模式和旁路模式控制光的方法,系统和装置。 一种方法包括接收物理信令。 使用物理信令的预定序列的检测来确定是否控制自动模式或旁路模式中的光。 自动模式提供光的网络控制,旁路模式绕过光的网络控制。 一个照明系统包括光,用于接收和感测物理信令的传感器,以及检测物理信号的预定序列的控制器。 使用物理信令的预定序列的检测来确定是否控制自动模式或旁路模式中的光。 自动模式提供光的网络控制,旁路模式绕过光的网络控制。
    • 9. 发明授权
    • Distributed lighting control
    • 分布式照明控制
    • US09006996B2
    • 2015-04-14
    • US13556442
    • 2012-07-24
    • Tanuj MohanPremal AsharDavid Perkins
    • Tanuj MohanPremal AsharDavid Perkins
    • H05B37/02
    • H05B37/0227H05B37/0218H05B37/0245Y02B20/46
    • Apparatuses, methods and systems for controlling a luminaire are disclosed. One embodiment includes a lighting control sub-system. The lighting control sub-system includes a luminaire, a controller coupled to the luminaire, and a sensor coupled to the controller. The sensor generates a sensed input. The lighting control sub-system further includes a communication interface, wherein the communication interface couples the controller to an external device. The controller is operative to control a light output of the luminaire based at least in part on the sensed input, and to communicate at least one of state or sensed information to the external device.
    • 公开了用于控制照明器具的装置,方法和系统。 一个实施例包括照明控制子系统。 照明控制子系统包括照明器,耦合到照明器的控制器和耦合到控制器的传感器。 传感器产生感测输入。 照明控制子系统还包括通信接口,其中通信接口将控制器耦合到外部设备。 控制器可操作以至少部分地基于感测到的输入来控制照明器的光输出,并且将状态或感测信息中的至少一个传送到外部设备。