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    • 3. 发明申请
    • A PRESENCE DETECTION SYSTEM AND A LIGHTING SYSTEM
    • 现状检测系统和照明系统
    • WO2012056380A1
    • 2012-05-03
    • PCT/IB2011/054690
    • 2011-10-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.JOHNSON, Mark, ThomasVAN DOOREN, MariekeCENNINI, Giovanni
    • JOHNSON, Mark, ThomasVAN DOOREN, MariekeCENNINI, Giovanni
    • G08B13/181G08B21/22
    • G01V8/20A61B5/0059G08B13/181G08B21/22
    • A presence detection system (1) for detecting a living being (10) within an area (12). The area (12) comprises at least two zones (12A;12B). The system (1) in total comprises at least two light sources (2A;2B) each of them having a different predefined spectrum and each of them radiating light in a different zone (12A;12B). The system comprises at least two sensing means (4A;4B) sensitive to light of the first predefined spectrum and the second predefined spectrum respectively. Each of the sensing means (4A;4B) is arranged for detecting light reflected from the living being (10) if present in the zone (12A;12B) of the area (12) and for generating a presence signal (14A;14B) based on detected light. The system comprises a processor device (8) that concludes the presence of the living being (10) within the area (12) in a zone wise way based on the presence signals. Such presence detection system provides relatively precise presence detection. The invention also relates to a lighting system comprising the above mentioned presence detection system (1).
    • 一种用于在区域(12)内检测生物(10)的存在检测系统(1)。 区域(12)包括至少两个区域(12A; 12B)。 系统(1)总共包括至少两个光源(2A; 2B),每个光源具有不同的预定光谱,并且它们中的每一个在不同的区域(12A; 12B)中发光。 该系统分别包括对第一预定频谱和第二预定频谱的光敏感的至少两个感测装置(4A; 4B)。 每个检测装置(4A; 4B)被布置成用于检测来自居住区域(10)的光,如果存在于区域(12)的区域(12A; 12B)中并且用于产生存在信号(14A; 14B) 基于检测到的光。 该系统包括处理器装置(8),其基于存在信号以区域方式结束区域(12)内存在(10)的存在。 这种存在检测系统提供相对精确的存在检测。 本发明还涉及一种包括上述存在检测系统(1)的照明系统。
    • 4. 发明申请
    • A PRESENCE DETECTION SYSTEM AND A LIGHTING SYSTEM.
    • 现状检测系统和照明系统。
    • WO2012093323A1
    • 2012-07-12
    • PCT/IB2011/056002
    • 2011-12-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN DOOREN, MariekeJOHNSON, Mark ThomasCENNINI, Giovanni
    • VAN DOOREN, MariekeJOHNSON, Mark ThomasCENNINI, Giovanni
    • G01S5/16G01S17/48
    • G01S17/06G01S5/16G01S17/48
    • A presence detection systemfor detecting presence of a living being (2) within an area (4), the systemcomprising a first light source (6a) providing light of a first spectrum, a first sensing means (8a;10a) which is arranged to filter the light of the first spectrum. The first sensing means produces a first presence detection signal (12a) based on the light of the first spectrumoriginated from the first light source and reflected from the living being (2). The presence detection system comprises a processor device (14) for concluding the living being's presence within the area (4) based on the first presence detection signal (12a). The processor device provides a position (22a) of the living being (2) within the area based on the intensityofthe first presence detection signal (12a) and based on the known position of the first light source (6a) within the area (4). The invention further relates to a lighting system comprising the above described presence detection system. Fig.
