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    • 7. 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。
    • 9. 发明申请
    • A LUMINESCENT PHOTOVOLTAIC GENERATOR AND A WAVEGUIDE FOR USE IN A PHOTOVOLTAIC GENERATOR
    • 用于光伏发电机的发光光伏发电机和波导
    • WO2010067296A1
    • 2010-06-17
    • PCT/IB2009/055539
    • 2009-12-07
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHRONDA, Cornelis, R.DE BOER, Dirk, K., G.
    • RONDA, Cornelis, R.DE BOER, Dirk, K., G.
    • H01L31/0232H01L31/0216
    • H01L31/055C09K11/02C09K11/7776C09K11/7792H01L31/02168Y02E10/52
    • The present invention relates to a luminescent photovoltaic generator (1) and a waveguide for use in such a photovoltaic generator. The photovoltaic generator comprises a photovoltaic cell (4) and a waveguide comprising a transparent matrix (2) having particles of an inorganic luminescent material dispersed therein and/or an inorganic luminescent material disposed at at least one side thereof (6). The waveguide is associated with the photovoltaic cell (4), such that, in use, at least some of the light emitted from the luminescent material passes into the photovoltaic cell (4) to generate a voltage in the cell. In preferred embodiments, the inorganic luminescent material is a line emitter and the emission is due to a forbidden electronic transition within the material. The inorganic luminescent material may be selected from an inorganic phosphor, an inorganic fluorescent material and quantum dots, quantum rods and quantum core/shell systems. The photovoltaic generator (1) is an alternative to or an improvement upon known photovoltaic generators, which generally suffer from a lack of power yield per area.
    • 本发明涉及发光光伏发电机(1)和用于这种光伏发电机的波导管。 光伏发电机包括光伏电池(4)和波导,其包括其中分散有无机发光材料颗粒的透明基体(2)和/或设置在其至少一侧的无机发光材料(6)。 波导与光伏电池(4)相关联,使得在使用中,从发光材料发射的至少一些光进入光伏电池(4)以在电池中产生电压。 在优选的实施方案中,无机发光材料是线发射体,并且发射是由于材料内禁止的电子跃迁。 无机发光材料可以选自无机荧光体,无机荧光材料和量子点,量子棒和量子核/壳体系。 光伏发电机(1)是已知的光伏发电机的替代或改进,其通常遭受每个区域的功率损耗的缺乏。