首页> 外文会议>International symposium on photoelectronic detection and imaging;ISPDI 2011 >Optimized design of a LED-array-based TOF range imaging sensor for fast 3-D shape measurement
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Optimized design of a LED-array-based TOF range imaging sensor for fast 3-D shape measurement

机译:用于快速3D形状测量的基于LED阵列的TOF范围成像传感器的优化设计

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A LED-array-based range imaging sensor using Time-of-Flight (TOF) distance measurement was developed to capture the depth information of three-dimensional (3-D) object. By time-division electronic scanning of the LED heterodyne phase-shift TOF range finders in array, the range images were fast obtained without any mechanical moving parts. The design of LED-array-based range imaging sensor was adequately described and a range imaging theoretical model based on photoelectric signal processing was built, which showed there was mutual restriction relationship among the measurement time of a depth pixel, the bandwidth of receiver and the sensor's signal-to-noise ratio (SNR). In order to improve the key parameters of sensor such as range resolution and measurement speed simultaneously, some optimized designs needed to be done for the proposed range imaging sensor, including choosing proper parameters for the filters in receiver, adopting special structure feedback automatic gain control (AGC) circuit with short response time, etc. The final experiment results showed the sensor after optimization could acquire the range images at a rate of 10 frames per second with a range resolution as high as ±2mm in the range of 50-1200mm. The essential advantages of the proposed range imaging sensor were construction with simple structure, high range resolution, short measurement time and low cost, which was sufficient for many robotic and industrial automation applications.
机译:开发了一种使用飞行时间(TOF)距离测量的基于LED阵列的距离成像传感器,以捕获三维(3-D)对象的深度信息。通过对阵列中的LED外差相移TOF测距仪进行时分电子扫描,无需任何机械运动部件即可快速获得测距图像。充分描述了基于LED阵列的距离成像传感器的设计,建立了基于光电信号处理的距离成像理论模型,表明深度像素的测量时间,接收带宽与接收带宽之间存在相互制约的关系。传感器的信噪比(SNR)。为了同时改善传感器的关键参数(例如距离分辨率和测量速度),需要对拟议的距离成像传感器进行一些优化设计,包括为接收器中的滤波器选择合适的参数,采用特殊的结构反馈自动增益控制(最终的实验结果表明,优化后的传感器可以以每秒10帧的速度获取距离图像,并且在50-1200mm的范围内具有高达±2mm的距离分辨率。所提出的距离成像传感器的主要优点是结构简单,距离分辨率高,测量时间短且成本低,足以满足许多机器人和工业自动化应用的需要。

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