    • 一种存在检测系统,用于检测在区域(4)内存在生物(2)的系统,所述系统包括提供第一光谱的光的第一光源(6a),布置成过滤的第一感测装置(8a; 10a) 第一光谱的光。 第一感测装置基于从第一光源射出的第一光谱并从活体(2)反射的光产生第一存在检测信号(12a)。 存在检测系统包括:处理器装置(14),用于基于第一存在检测信号(12a),在区域(4)内总结生存状态。 处理器装置基于第一存在检测信号(12a)的强度并且基于区域(4)内的第一光源(6a)的已知位置,在区域内提供居住区域(2)的位置(22a) 。 本发明还涉及包括上述存在检测系统的照明系统。 图。
    • 6. 发明申请
    • ILLUMINATION DEVICE COMPRISING A COLLIMATOR
    • 包括胶卷机的照明装置
    • WO2009144668A1
    • 2009-12-03
    • PCT/IB2009/052213
    • 2009-05-27
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VISSENBERG, Michel, C., J., M.BERGMAN, Anthonie, H.DEKKER, TimCENNINI, Giovanni
    • VISSENBERG, Michel, C., J., M.BERGMAN, Anthonie, H.DEKKER, TimCENNINI, Giovanni
    • F21V8/00
    • G02B6/0011G02B6/0045G02B6/0078
    • The invention provides an illumination device (1) comprising a lighting unit (2). The lighting unit (2) comprises a light source (100) and a substantially flat collimator (200), arranged to collimate light source light (111). The collimator (200) has an entrance window (210), an edge window (220), a top collimator surface (201), a bottom collimator surface (202), a first collimating side edge (230) and a second collimating side edge (240). The lighting unit has an optical axis (O). One or more of the top collimator surface (201), the bottomcollimator surface (202), the first collimating side edge (230) and the second collimating side edge (240) comprise n*½ grooves (300), wherein n is a positive integer number, and wherein the grooves (300) independently have a longitudinal axis (301) having a groove direction angle (ω) with the optical axis (O) ≥0º and &and
    • 本发明提供一种包括照明单元(2)的照明装置(1)。 照明单元(2)包括光源(100)和基本平坦的准直器(200),被布置成准直光源光(111)。 准直器(200)具有入口窗口(210),边缘窗口(220),顶部准直器表面(201),底部准直器表面(202),第一准直侧边缘(230)和第二准直侧边缘 (240)。 照明单元具有光轴(O)。 顶部准直器表面(201),底部校准器表面(202),第一准直侧边缘(230)和第二准直侧边缘(240)中的一个或多个包括n * 1/2个凹槽(300),其中n是正的 并且其中所述凹槽(300)独立地具有纵向轴线(301),所述纵向轴线(301)具有光轴(O)= 0°和&和<90°的槽方向角度(θ)。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR IMAGE ANALYSIS
    • WO2011021128A3
    • 2011-02-24
    • PCT/IB2010/053588
    • 2010-08-09
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.JEANNE, VincentKIRENKO, Ihor OlehovychCENNINI, GiovanniSHAO, Ling
    • JEANNE, VincentKIRENKO, Ihor OlehovychCENNINI, GiovanniSHAO, Ling
    • G06K9/00
    • A method of image analysis, includes: obtaining a sequence (37;51) of images, each represented by pixel data; performing a vision-based analysis on at least one of the sequence (37;51) of images to obtain data for classifying a state of a subject represented in the images; - determining at least one value of a physiological parameter of a living being represented in at least some of the sequence (37;51) of images; and classifying a state of the subject using the data obtained with the vision-based analysis and the at least one value of the physiological parameter. The at least one value of the physiological parameter is determined through analysis of image data from the same sequence (37;51) of images from which the at least one image on which the vision-based analysis is performed is taken. A method of enabling remote photoplethysmographic analysis includes: obtaining a sequence (37;51) of images from at least one camera (3), each represented by pixel data representative of reflected ambient light in at least a limited range of wavelengths; and, for at least one measurement zone (41), providing a signal representative of at least variations in a time-varying value of a combination of pixel values at at least a number of image points in the measurement zone (41) for use in determining at least one value of a physiological parameter. At least part of a selected subject represented in the sequence (37;51) of images is tracked, and a directable light source (4) illuminating at least part of the selected subject is controlled.