会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Sensor device with tilting or orientation-correcting photo sensor for atmosphere creation
    • 传感器设备,具有倾斜或定向校正光电传感器,用于创造气氛
    • US08471188B2
    • 2013-06-25
    • US12863204
    • 2009-01-19
    • Tim Corneel Wilhelmus SchenkPaulus Henricus Antonius DaminkLorenzo Feri
    • Tim Corneel Wilhelmus SchenkPaulus Henricus Antonius DaminkLorenzo Feri
    • H01J40/14
    • H05B37/0245H05B37/0218Y02B20/46
    • The present invention relates to a method and a device for controlling a physical property of light emitted from a light source. In particular, the invention can be applied to a lighting system for atmosphere creation. The measurements needed for feedback control are made at a portable user device comprising a planar photodetector. More or less all industrially available photodetectors are of the planar type, but planarity is in fact a necessary feature to achieve faithful relative measurements. Since the user device is portable, variations in the orientation of the photodetector can introduce large and unpredictable measurement errors, making effective control of the light source impossible. According to one embodiment of the invention, the orientation-dependent errors are eliminated by measuring the actual orientation of the photodetector and processing the detection signal appropriately. According to a second embodiment, the photodetector is movably mounted in the user device in order to retain its preferred orientation irrespective of the orientation of the user device. In a third embodiment, the emitted light is monitored by a plurality of photodetectors; knowing the actual orientation of the user device, the control device can give priority to the measurements coming from the best oriented photodetector at every instant.
    • 本发明涉及一种用于控制从光源发出的光的物理性质的方法和装置。 特别地,本发明可以应用于用于创造气氛的照明系统。 在包括平面光电检测器的便携式用户设备处进行反馈控制所需的测量。 或多或少所有工业上可用的光电探测器是平面型的,但平面性其实是实现忠实的相对测量的必要特征。 由于用户装置是便携式的,所以光电检测器的取向的变化可引起大的和不可预知的测量误差,从而不可能对光源进行有效的控制。 根据本发明的一个实施例,通过测量光电检测器的实际取向并适当地处理检测信号来消除取向相关误差。 根据第二实施例,光电检测器可移动地安装在用户装置中,以便保持其优选的取向,而与用户装置的取向无关。 在第三实施例中,发射的光被多个光电探测器监视; 知道用户设备的实际方向,控制设备可以在每一时刻优先考虑来自最佳定向光电探测器的测量。
    • 5. 发明授权
    • Vehicle positioning measurement system and method
    • 车辆定位测量系统及方法
    • US08174683B2
    • 2012-05-08
    • US12670440
    • 2008-07-24
    • Paulus Henricus Antonius DaminkSel Brian ColakCornelis Reinder RondaLorenzo FeriTim Corneel Wilhelmus Schenk
    • Paulus Henricus Antonius DaminkSel Brian ColakCornelis Reinder RondaLorenzo FeriTim Corneel Wilhelmus Schenk
    • G01C3/08
    • 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。
    • 6. 发明申请
    • SENSOR DEVICE WITH TILTING OR ORIENTATION-CORRECTING PHOTO SENSOR FOR ATMOSPHERE CREATION
    • 传感器装置,带有倾斜或方向校正的照片传感器,用于大气创造
    • US20110266415A1
    • 2011-11-03
    • US12863204
    • 2009-01-19
    • Tim Corneel Wilhelmus SchenkPaulus Henricus Antonius DaminkLorenzo Feri
    • Tim Corneel Wilhelmus SchenkPaulus Henricus Antonius DaminkLorenzo Feri
    • G01J1/20
    • H05B37/0245H05B37/0218Y02B20/46
    • The present invention relates to a method and a device for controlling a physical property of light emitted from a light source. In particular, the invention can be applied to a lighting system for atmosphere creation. The measurements needed for feedback control are made at a portable user device comprising a planar photodetector. More or less all industrially available photodetectors are of the planar type, but planarity is in fact a necessary feature to achieve faithful relative measurements. Since the user device is portable, variations in the orientation of the photodetector can introduce large and unpredictable measurement errors, making effective control of the light source impossible. According to one embodiment of the invention, the orientation-dependent errors are eliminated by measuring the actual orientation of the photodetector and processing the detection signal appropriately. According to a second embodiment, the photodetector is movably mounted in the user device in order to retain its preferred orientation irrespective of the orientation of the user device. In a third embodiment, the emitted light is monitored by a plurality of photodetectors; knowing the actual orientation of the user device, the control device can give priority to the measurements coming from the best oriented photodetector at every instant.
    • 本发明涉及一种用于控制从光源发出的光的物理性质的方法和装置。 特别地,本发明可以应用于用于创造气氛的照明系统。 在包括平面光电检测器的便携式用户设备处进行反馈控制所需的测量。 或多或少所有工业上可用的光电探测器是平面型的,但平面性其实是实现忠实的相对测量的必要特征。 由于用户装置是便携式的,所以光电检测器的取向的变化可引起大的和不可预知的测量误差,从而不可能对光源进行有效的控制。 根据本发明的一个实施例,通过测量光电检测器的实际取向并适当地处理检测信号来消除取向相关误差。 根据第二实施例,光电检测器可移动地安装在用户装置中,以便保持其优选的取向,而与用户装置的取向无关。 在第三实施例中,发射的光被多个光电探测器监视; 知道用户设备的实际方向,控制设备可以在每一时刻优先考虑来自最佳定向光电探测器的测量。