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    • 1. 发明申请
    • A METHOD OF CONTROLLING AN ARTIFICIAL LIGHT PLANT GROWING SYSTEM
    • 一种控制人造植物生长系统的方法
    • WO2015189123A2
    • 2015-12-17
    • PCT/EP2015/062662
    • 2015-06-08
    • KONINKLIJKE PHILIPS N.V.
    • KRIJN, Marcellinus Petrus Carolus MichaelONAC, Gabriel-Eugen
    • A01G7/04
    • A01G7/045A01G9/20A01G9/26Y02A40/274Y02P60/146
    • The present application relates to a method of controlling an artificial light plant growing system (1). The method includes receiving information indicative of a production demand for a plant type to be grown in the artificial light plant growing system (1) and information indicative of an energy supply for a light source (9) of the artificial light plant growing system (1), and controlling operation of the light source (9) of a plant growing environment of the artificial light plant growing system (1) in dependence on the received information so that the production rate of a plant (8) of said plant type grown in the system (1) versus the production demand and energy supply is optimised. The present application also relates to a computer program comprising instructions which, when executed by at least one processor, cause the method of to be performed, a controller (5) for controlling an artificial light plant growing system (1), and an artificial light plant growing system (1).
    • 本申请涉及一种控制人造光植物生长系统(1)的方法。 该方法包括接收指示在人造光生长系统(1)中生长的植物类型的生产需求的信息和指示人造光植物生长系统(1)的光源(9)的能量供应的信息 ),并且根据所接收的信息控制人造光照植物生长系统(1)的植物生长环境的光源(9)的操作,使得生长在所述植物类型的植物(8)的生产速率 系统(1)与生产需求和能源供应优化。 本申请还涉及一种包括指令的计算机程序,当由至少一个处理器执行时,引导执行该方法,控制器(5)用于控制人工光照植物生长系统(1)和人造光 植物生长系统(1)。
    • 2. 发明申请
    • ARTIFICIAL NEURON
    • 人造神经元
    • WO2015028504A1
    • 2015-03-05
    • PCT/EP2014/068163
    • 2014-08-27
    • KONINKLIJKE PHILIPS N.V.
    • GUILLANNEUF, Frederic AlexandreKRIJN, Marcellinus Petrus Carolus Michael
    • G06N3/067
    • G06N3/067G06N3/0675G11C7/005G11C7/1081
    • The present invention relates to an optical device (101, 201, 305). The present invention may be implemented as optical artificial neurons. The optical device comprises an optically transmissive light-receiving device (102) which may be a photodiode, an optically transmissive light-emitting device (104, 304) such as a light-emitting diode, an optically transmissive processor (103) comprising a memory storage device (106). The light-emitting device and the light-receiving device are electrically connected to the processor which is configured to control the light-emitting device to emit an optical signal (307, 313) based on a first optical signal received by the light-receiving device. The optical device comprises an address which is transmitted with the optical signal. The address of may be recognized by the processor when processing a received optical signal and is used by the processor to determine to control the light-emitting device to emit an optical signal or not.
    • 本发明涉及光学装置(101,201,305)。 本发明可以实现为光学人造神经元。 光学装置包括光透射光接收装置(102),其可以是光电二极管,诸如发光二极管的光学透射发光装置(104,304),光学透射处理器(103),包括存储器 存储装置(106)。 发光装置和光接收装置电连接到处理器,处理器被配置为基于由光接收装置接收的第一光信号来控制发光装置发射光信号(307,313) 。 光学装置包括与光信号一起传输的地址。 当处理接收到的光信号时,处理器可以识别地址,并且由处理器使用该地址来确定控制发光器件发射光信号。
    • 3. 发明申请
    • MICRO-OPTICAL DESIGNS ADDRESSING COLOR OVER ANGLE
    • 微光设计解决角度上的颜色
    • WO2015173025A1
    • 2015-11-19
    • PCT/EP2015/059437
    • 2015-04-30
    • KONINKLIJKE PHILIPS N.V.
    • GOMMANS, Hendrikus Hubertus PetrusKRIJN, Marcellinus Petrus Carolus Michael
    • G02B19/00F21V5/00F21V5/02
    • G02B19/0009F21V5/005F21V5/008F21V5/02G02B19/0066G02B27/0905G02B27/095
    • The invention provides a lighting unit (10) comprising a light source (100) and a light transmissive first window (200), wherein the light source (100) is configured to provide polychromatic light source light (101) with a spatially inhomogeneous color distribution to an upstream face (210) of the light transmissive first window (200), wherein the light transmissive first window (200) comprises a plurality of optical elements (230) configured to provide a beam of light (11) downstream of a downstream face (220) of the light transmissive first window (200), and wherein the shape of the optical elements (230) varies over the light transmissive first window (200) to provide said beam of light (11) with a spatially homogenous color distribution at a predetermined distance (d) downstream from the downstream face (220) of the light transmissive first window (200).
