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    • 5. 发明公开
    • Light measurement device for lighting element
    • LICHTMESSGERÄTFÜRLEUCHTMITTEL
    • EP2908106A1
    • 2015-08-19
    • EP15425011.2
    • 2015-02-11
    • Beghelli S.p.A.
    • Beghelli, Gian Pietro
    • G01J1/02F21V23/04G01J1/42
    • G01J1/0247F21V23/0435G01J1/0271G01J2001/4247G01J2001/4266
    • A light measurement device (10) for lighting apparatus (30), comprising a photovoltaic cell (11), which draws electrical energy from the light radiation (R) emitted by one or more lighting apparatus (30) associated to the device (10) via a storage capacitor (20, C1), a light sensor (12), which periodically samples the light radiation (R1) reflected from at least one surface illuminated by the coupled lighting apparatus (30) and/or a pyroelectric sensor (13), which detects movements below said lighting apparatus (30); the electric power is managed by a control circuit (14) and supplied to a light measuring circuit (16) and/or to a movement detecting circuit (17), which detect, process and transmit the measurements related to the light and/or to the movements to the lighting apparatus (30), via a radio transceiver (15), preferably a "spread spectrum" radio transceiver (15).
    • 一种用于照明装置(30)的光测量装置(10),包括光电池(11),其从与所述装置(10)相关联的一个或多个照明装置(30)发射的光辐射(R)吸取电能, 通过存储电容器(20,C1),周期性地对由所耦合的照明装置(30)所照射的至少一个表面反射的光辐射(R1)和/或热电传感器(13)进行采样的光传感器(12) ,其检测所述照明装置(30)下方的运动; 电力由控制电路(14)管理并提供给光测量电路(16)和/或运动检测电路(17),其检测,处理和传输与光有关的测量和/或 经由无线电收发器(15),优选地是“扩展频谱”无线电收发器(15)向照明装置(30)的移动。
    • 7. 发明公开
    • System and method for calibrating a light source for simulating a spectrum of solar radiation
    • 系统和方法,用于校准光源来模拟太阳辐射的光谱
    • EP2824434A1
    • 2015-01-14
    • EP13176337.7
    • 2013-07-12
    • APPLIED MATERIALS ITALIA S.R.L.
    • Martire, MarcoVoltan, Alessandro
    • G01J1/08F21V29/00G01R31/26
    • G01J1/08F21V29/50G01J2001/4247H02S50/00H02S50/10H02S50/15
    • The disclosure provides a system (10) for calibrating a light source for simulating a spectrum of solar radiation. The system (10) includes: the light source (11) configured to emit radiation (12) including two or more different wavelength ranges to provide an output spectrum; a detection element (61) disposed opposite to the light source (11) and configured to detect the output spectrum, wherein said detection element (61) is a photovoltaic device; an evaluation module (62) connected to the detection element (61) and configured to determine, from the detected output spectrum, an amount of irradiance in one or more of the wavelength ranges; and a light source controller (13) connected to the evaluation module (62) and configured to adjust one or more radiation emission parameters of the light source (11) based on the determined amount of irradiance in the one or more of the wavelength ranges to amend the output spectrum.
    • 本公开提供了一种用于校准光源用于模拟太阳辐射的频谱的系统(10)。 该系统(10)包括:包含两个或多个不同波长被配置为发射辐射(12)的光源(11)的范围,以提供给输出频谱; 相对设置,该光源(11)和配置成检测所述输出频谱的检测元件(61),所述worin检测元件(61)是光伏器件; 到评估模块(62)连接到所述检测元件(61)并且被配置为确定的矿井,从检测到的输出光谱,在辐照的量在一个或多个波长范围的; 和连接到所述评估模块(62)并且被配置成基于在所述一个或多个波长的辐射的确定性开采量的光源(11)的一个或多个辐射发射参数光源控制器(13)至 修正的输出谱。
    • 8. 发明公开
    • PRÜFVERFAHREN FÜR EINE FLUCHTWEGMARKIERUNG
    • PRÜFVERFAHRENFÜREINE FLUCHTWEGMARKIERUNG
    • EP2671058A1
    • 2013-12-11
    • EP12707698.2
    • 2012-02-03
    • Lufthansa Technik AG
    • BIEHL, Torben
    • G01J3/28G01J1/18G01N21/64G01J1/58G01J3/10G01J3/44G01J1/42
    • G01N21/64G01J1/58G01J3/10G01J3/28G01J3/4406G01J2001/4247G01N21/6408G01N2021/6417G01N2021/6495
    • The invention relates to an escape route marking having an installation position and being illuminated by a light source in a defined position relative to the installation position in order to charge the escape route marking for an afterglow, characterized by the following method steps: an excitation curve ?(?) for the escape route marking is provided in dependence on the wavelength, the irradiance E(?) of the light source is captured for the installation position of the escape route marking in dependence on the wavelength, a weighted irradiance B(?) is ascertained as a product of the irradiance and the excitation curve in dependence on the wavelength, a charging irradiance (BiL) is ascertained as an integral over the weighted irradiance over the wavelength, and a characteristic curve Ktl (BiL), which is dependent on the charging time t1, indicates the resulting afterglow time for the escape route marking at the charging time t1 for the charging irradiance (BiL).
    • 一种逃生路径标记的测试方法,其具有安装位置,并且被位于相对于安装位置的限定位置的光源照射,以便对逸出路径标记进行充电以实现余辉,下列步骤:激发曲线 提供了用于逃生路径标记的A(λ); 记录光源的辐照度E(λ)用于逃生路径标记的安装位置; 加权辐照度B(λ)被确定为辐照度和激发曲线的乘积; 充电辐照度(BiL)被确定为整个波长上的加权辐照度的积分; 并且根据充电时间t1的特性曲线Kt1(BiL)指定充电辐照度(BiL)的充电时间t1对于逃逸路径标记的余辉时间。