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    • 4. 发明申请
    • REDUCED POWER CONSUMPTION SENSOR DEVICE AND ILLUMINATION SYSTEM COMPRISING SUCH A SENSOR DEVICE
    • 减少功率消耗传感器装置和包含这种传感器装置的照明系统
    • US20110074225A1
    • 2011-03-31
    • US12995226
    • 2009-06-04
    • Roger Peter Anna DelnoijWillem Franke Pasveer
    • Roger Peter Anna DelnoijWillem Franke Pasveer
    • H01H35/00
    • H05B37/0227H05B37/0272Y10T307/766Y10T307/773
    • The invention relates to a wireless sensor device configured for sensing motion of an object in an area. The device comprises a motion sensor configured for generating a sensing signal when sensing motion in the area and a signal processor configured for processing the sensing signal. A power supply is provided for providing power to the motion sensor. Furthermore, the wireless sensor device comprises a controller configured for distinguishing, from the sensing signal, large object movements and small object movements of the object in the area. The wireless sensor device is configured to perform one or more power consumption reduction operations upon detection of large object movement. The power consumption reduction operations include temporarily disconnecting the motion sensor from the power supply and decreasing a duty cycle of the signal processor.
    • 本发明涉及一种无线传感器装置,其被配置为感测一个区域中的物体的运动。 该装置包括运动传感器,其构造成当感测该区域中的运动时产生感测信号,以及配置用于处理感测信号的信号处理器。 提供用于向运动传感器提供电力的电源。 此外,无线传感器装置包括控制器,该控制器被配置用于从感测信号区分物体在该区域中的大的物体运动和小的物体运动。 无线传感器装置被配置为在检测到大的物体运动时执行一个或多个功耗降低操作。 功耗降低操作包括暂时断开运动传感器与电源的连接,并降低信号处理器的占空比。
    • 9. 发明申请
    • LUMINESCENT-OLED LIGHT COLLECTOR SIGNAGE PANEL
    • LUMINESCENT-OLED光收集器信号面板
    • US20130291413A1
    • 2013-11-07
    • US13977900
    • 2012-01-02
    • Herbert LifkaWillem Franke PasveerDirk Kornelis Gerhardus De Boer
    • Herbert LifkaWillem Franke PasveerDirk Kornelis Gerhardus De Boer
    • G09F13/20F21V9/00
    • G09F13/20F21V9/00G09F13/22G09F2013/225Y02E10/52
    • The invention provides a light collector (1) comprising a luminescent material element (20), a discontinuous semi-transparent layer (40) adjacent to a first side of the luminescent material element (20), wherein due to the discontinuity of the semi-transparent layer (40) at least one first portion (21) of the luminescent material element covered by the semi-transparent layer and at least one second portion (21) of the luminescent material element not covered by the semi-transparent layer (40) are formed, and a light generating means (10) arranged at a second side of the luminescent material element (20). Further, a method for concentrating light in a light collector (1) is provided, comprising the following method steps: capturing light from the environment by means of a luminescent material (20), concentrating the light in the luminescent material (20) by means of a semi-transparent layer (40) arranged on the luminescent material (20) and light generating means (10), emitting the light in a pre-determined area (22) of the light collector (1) by means of an out-coupling structure (30) so as to generate a pre-determined light emitting image.
    • 本发明提供了一种包括发光材料元件(20)的光收发器(1),与发光材料元件(20)的第一侧相邻的不连续半透明层(40),其中由于半导体元件 透明层(40)由半透明层覆盖的发光材料元件的至少一个第一部分(21)和未被半透明层(40)覆盖的发光材料元件的至少一个第二部分(21) 以及布置在发光材料元件(20)的第二侧的发光装置(10)。 此外,提供了一种用于将光聚集在集光器(1)中的方法,包括以下方法步骤:借助于发光材料(20)从环境中捕获光,通过装置将光聚集在发光材料(20)中 布置在所述发光材料(20)上的半透明层(40)和发光装置(10),通过外部光源将所述光发射到所述集光器(1)的预定区域(22) 耦合结构(30),以产生预定的发光图像。
    • 10. 发明申请
    • AUTOMATICALLY COMMISSIONING OF DEVICES OF A NETWORKED CONTROL SYSTEM
    • 网络控制系统设备的自动调试
    • US20110310621A1
    • 2011-12-22
    • US13203255
    • 2010-02-19
    • Petrus Desiderius Victor Van Der StokLorenzo FeriWillem Franke PasveerTim Corneel Wilhelmus Schenk
    • Petrus Desiderius Victor Van Der StokLorenzo FeriWillem Franke PasveerTim Corneel Wilhelmus Schenk
    • G06F15/173F21V5/04
    • H05B37/0254H05B37/0272
    • The invention relates to automatically commissioning of devices of a networked control system, particularly to automatically commissioning (auto-commissioning) of light sources of a lighting system, where a control of light sources on an individual and local basis is required. A basic idea of the invention is to route commissioning messages through a grid, particularly an approximately rectangular grid of devices in that each device is able to receive commissioning messages from and to transmit commissioning messages to directly neighbored devices in the grid via light. An embodiment of the invention relates to a method for automatically commissioning of devices (10, 12, 14, 16, 18) of a networked control system, which comprises several devices arranged in a grid (20), wherein each device is adapted for routing messages, which were received from directly neighbored devices in the grid, to directly neighbored devices in the grid via light, wherein the commissioning comprises the acts of transmitting a commissioning message (S10), which comprises a hops counter, by a first device (10) to a second device (12), which is neighbored to the first device in a predetermined direction (22) in the grid, receiving the commissioning message (S12) from the first device by the second device, updating the hops counter (S14) by the second device and a location counter of the second device and transmitting the commissioning message (S16) with the updated hops counter to one or more third devices.
    • 本发明涉及自动调试网络化控制系统的设备,特别是自动调试(自动调试)照明系统的光源,其中需要个人和本地的光源的控制。 本发明的基本思想是通过电网,特别是近似矩形的设备网路路由调试消息,其中每个设备能够从光接收到来自网格中的直接相邻设备的调试消息并向其发送调试消息。 本发明的一个实施例涉及一种用于自动调试网络控制系统的设备(10,12,14,16,18)的方法,其包括布置在网格(20)中的若干设备,其中每个设备适于路由 从电网中的直接相邻设备接收到的消息通过光直接与电网中的相邻设备相连,其中调试包括由第一设备(10)发送包括跳计数器的调试消息(S10)的动作, )到与网格中预定方向(22)相邻的第二设备(12),由第二设备从第一设备接收调试消息(S12),更新跳数计数器(S14) 由所述第二设备和所述第二设备的位置计数器发送所述更新的跳数计数器的调试消息(S16)到一个或多个第三设备。