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An indoor performance comparison of time-of-flight depthcameras

机译:室内性能比较飞行时间的深度景观

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摘要

The use of depth sensors for precision animal management has grown in recent years, with the ability to capture animals in many different lighting conditions. Time-of-flight (TOF) cameras are a technology that has demonstrated good performance for capturing images in indoor conditions However, with the continuous turnover in commercially available cameras, there is a need for an objective comparison between cameras. Cameras with different sensors and optics can greatly vary in terms of accuracy and repeatability. The objective of this study is to test three time-of-flight cameras for distance and object dimension accuracy: Pico Flexx, Kinect v.2, and Pico Zense. Images from each camera were collected while viewing three different sizes of foam boards in four different positions within the images, with distances ranging from 1 to 3 m. Dimensions of the boards collectedfrom the images include maximum length (row and column), area, and distance from the cameras. Statistical measures were used to compare the data obtained from the images in relation to the distance, size and position parameters . The results show that the cameras achieved similar accuracy. Pico Flexx presented the best results for distance and Pico Zense the best results for dimensionmeasurements (area, row, and column). Length measurements were significantly affected by the position of the object within the image for both Pico Flexx and Kinect v.2. Board sizes did not significantly influence dimension measurents collected from theimages.
机译:近年来,利用深度传感器进行精密动物管理,捕捉动物在许多不同的照明条件下的能力。飞行时间(TOF)相机是一种技术,该技术已经表现出捕捉室内条件中的图像的良好性能,然而,随着商业上可获得的相机的连续转换,需要在相机之间进行目标比较。具有不同传感器和光学器件的摄像机可以在准确性和可重复性方面大大变化。本研究的目的是测试三个飞行时间摄像机,用于距离和物体尺寸精度:Pico Flexx,Kinect V.2和Pico Zense。收集来自每种摄像机的图像,同时在图像内的四个不同位置观看三种不同尺寸的泡沫板,距离为1到3米。从图像收集的板的尺寸包括最大长度(行和列),区域和距离摄像机的距离。使用统计措施来比较与距离,大小和位置参数相关的图像获得的数据。结果表明,相机达到了类似的准确性。 Pico Flexx向距离和微微Zense提供了最佳结果,最佳结果是尺寸释放(区域,行和列)。对于Pico Flexx和Kinect V.2的图像内的物体位置的位置,长度测量值显着影响。板尺寸没有显着影响从模仿收集的尺寸测量值。

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