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IMPROVEMENTS IN OR RELATING TO THE PROCESSING OF TIME-OF-FLIGHT SIGNALS

机译:飞行时间信号处理中的或与之相关的改进

摘要

Described herein is a method and sensor of processing time-of-flight (TOF) signals in a TOF camera system including an illumination unit and an imaging sensor. The method comprises illuminating the scene with light at a first frequency, detecting reflected light from at least one object in the scene at the first frequency, and determining a phase measurement using I and Q values. In addition, the scene is illuminated with light at a second frequency, the second frequency being 2n of the first frequency where n=1, 2, . . . , etc., and the signs of I and Q values for both the first and second frequencies is used to determine the presence of aliasing in the phase measurement so that it can be corrected. The phase measurement is then corrected for aliasing and the effective range of the TOF camera system is extended by multiples of 2n. In addition, relative signal strength needs to be considered in accordance with the reflectivity of objects within the scene. For a reflectivity of 4% and no aliasing, the ability to detect an object decreases with distance (30). For an aliased phase measurement for an object with a reflectivity of 100%, the ability to detect the object is substantially constant (35).
机译:本文描述了一种在包括照明单元和成像传感器的TOF相机系统中处理飞行时间(TOF)信号的方法和传感器。该方法包括:以第一频率的光照射场景;以第一频率检测来自场景中至少一个物体的反射光;以及使用I和Q值确定相位测量。另外,用第二频率的光照明场景,第二频率是第一频率的2n,其中n = 1、2,...。 。 。等等,并且第一频率和第二频率的I和Q值的符号用于确定相位测量中混叠的存在,以便可以对其进行校正。然后校正相位测量以消除混叠,并将TOF摄像机系统的有效范围扩展2n的倍数。另外,需要根据场景内物体的反射率来考虑相对信号强度。对于4%的反射率且无混叠,检测物体的能力随距离而降低(30)。对于具有100%反射率的对象的混叠相位测量,检测对象的能力基本恒定(35)。

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