    • 本发明提供了一种包括光源(100)和透光第一窗(200)的照明单元(10),其中所述光源(100)被配置为提供具有空间不均匀颜色分布的多色光源光(101) 到所述透光的第一窗口(200)的上游面(210),其中所述透光的第一窗口(200)包括多个光学元件(230),所述多个光学元件被配置为在下游面的下游提供光束(11) (220)的光学元件(220),并且其中所述光学元件(230)的形状在所述透光的第一窗口(200)上变化,以提供所述光束(11)在空间上均匀的颜色分布 在透光的第一窗口(200)的下游面(220)的下游的预定距离(d)。
    • 4. 发明申请
    • AN OPTICAL ELEMENT FOR OBTAINING A SKYLIGHT APPEARANCE AND A LUMINAIRE
    • 用于获得天体外观和光泽度的光学元件
    • WO2014191250A1
    • 2014-12-04
    • PCT/EP2014/060271
    • 2014-05-20
    • KONINKLIJKE PHILIPS N.V.
    • ONAC, Gabriel-EugenKRIJN, Marcellinus Petrus Carolus MichaelVAN GHELUWE, Jochen Renaat
    • F21V9/02F21V11/06
    • F21V11/06F21V9/02
    • An optical element for use in front of a light source 102 for obtaining a skylight appearance, and a luminaire are provided. The optical element comprising a plurality of light transmitting cells in a raster structure 140, a diffuser 145 and an edge wall 130. A light source 102 emits light towards the raster structure 140. The raster structure 140 collimates a part of the light and transmits a further part of the light in a predetermined spectral range. White light 114 and colored light 112 that is transmitted by the raster structure 140 may impinge upon the side wall 130 of the optical element. One face of the side wall 130 is a region of specular reflectivity 135 and will reflect the light that impinges upon it back into the chamber 125 that is formed by the cooperation of the raster structure 140, the diffuser 145 and the edge wall 130. Light exits the optical element through the diffuser 145. A weak diffusion of the diffusing layer 145 is advantageous to obtain a light emission distribution which has a smooth transition between light 114 which directly originates from the light source 102 and the colored light 112 that is transmitted through the walls of the light transmitting cells.
    • 提供了用于获得天窗外观的光源102前方的光学元件和照明装置。 光学元件包括光栅结构140中的多个光传输单元,漫射器145和边缘壁130.光源102朝向光栅结构140发光。光栅结构140准直光的一部分并透射光 在预定光谱范围内的另一部分光。 由光栅结构140透射的白光114和彩色光112可以撞击在光学元件的侧壁130上。 侧壁130的一个面是镜面反射率135的区域,并将入射到其上的光反射回通过光栅结构140,扩散器145和边缘壁130的配合而形成的室125中。光 通过漫射器145离开光学元件。漫射层145的弱扩散有利于获得在光源102直接产生的光114和透过光源的有色光112之间具有平滑过渡的发光分布 透光细胞的墙壁。
    • 6. 发明申请
    • OPTICAL DEVICE, LIGHTING DEVICE AND LIGHTING SYSTEM
    • 光学设备,照明设备和照明系统
    • WO2015082575A1
    • 2015-06-11
    • PCT/EP2014/076473
    • 2014-12-04
    • KONINKLIJKE PHILIPS N.V.
    • GOMMANS, Hendrikus Hubertus PetrusMICHIELS, Wilhelmus Petrus Adrianus JohannusKRIJN, Marcellinus Petrus Carolus Michael
    • F21V8/00F21V5/00
    • G02B6/0053F21V5/007F21Y2105/10F21Y2115/10G02B3/0056G02B3/08G02B19/0014G02B19/0066
    • Disclosed is an optical device (10) for use as a collimator in a lighting device (100). The optical device (10) comprises a first major surface (25) and a second major surface comprising a grid of tessellated optical elements (20) each comprising a plurality of reflective facets (24) concentrically arranged around the center (23) of the optical element. The lighting device further comprises a light guide (120) having a first major surface (122) and a second major surface (124) connected to the first major surface by respective side surfaces (126). A plurality of solid state lighting elements (110) is arranged along at least one of said side surfaces and arranged to emit its luminous output into the light guide via said side surface. The optical device (10) faces the second main surface of the light guide and the first main surface of the light guide comprises a pattern of scattering elements (130), each scattering element being aligned with the center (23) of one of said optical elements (20). A lighting system including a plurality of such lighting devices (100) is also disclosed.
