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SUN-SKY-IMITATING ILLUMINATION DEVICE

机译:阳刚照明装置

摘要

The present disclosure is directed to a sun-sky-imitating illumination device (100) for generating natural light similar to that from the sun and the sky, comprising a direct-light generator (10) that comprises a first emitting surface (11) from which a direct light (13) is emitted and a collimated light source (20) configured to generate from a primary light a collimated light (23) which exits an output surface (22) positioned upstream from the first emitting surface (11) with respect to a direct light direction (15), wherein the direct light (13) has a luminance profile (Ldirect(x, y, θ, φ)) which has a first peak in the angular distribution around the direct-light direction (15) and the collimated light (23) exiting the output surface (22) has a luminance profile (Lcoll(x, y, θ, φ)) which has a second peak (14) in the angular distribution around the direct-light direction (15), the second peak being a narrow peak, and a diffused-light generator (50) that is at least partially light-transparent and is positioned downstream of the direct-light generator (10) and comprises a second emitting surface (51) and is configured to cause diffused light (53) at the second emitting surface (51), wherein the sun-sky-imitating illumination device is configured such that the direct-light generator (10) and the diffused-light generator (50) co-operate to form outer light (53,54) at the second emitting surface (51) which comprises a first light component (54) which propagates along directions contained within the narrow peak (14) and a second light component (53) which propagates along directions spaced apart from the narrow peak (14), wherein the first light component (54) has a CCT which is lower than a CCT of the second light component (53), wherein the direct-light generator (10) comprises an optical unit (30) positioned downstream of the output surface (22) of the collimated light source (20) and upstream from the first emitting surface (11) with respect to the direct light direction (15), wherein the optical unit (30) is configured to interact with the collimated light (23) exiting the output surface (22) to generate the direct light (13) emitted from the first emitting surface (11) so that the first peak of the luminance profile (Ldirect(x, y, θ, φ)) of the direct light (13) is larger than the second peak of the luminance profile (Lcoll(x, y, θ, φ)) of the collimated light (23), the optical unit (30) comprising a first planar light mixing element (33,33') characterized by a first response function having a first angular profile with a peak having a first divergence angle (α1, α1') measured as full width at half maximum (FWHM) of the peak, the first planar light mixing element (33,33') being positioned so as to at least partially intercept the collimated light (23) exiting the output surface (22) of the collimated light source (20) and to define a unit input surface (31), and a second planar light mixing element (34) characterized by a second response function having a second angular profile with a peak having a second divergence angle (α2) measured as full width at half maximum (FWHM) of the peak, the second planar light mixing element (34) being positioned downstream of the unit input surface (31) so as to at least partially intercept the light crossing the unit input surface (31) and to define a unit emitting surface (32), wherein the first and second divergence angles (α1. α1', α2) are equal to or smaller than 40° preferably smaller than 30°, more preferably smaller than 20°; and wherein the first (33,33') and second (34) planar light mixing elements are spaced apart from each other at least of a minimum unit depth (z1) measured along the direct light direction (15), configured to obtain uniform luminance of the direct light (13) which exits the first emitting surface (11) of the direct light generator (10).
机译:本公开针对一种用于产生类似于来自太阳和天空的自然光的模仿日光的照明装置(100),其包括直接光发生器(10),该直接光发生器(10)包括来自于其的第一发射表面(11)。准直光源(20)被配置为从初级光产生准直光(23),准直光(23)从初级光产生,准直光(23)相对于位于第一出射面(11)上游的出射面(22)出射。到直射光方向(15),其中直射光(13)的亮度分布(Ldirect(x,y,θ,φ))在围绕直射光方向(15)的角度分布中具有第一个峰值并且从出射面(22)射出的准直光(23)的亮度分布(Lcoll(x,y,θ,φ))在围绕直射光方向(15)的角度分布中具有第二个峰值(14)。 ),第二个峰是一个狭窄的峰,以及一个至少部分发光的散射光发生器(50),透明的并且位于直接光发生器(10)的下游,并且包括第二发射表面(51),并且配置为在第二发射表面(51)处引起漫射光(53),其中,模仿天空的照明装置被配置为使得直接光发生器(10)和散射光发生器(50)协作以在包括第一光分量(54)的第二发射表面(51)处形成外部光(53,54)。沿窄峰(14)内的方向传播的光)和沿窄峰(14)隔开方向传播的第二光分量(53),其中第一光分量(54)的CCT低于第二光组件(53)的CCT,其中直接光发生器(10)包括光学单元(30),该光学单元(30)定位在准直光源(20)的出射面(22)的下游,并且在第一发射器的上游相对于直射光d的表面(11)布置(15),其中光学单元(30)被配置为与从出射表面(22)出射的准直光(23)相互作用以产生从第一发射表面(11)发射的直接光(13),使得直射光(13)的亮度分布图的第二个峰值(Ldirect(x,y,θ,φ))大于准直后的亮度分布图的第二个峰值(Lcoll(x,y,θ,φ))光(23),光学单元(30)包括第一平面光混合元件(33,33'),其特征在于具有第一角度轮廓的第一响应函数,该第一角度轮廓的峰具有测量的第一发散角(α1,α1')作为峰的半峰全宽(FWHM),第一平面光混合元件(33,33')被定位成至少部分地拦截离开准直光的出射面(22)的准直光(23)。光源(20),并定义一个单元输入表面(31),以及一个第二平面光混合元件(34),其特征在于具有第二响应乐趣具有第二角度轮廓的部分,该峰具有第二发散角(α2),该第二发散角(α2)被测量为峰的半峰全宽(FWHM),第二平面光混合元件(34)位于单元输入表面(31)的下游)以至少部分地拦截穿过单位输入表面(31)的光并定义单位发射表面(32),其中第一和第二发散角(α1。 α1′,α2)等于或小于40°,优选小于30°,更优选小于20°;其中第一(33,33')和第二(34)平面光混合元件彼此间隔至少沿直射光方向(15)测得的最小单位深度(z1),以获取均匀的亮度射出直接光发生器(10)的第一发射表面(11)的直接光(13)的角度。

著录项

  • 公开/公告号WO2020201938A1

    专利类型

  • 公开/公告日2020-10-08

    原文格式PDF

  • 申请/专利权人 COELUX S.R.L.;

    申请/专利号WO2020IB52848

  • 申请日2020-03-26

  • 分类号F21V13/12;F21V11/06;F21V5;F21V3/04;F21Y115/10;F21Y105/10;

  • 国家 WO

  • 入库时间 2022-08-21 11:09:10

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