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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
    • WO2009016551A8
    • 2016-06-02
    • PCT/IB2008052966
    • 2008-07-24
    • KONINKL PHILIPS ELECTRONICS NVPHILIPS INTELLECTUAL PROPERTYDAMINK PAULUS H ACOLAK SEL BRONDA CORNELIS RFERI LORENZOSCHENK TIM C W
    • DAMINK PAULUS H ACOLAK SEL BRONDA CORNELIS RFERI LORENZOSCHENK TIM C W
    • G01S5/16G01S11/12G01S17/87
    • 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。
    • 3. 发明申请
    • VEHICLE POSITIONING MEASUREMENT SYSTEM AND METHOD
    • 车辆定位测量系统和方法
    • WO2009016551A3
    • 2009-04-09
    • PCT/IB2008052966
    • 2008-07-24
    • KONINKL PHILIPS ELECTRONICS NVPHILIPS INTELLECTUAL PROPERTYDAMINK PAULUS H ACOLAK SEL BRONDA CORNELIS RFERI LORENZOSCHENK TIM C W
    • DAMINK PAULUS H ACOLAK SEL BRONDA CORNELIS RFERI LORENZOSCHENK TIM C W
    • G01S5/16G01S11/12G01S17/87
    • 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。 该系统包括至少两个能够发光的光源(131,132)并且彼此间隔预定距离(140)。 此外,该系统包括至少一个能够测量发射的光的探测器(150 / 151,152)。 由光源发射的光包括同步的光源识别码。 检测器被布置成基于源自各个光源(131,132)的光与比较阶段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。 可选地,当物体(120)包括检测器(150)时,车辆(110)可以包括至少两个光源(131,132),并且检测器被布置为从从其中一个 光源(131,132)。 该物体可以是车辆。
    • 4. 发明申请
    • DIRECTION CONTROLLABLE LIGHTING UNIT
    • 方向控制照明单元
    • WO2008155697A3
    • 2010-01-21
    • PCT/IB2008052341
    • 2008-06-13
    • KONINKL PHILIPS ELECTRONICS NVSCHENK TIM C WFERI LORENZOYANG HONGMING
    • SCHENK TIM C WFERI LORENZOYANG HONGMING
    • H05B37/02H05B33/08
    • H05B37/0272F21V21/15F21Y2113/20H05B33/0803H05B37/0245H05B37/029
    • A direction controllable lighting unit (10) and use thereof in a lighting system (40) are described. A lighting unit (10) has means (16) for directing the light emission (22) into different directions. A plurality of light sources (20a, 20b) are mounted on a common body (14). The light sources (20a, 20b) are disposed to emit directed light into different directions. The light is modulated to contain identification codes 'A', 'B', which are unique. Within the lighting system (40), an optical sensor (46) is arranged in a region illuminated by the lighting unit (10). The optical sensor (46) demodulates the received light according to the identification code. A control unit (44) is connected to the optical sensor (46) and to the lighting unit (10) to control the direction of the lighting unit (10) based on information from the optical sensor (46).
    • 描述了方向可控照明单元(10)及其在照明系统(40)中的用途。 照明单元(10)具有用于将光发射(22)引导到不同方向的装置(16)。 多个光源(20a,20b)安装在公共体(14)上。 光源(20a,20b)设置成朝向不同方向发射指向的光。 光被调制成包含唯一的识别码'A','B'。 在照明系统(40)内,在由照明单元(10)照射的区域中布置有光学传感器(46)。 光传感器(46)根据识别码对接收到的光进行解调。 控制单元(44)连接到光学传感器(46)和照明单元(10),以根据来自光学传感器(46)的信息来控制照明单元(10)的方向。
    • 7. 发明申请
    • CONFIGURATION OF A LUMINAIRE SYSTEM
    • 灯泡系统的配置
    • WO2009112996A3
    • 2009-11-05
    • PCT/IB2009050956
    • 2009-03-09
    • KONINKL PHILIPS ELECTRONICS NVSCHENK TIM C WDEIXLER PETERFERI LORENZO
    • SCHENK TIM C WDEIXLER PETERFERI LORENZO
    • H05B37/02
    • H05B37/0272
    • There is provided a method for advanced configurationand initialization of a luminaire system. The luminaire system comprises one or more lighting devices (102), an apparatus (104) and a user interface (106). The apparatus comprises a light sensor. One or more ofthe lighting devices are not connected to a central controller by means of a wired/wireless connection. Therefore, techniques and procedures to use manualinteraction 5 by an operator (114) to control these lighting devices are proposed. The proposed techniques enable backward compatible and low-cost implementations of advanced luminaire initialization and configuration. Moreover, this invention proposes to combine the user input, sensing and control functionality into one device, thereby reducing the total cost of implementation and ownership of the proposed system. A corresponding system and 10 apparatus are also presented.
    • 提供了一种用于灯具系统的高级配置和初始化的方法。 照明系统包括一个或多个照明装置(102),装置(104)和用户界面(106)。 该装置包括光传感器。 一个或多个照明装置不通过有线/无线连接连接到中央控制器。 因此,提出了由操作者(114)使用手动相互作用5来控制这些照明装置的技术和程序。 所提出的技术实现了先进的灯具初始化和配置的向后兼容和低成本的实现。 此外,本发明提出将用户输入,感测和控制功能组合到一个设备中,从而降低了所提出的系统的实现和所有权的总成本。 还提出了相应的系统和10装置。
    • 8. 发明申请
    • DIRECTION CONTROLLABLE LIGHTING UNIT WITH ULTRASOUND
    • 带超声波的方向控制照明单元
    • WO2009063411A3
    • 2009-07-09
    • PCT/IB2008054738
    • 2008-11-12
    • KONINKL PHILIPS ELECTRONICS NVSCHENK TIM C WFERI LORENZOPENNING DE VRIES HENDRICUS T G
    • SCHENK TIM C WFERI LORENZOPENNING DE VRIES HENDRICUS T G
    • H05B37/02
    • F21V14/02G01S3/801G01S11/14H05B33/0803H05B33/086H05B37/029
    • A direction controllable lighting unit 10 for use in a lighting system is described. The light emission of the lighting unit 10 may be directed into different direc¬ tions, e. g. by use of a mechanically movable element 14, 60. At least two ultrasound transmitters 20a, 20b, or ultrasound receivers 21a, 21b are disposed at the lighting unit 10 such that they differ in position, or in direction or shape of the spatial intensity distri¬ bution or spatial distribution of reception sensitivity. A mobile control element 46 has at least one corresponding ultrasound transmitter or receiver 50. A difference between a signal from a transmitter received at multiple receivers, or a signal of multiple transmitters received at a single receiver is used to determine a relative direction of the direction controllable lighting unit 10 and the control element 46, and to control the direction of the lighting unit 10 in dependence thereof.
    • 描述了用于照明系统中的方向可控照明单元10。 照明单元10的发光可以被引导到不同的方向,例如, G。 通过使用机械可移动元件14,60。至少两个超声波发射器20a,20b或超声波接收器21a,21b设置在照明单元10处,使得它们在空间强度分布的位置或方向或形状上不同 接收灵敏度的对接或空间分布。 移动控制元件46具有至少一个对应的超声发射器或接收器50.来自在多个接收器处接收的发射器的信号或在单个接收机处接收的多个发射机的信号之间的差异用于确定方向的相对方向 可控照明单元10和控制元件46,并且依照其控制照明单元10的方向。