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    • 2. 发明申请
    • VEHICLE POSITIONING MEASUREMENT SYSTEM AND METHOD
    • 车辆定位测量系统及方法
    • WO2009016551A2
    • 2009-02-05
    • PCT/IB2008/052966
    • 2008-07-24
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHDAMINK, Paulus, H., A,COLAK, Sel, B.RONDA, Cornelis, R.FERI, LorenzoSCHENK, Tim, C., W.
    • DAMINK, Paulus, H., A,COLAK, Sel, B.RONDA, Cornelis, R.FERI, LorenzoSCHENK, Tim, C., W.
    • G01S17/93G01S17/36
    • G01S11/12G01S17/36G01S17/936
    • A vehicle position measurement system (100) and method to determine the (relative) position of a vehicle (110) and an object (120) are proposed. The system comprises at least two light sources (131, 132) capable of emitting light and positioned at a predetermined distance (140) to each other. Furthermore the system comprises at least one detector (150 / 151, 152) capable of measuring the light emitted. The light emitted by the light sources comprises synchronized light source identification codes. The detector is arranged to determine the position of the vehicle (110) and object (120) on the basis of a phase-difference measurement between the light originating from the individual light sources (131, 132) and a comparison phase. The vehicle (110) may comprise the at least two light sources (131, 132) and the detector (151, 152), while the phase-difference is measured between light reflected from the object (120) and the comparison phase. Alternatively, the vehicle (110) may comprise the at least two light sources (131, 132) while the object (120) comprises the detector (150) and the detector is arranged to obtain the comparison phase from the light received from one of the light sources (131, 132). The object may be a vehicle.
    • 提出了一种用于确定车辆(110)和物体(120)的(相对)位置的车辆位置测量系统(100)和方法。 该系统包括能够发光并且彼此以预定距离(140)定位的至少两个光源(131,132)。 此外,该系统包括能够测量发射的光的至少一个检测器(150 / 151,152)。 由光源发出的光包括同步的光源识别码。 检测器被布置成基于来自各个光源(131,132)的光和比较相位之间的相位差测量来确定车辆(110)和物体(120)的位置。 车辆(110)可以包括至少两个光源(131,132)和检测器(151,152),同时在从物体(120)反射的光与比较相位之间测量相位差。 或者,车辆(110)可以包括至少两个光源(131,132),而物体(120)包括检测器(150),并且检测器被设置成从从 光源(131,132)。 物体可以是车辆。
    • 4. 发明申请
    • OBJECT LOCALIZATION METHOD, SYSTEM, TAG, AND USER INTERFACE DEVICE
    • 对象本地化方法,系统,标签和用户界面设备
    • WO2008152545A1
    • 2008-12-18
    • PCT/IB2008/052231
    • 2008-06-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN DE SLUIS, Bartel, M.FERI, LorenzoSCHENK, Tim, C., W.COLAK, Sel, B.DAMINK, Paulus, H., A.PENNING DE VRIES, Hendricus, T., G., M.
    • VAN DE SLUIS, Bartel, M.FERI, LorenzoSCHENK, Tim, C., W.COLAK, Sel, B.DAMINK, Paulus, H., A.PENNING DE VRIES, Hendricus, T., G., M.
    • G01S5/16
    • G01S5/16G01S1/70
    • Proposed is an object localization method, system and user interface device for locating a (misplaced) object (10) in an area of a construction (1). The method comprises the steps of (i) identifying the object (10), (ii) providing an illumination device (20) comprising a plurality of light sources (30) modulated to emit light comprising light source identification codes (35), (iii) illuminating the tag (11) with light emitted by the light sources (30), (iv) requesting the tag (11) to measure the illumination and to identify the light sources (30) illuminating the tag by their light source identification codes (35), (v) transmitting object location data from the tag (11) relating to the measured illumination and light source identification codes (35) to a master controller (25) arranged to control the illumination device (20), (vi) providing a feedback signal related to the object (10) using the master controller (25). The method is characterized by using a lighting infrastructure (27) of the construction (1) in providing the illumination device (20). Advantageously, the method enables a user to obtain a feedback signal about the location of the desired object without the need to move through the construction. Instead, the method enables the user to locate many objects within a construction or area from a single fixed position.
    • 提出了一种用于在构造区域(1)中定位(放置的)物体(10)的物体定位方法,系统和用户界面装置。 该方法包括以下步骤:(i)识别物体(10),(ii)提供照明装置(20),该照明装置包括被调制以发射光的多个光源(30),包括光源识别码(35),(iii )用光源(30)发射的光照亮标签(11),(iv)请求标签(11)测量照明并识别通过其光源识别码照亮标签的光源(30) (v)将与测量的照明和光源识别码(35)有关的标签(11)的物体位置数据传送到布置成控制照明装置(20)的主控制器(25),(vi)提供 使用主控制器(25)与对象(10)相关的反馈信号。 该方法的特征在于使用构造(1)的照明基础设施(27)来提供照明装置(20)。 有利地,该方法使得用户能够获得关于期望对象的位置的反馈信号,而不需要移动通过结构。 相反,该方法使得用户能够从单个固定位置定位建筑物或区域内的许多对象。
    • 6. 发明申请
    • A COLOR CONTROLLED LIGHT SOURCE AND A METHOD FOR CONTROLLING COLOR GENERATION IN A LIGHT SOURCE
    • 一种颜色控制的光源和一种用于控制光源中颜色生成的方法
    • WO2008050294A1
    • 2008-05-02
    • PCT/IB2007/054306
    • 2007-10-23
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHULZ, VolkmarACKERMANN, BerndFERI, Lorenzo
    • SCHULZ, VolkmarACKERMANN, BerndFERI, Lorenzo
    • H05B33/08
    • H05B33/0869H05B33/0818Y02B20/341
    • This invention relates to a color controlled light source comprising a plurality of colored light elements; a detector for detecting the light output of the light source and generating a detection signal; and a color control unit for generating driving signals to said light elements on the basis of said detection signal and a predetermined target color point of the light output of the light source. In order to enable detection of contributions from individual light elements to the light output of the light source, the light source further comprises a modulator for individual signature modulation of the driving signal to each one of said light elements; and a corresponding demodulator for demodulation of said detection signal and generation of actual, i.e. measured, values of the output of the individual light elements. The color control unit determines nominal values of the light output of each light element for obtaining said target color point, and compares the actual values with the nominal values. If there is a difference, it adjusts the driving signals in order to minimize the difference.
    • 本发明涉及一种包含多个有色光元件的色控光源; 用于检测光源的光输出并产生检测信号的检测器; 以及颜色控制单元,用于根据所述检测信号和光源的光输出的预定目标色点产生对所述光元件的驱动信号。 为了能够检测来自各个光元件对光源的光输出的贡献,光源还包括调制器,用于将驱动信号单独地签名调制到每个所述光元件; 以及相应的解调器,用于解调所述检测信号并产生实际的,即测量的各个光源的输出的值。 颜色控制单元确定用于获得所述目标色点的每个光元件的光输出的标称值,并将实际值与标称值进行比较。 如果存在差异,则会调整驱动信号,以最小化差异。