    • 公开了一种在照明装置(100)中用作准直器的光学装置(10)。 光学装置(10)包括第一主表面(25)和第二主表面,第二主表面包括镶嵌光栅元件(20)的格栅,每个光栅元件包括围绕光学元件的中心(23)同心布置的多个反射小面(24) 元件。 照明装置还包括具有通过相应的侧表面(126)连接到第一主表面的第一主表面(122)和第二主表面(124)的光导(120)。 多个固态照明元件(110)沿着所述侧表面中的至少一个被布置,并被布置成经由所述侧表面将其发光输出发射到光导中。 光学装置(10)面对光导的第二主表面,并且光导的第一主表面包括散射元件(130)的图案,每个散射元件与所述光学元件之一的中心(23)对准 元素(20)。 还公开了包括多个这种照明装置(100)的照明系统。
    • 9. 发明申请
    • OPTICALLY TRANSMISSIVE INFORMATION STORAGE UNIT
    • 光学传输信息存储单元
    • WO2015135770A3
    • 2015-09-17
    • PCT/EP2015/054227
    • 2015-03-02
    • KONINKLIJKE PHILIPS N.V.
    • GUILLANNEUF, Frederic AlexandreKRIJN, Marcellinus Petrus Carolus Michael
    • G11C13/04G11C15/04G11C7/10G11C7/00
    • The present invention relates to a storage device (300, 400) and to a method of controlling a storage device (300, 400). A storage device (300, 400) according to the invention comprises a plurality of information storage units (101, 201, 302), each comprising an optically transmissive memory element (104, 306), an optically transmissive light- receiving device (102, 304), and an optically transmissive control unit (103, 305) connected to the memory element (104, 306) and the light-receiving device (102, 304). The components are optically transmissive such that a request for information data stored on the optically transmissive memory element (104, 306) may be received from any direction. Thereby, an optical signal (316, 309, 422) comprising a request for information may be received by several light-receiving devices (102, 304) simultaneously enabling a fast retrieval of information data stored on a storage device (300, 400) comprising several information storage units(101, 201, 302).
    • 存储设备(300,400)以及控制存储设备(300,400)的方法技术领域本发明涉及一种存储设备(300,400)以及一种控制存储设备(300,400)的方法。 根据本发明的存储设备(300,400)包括多个信息存储单元(101,201,302),每个信息存储单元包括光学透射式存储器元件(104,306),光学透射式光接收器件(102,104) 304)以及连接到所述存储器元件(104,306)和所述光接收装置(102,304)的光学透射控制单元(103,305)。 这些组件是光学透射的,使得可以从任何方向接收对存储在光学透射存储器元件(104,306)上的信息数据的请求。 因此,包括对信息的请求的光信号(316,309,422)可以由多个光接收设备(102,304)同时接收,同时使得能够快速检索存储在存储设备(300,400)上的信息数据,所述信息数据包括 几个信息存储单元(101,201,302)。
    • 10. 发明申请
    • LUMINAIRE WITH A LIGHT DIFFUSER
    • LUMINAIRE与光扩散器
    • WO2015075251A1
    • 2015-05-28
    • PCT/EP2014/075445
    • 2014-11-25
    • KONINKLIJKE PHILIPS N.V.
    • SEPKHANOV, Ruslan AkhmedovichKRIJN, Marcellinus Petrus Carolus Michael
    • F21V5/00G02B5/02
    • F21V5/005F21Y2101/00G02B5/0231G02B5/0263G02B5/0278G02B19/0061
    • A luminaire comprising: a light source (10); an exit window (20) for light from the light source; and a diffuser (25; 200a; 200b; 200c; 200d) at the exit window for diffusing the light. The diffuser comprises a plurality of micro-optical elements (203a; 203b; 204, 205; 206, 207). Each micro-optical element is adapted to redirect light from the light source, so that the redirected light from each element emerges from the diffuser at a respective predetermined polar angle (Θ). The plurality of micro-optical elements comprise first micro-optical elements, which redirect light from the light source into a first range of polar angles, wherein the first optical elements occupy a greater proportion of the area of the diffuser in a first neighbourhood than in a second neighbourhood, and wherein the first neighbourhood receives less light from the light source than the second neighbourhood. Also provided is a method of designing and manufacturing a diffuser for such a luminaire.
    • 一种照明器,包括:光源(10); 用于来自光源的光的出射窗(20); 以及在出射窗处的漫射器(25; 200a; 200b; 200c; 200d)。 漫射器包括多个微光学元件(203a; 203b; 204,205; 206,207)。 每个微光学元件适于重定向来自光源的光,使得来自每个元件的重定向的光以扩散器以相应的预定极角(θ)出射。 多个微光学元件包括将来自光源的光重定向到第一极角范围的第一微光学元件,其中第一光学元件在第一邻域中占据扩散器的面积的比例大于 第二邻域,并且其中所述第一邻域从所述光源接收的光少于所述第二邻域。 还提供了一种设计和制造用于这种照明器的扩散器的方法。