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ACCURACY TEST OF MICROSOFT KINECT FOR HUMAN MORPHOLOGIC MEASUREMENTS

机译:Microsoft Kinect对人形态测量的准确性测试

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The Microsoft Kinect sensor, a popular gaming console, is widely used in a large number of applications, including close-range 3D measurements. This low-end device is rather inexpensive compared to similar active imaging systems. The Kinect sensors include an RGB camera, an IR projector, an IR camera and an audio unit. The human morphologic measurements require high accuracy with fast data acquisition rate. To achieve the highest accuracy, the depth sensor and the RGB camera should be calibrated and co-registered to achieve high-quality 3D point cloud as well as optical imagery. Since this is a low-end sensor, developed for different purpose, the accuracy could be critical for 3D measurement-based applications. Therefore, two types of accuracy test are performed: (1) for describing the absolute accuracy, the ranging accuracy of the device in the range of 0.4 to 15 m should be estimated, and (2) the relative accuracy of points depending on the range should be characterized. For the accuracy investigation, a test field was created with two spheres, while the relative accuracy is described by sphere fitting performance and the distance estimation between the sphere center points. Some other factors can be also considered, such as the angle of incidence or the material used in these tests. The non-ambiguity range of the sensor is from 0.3 to 4 m, but, based on our experiences, it can be extended up to 20m. Obviously, this methodology raises some accuracy issues which make accuracy testing really important.
机译:微软的Kinect传感器,一个流行的游戏机,被广泛应用于大量的应用,包括近景三维测量。相比同类有源成像系统中,该低端设备是相当便宜。 Kinect的传感器包括RGB照相机,IR投影仪,IR摄像机和音频单元。人类的形态测量需要快速数据采集速率高的精度。为达到最高的精度,深度传感器和RGB相机应校准和共同配准以实现高质量的3D点云以及光学图像。由于这是一个低端传感器,用于不同的目的开发的,准确度可能是用于3D基于测量的应用是关键性的。因此,执行两种类型的准确度测试的:(1)用于说明绝对精度,所述装置的在0.4至15μm的范围内的测距精度应取决于范围估计,和(2)点的相对精度应定性。对于精确度的调查,测试场用两个球体创建的,而相对精度是由球接头的性能和球体中心的点之间的距离估计所述。一些其他因素也可以考虑,例如入射角或在这些测试中使用的材料。传感器的非模糊度范围是从0.3到4米,但,根据我们的经验,它可以扩展高达20m。显然,这种方法提出了一些精确性的问题,这使得精度测试非常重要。

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