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    • 57. 发明申请
    • METHOD AND ALGORITHM FOR SELF-LEARNING/AUTO-COMMISSIONING BY MULTIPLE SENSOR ELEMENTS FOR OUTDOOR LIGHTING APPLICATION
    • 用于户外照明应用的多传感器元件自学习自动调试的方法与算法
    • US20150014539A1
    • 2015-01-15
    • US14372764
    • 2013-01-10
    • KONINKLIJKE PHILIPS N.V.
    • Biju Kumar Sreedharan NairRoger Peter Anna Delnoij
    • G01J5/08G01N21/35
    • G01J5/0806G01N21/35G08B13/191G08B29/185H05B37/0227Y02B20/44Y02B20/72
    • The invention relates to a method of controlling a passive infrared (PIR) sensor, said sensor controlling if an electrical device is on or off, wherein said PIR sensor has at least two sensor elements, each having a lens focusing IR onto them, control electronics comprising of at least one processing unit and one memory, wherein the at least two sensors cover adjacent cover areas, wherein information of detected presence from said at least two sensor elements are used to decrease false triggers by using the time period between subsequent presence detections, and identification of each of said at least two PIR sensor elements. The invention further relates to a method of controlling a passive infrared (PIR) sensor, said sensor controlling if an electrical device is on or off, wherein said PIR sensor has two or more sensor elements, each having a lens focusing IR onto them, control electronics comprising of at least one processing unit and one memory, wherein two or more sensors cover different sequentially adjacent cover areas, wherein the sensor elements have a threshold for IR detection above which threshold a positive signal of presence is provided from the sensor element, said method comprising the step of provide a signal (Pan) if all sensor elements provide a positive signal of presence during a time period shorter than a predetermined time period (T3), and if (Pall) is detected a predetermined number of times within a second predetermined time period (T4), increase said threshold by a predetermined amount.
    • 本发明涉及一种控制被动红外(PIR)传感器的方法,所述传感器控制电气设备是开或关,其中所述PIR传感器具有至少两个传感器元件,每个传感器元件具有聚焦在其上的透镜,控制电子 包括至少一个处理单元和一个存储器,其中所述至少两个传感器覆盖相邻的覆盖区域,其中来自所述至少两个传感器元件的检测到的存在的信息用于通过使用后续存在检测之间的时间段来减少错误触发, 以及识别所述至少两个PIR传感器元件中的每一个。 本发明还涉及一种控制被动红外(PIR)传感器的方法,所述传感器控制电气设备是否打开或关闭,其中所述PIR传感器具有两个或更多传感器元件,每个传感器元件具有聚焦在其上的透镜,控制 电子器件包括至少一个处理单元和一个存储器,其中两个或更多个传感器覆盖不同的顺序相邻的覆盖区域,其中所述传感器元件具有用于红外检测的阈值,高于该阈值时,来自所述传感器元件的所述存在的正信号被提供, 方法包括提供信号(Pan),如果所有传感器元件在比预定时间段(T3)短的时间段内提供存在的正信号,并且如果(Pall)在一秒钟内检测到预定次数 预定时间段(T4),将所述阈值增加预定量。
    • 59. 发明申请
    • SYSTEMS AND METHODS FOR PROVIDING HIGH-MAST LIGHTING
    • 用于提供高光照明的系统和方法
    • US20150008829A1
    • 2015-01-08
    • US14323967
    • 2014-07-03
    • Bright Light Systems, Inc.
    • BRADLEY D. LURIEJOHN PARKER CHALMERSPHILLIP DANIEL GRAHAM
    • H05B37/02F21S8/08F21V21/00
    • H05B37/0245F21S8/086F21W2131/103H05B37/02H05B37/0272Y02B20/46Y02B20/72
    • Systems and methods of providing illumination may be provided in accordance with the invention. A lighting unit may be provided comprising a plurality of light sources, each light source of the plurality being at least partially surrounded by an optical element, and a support assembly configured to support the light source above a surface. The light sources may be radio frequency (RF) coupled electrodeless plasma sources, and the support assembly may be a high-mast support assembly. In some embodiments, the optical element directs light toward the surface. In some configurations, each light source of the plurality may have one or more independently controllable and/or adjustable lighting characteristics. A lighting unit may communicate with a controller, which may provide instructions for controlling the light sources. A lighting system may be provided with a host controlling a plurality of lighting units, which may be organized into networks, and/or zones. The networks, zones, lighting units, and/or light sources may be independently controllable and/or adjustable. In some embodiments, management software may provide functionality for monitoring, reporting, controlling and/or interacting with the lighting system.
    • 可以根据本发明提供提供照明的系统和方法。 可以提供照明单元,其包括多个光源,多个光源至少部分地由光学元件包围,以及支撑组件,其被配置为将光源支撑在表面上方。 光源可以是射频(RF)耦合的无电极等离子体源,并且支撑组件可以是高桅杆支撑组件。 在一些实施例中,光学元件将光朝向表面引导。 在一些配置中,多个光源可以具有一个或多个可独立控制的和/或可调节的照明特性。 照明单元可以与控制器通信,控制器可以提供用于控制光源的指令。 照明系统可以设置有主机,其控制可以被组织成网络和/或区域的多个照明单元。 网络,区域,照明单元和/或光源可以是独立可控的和/或可调节的。 在一些实施例中,管理软件可以提供用于监视,报告,控制和/或与照明系统交互的功能。
    • 60. 发明申请
    • PHOTOVOLTAIC SLEEVE FOR STREET LIGHTS AND THE LIKE
    • 照明灯和类似的照明灯
    • US20140360559A1
    • 2014-12-11
    • US14367860
    • 2012-12-24
    • Marco Braghiroli
    • Marco Braghiroli
    • H01L31/042
    • H02S30/10F21S8/086F21S9/035F24S25/10F24S25/60H02S20/20Y02B20/72
    • A photovoltaic panel system for assembly to an outdoor column which is ergonomic in design, modular in structure and has features of connection that are protected from the outdoor elements. The assembly comprises one or more housings, each housing comprising a photovoltaic panel extending between two collars and each collar being hinged to allow the collars to be placed around the column. The also includes an extension section extending beyond one collar at one end of the housing, and which has means to secure the section to the column and having a dimension of less than each collar. The collar of one housing extends over the extension piece of the neighboring housing to cover the column securement means and protect the securement means from the outside environment.
    • 一种用于组装到户外柱的光伏面板系统,其设计符合人体工程学,结构模块化,并具有防止户外元件保护的连接特征。 该组件包括一个或多个壳体,每个壳体包括在两个凸环之间延伸的光伏面板,并且每个凸环被铰接以允许套环围绕该柱放置。 还包括在壳体的一端处延伸超过一个环的延伸部分,并且其具有将截面固定到柱上并具有小于每个环的尺寸的装置。 一个壳体的套环在相邻壳体的延伸件上延伸以覆盖柱固定装置并保护固定装置免受外部环境的影响。