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    • 5. 发明申请
    • HIDING CABLES RUNNING ALONG A SURFACE
    • 隐藏电缆在表面上运行
    • US20090188713A1
    • 2009-07-30
    • US12305466
    • 2007-06-28
    • Theodorus Franciscus Emilius Maria Overes
    • Theodorus Franciscus Emilius Maria Overes
    • H02G3/08
    • H02G3/0431
    • A structure (1) hides a cable (2) running along a surface (3). The structure (1) comprises a wall (10, 11; 12, 13, 14) arranged between a viewer (4) and the cable (2) for hiding the cable (2) for the viewer (4). The structure has a wall surface directed towards the viewer (4). At least part of the wall surface directed towards the viewer (4) has reflective properties. The wall (10, 11; 12, 13, 14) has a shape for reflecting the surface (3) or another surface (30) having similar appearance as the surface (3) to the viewer (4), thereby giving the structure which hides the cable a similar appearance as the surface in front of which the cable is arranged.
    • 结构(1)隐藏沿表面(3)延伸的电缆(2)。 结构(1)包括布置在观察者(4)和电缆(2)之间的用于隐藏观察者(4)的电缆(2)的壁(10,11; 12,13,14)。 该结构具有指向观察者(4)的壁表面。 指向观察者(4)的壁表面的至少一部分具有反射性质。 壁(10,11; 12,13,14)具有用于将具有与表面(3)相似外观的表面(3)或另一表面(30)反射到观察者(4)的形状,从而给出 将电缆隐藏在与电缆前面的表面相似的外观上。
    • 6. 发明授权
    • Light projection system and display device
    • 光投影系统及显示装置
    • US08167434B2
    • 2012-05-01
    • US12519532
    • 2007-12-13
    • Theodorus Franciscus Emilius Maria Overes
    • Theodorus Franciscus Emilius Maria Overes
    • G03B21/14G02B6/00
    • G02B6/001F21S10/005F21V23/0442H04N9/73
    • The invention relates to a light projection system (10) for use in conjunction with a display device (40). The light projection system comprises a light source for emitting light being modulated by video and/or audio content of the display device (40), and a light guide (20). The longitudinal light guide guides light emitted by the light source substantially along a longitudinal axis (26) and projects the light propagating through the longitudinal light guide on a projection surface (50). The longitudinal light guide comprises: a light input window, and a plurality of light out-coupling elements. The plurality of light out-coupling elements project the light on the projection surface via light out-coupling elements comprising sub-sets (70a, 70d) of light out-coupling elements. A particular sub-set (70a, 70d) is arranged for substantially illuminating a particular area (50a, 50d) of the projection surface (50). A luminous intensity emitted by the particular sub-set is dependent on a distance (da, dd) along a straight line between the particular sub-set and the particular area, and/or on an angle between the straight line and normal of the projection surface. The effect of the measures according to the invention is that the variation of the luminous intensity over the particular area is reduced.
    • 本发明涉及一种与显示装置(40)结合使用的光投射系统(10)。 光投射系统包括用于发射被显示装置(40)的视频和/或音频内容调制的光的光源和光导(20)。 纵向光导基本上沿着纵向轴线(26)引导由光源发射的光,并将穿过纵向光导的传播的光投射在投影表面(50)上。 纵向光导包括:光输入窗和多个光输出耦合元件。 多个光输出耦合元件通过包括光输出耦合元件的子集(70a,70d)的光输出耦合元件将光投射在投影表面上。 布置特定子集(70a,70d)以基本上照射投影表面(50)的特定区域(50a,50d)。 由特定子集发射的发光强度取决于特定子集与特定区域之间的直线上的距离(da,dd)和/或在投影的直线和法线之间的角度 表面。 根据本发明的措施的效果是减小了特定区域上的发光强度的变化。
    • 7. 发明申请
    • DISPLAY SYSTEM
    • 显示系统
    • US20090225065A1
    • 2009-09-10
    • US11719963
    • 2005-11-25
    • Theodorus Franciscus Emilius Maria Overes
    • Theodorus Franciscus Emilius Maria Overes
    • G09G5/00
    • H05B37/0218Y02B20/46Y10S345/905
    • A display system (20, 100, 300, 320) is provided for presenting images to a viewer (50) together with complementary peripheral surround-lighting (130). The system (20, 100, 300, 320) includes a monitor (20) for presenting the images to the viewer (50), and lights (100) for generating the surround-lighting (130) appearing in operation to the viewer (50) as at least partially peripherally surrounding the monitor (20). Moreover, the system (20, 100, 300, 320) further includes a controller (320) for energizing the lights (100) in response to properties of portions of the images presented on the monitor (20), and a sensor (300, 310) for sensing the surround-lighting (130) and/or environmental illumination and generating corresponding sensor signals (330). The controller (320) is arranged in operation to receive the sensor signals (330) for controlling the lights (100) for at least partially compensating the surround-lighting (130) to influence from the environmental illumination.
    • 提供了一种显示系统(20,100,300,320),用于将图像与互补的外围环绕照明(130)一起呈现给观看者(50)。 系统(20,100,300,320)包括用于将图像呈现给观看者(50)的监视器(20),以及用于产生出现在观看者(50)的操作中的环绕照明(130)的灯(100) )至少部分地周边地围绕监视器(20)。 此外,系统(20,100,300,320)还包括控制器(320),用于响应于呈现在监视器(20)上的图像的部分的特性来激励光(100),以及传感器(300, 310),用于感测环绕照明(130)和/或环境照明并产生相应的传感器信号(330)。 控制器(320)被布置成操作以接收用于控制光(100)的传感器信号(330),用于至少部分地补偿环境照明(130)从环境照明中受到影响。
    • 10. 发明申请
    • COMPENSATING LIGHT GUIDE
    • 补光指南
    • US20100080018A1
    • 2010-04-01
    • US12517232
    • 2007-12-03
    • Theodorus Franciscus Emilius Maria Overes
    • Theodorus Franciscus Emilius Maria Overes
    • F21V8/00F21V9/08
    • G02B6/0043G02B6/0068
    • The invention relates to a compensating light guide (10) for guiding visible light (20) from a light source (100). The light guide has a first transmission region (1TR), where light is guided from the light source along a first optical path (1OP), and a second transmission region (2TR), where light is guided from the light source along a second optical path (2OP). The light guided along the second optical path has a larger absorption in a first sub band resulting in an absorption difference between the first and the second optical path. The first (1TR) and second (2TR) transmission regions are optically arranged to transmit light so as to relatively reduce a second sub band of the first spectral distribution. The relative reduction between the first (1TR) and second (2TR) transmission regions is proportionated so as to psycho-visually compensate the absorption difference in the light guide (10) resulting in a uniform color emitted from the light guide (10) as perceived by a viewer (200).
    • 本发明涉及一种用于引导来自光源(100)的可见光(20)的补偿光导(10)。 光导具有第一透射区域(1TR),其中光线沿着第一光路(1OP)从光源引导;以及第二透射区域(2TR),其中光从光源沿第二光学 路径(2OP)。 沿着第二光路引导的光在第一子带中具有较大的吸收,导致第一和第二光路之间的吸收差异。 第一(1TR)和第二(2TR)透射区域被光学布置以透射光,以便相对地减小第一光谱分布的第二子带。 第一(1TR)和第二(2TR)透射区域之间的相对减小成比例,以便心理视觉地补偿光导(10)中的吸收差异,导致从光导(10)发射的均匀颜色,如所察觉的 (200)。