论文标题

自动校准六度姿势估计系统

Automatic Calibration of a Six-Degrees-of-Freedom Pose Estimation System

论文作者

Jansen, Wouter, Laurijssen, Dennis, Daems, Walter, Steckel, Jan

论文摘要

估计六度自由人体姿势的系统已有二十年多了。诸如运动捕获摄像机,高级游戏外围设备以及最近深度学习技术和虚拟现实系统等技术都显示出令人印象深刻的结果。但是,大多数提供高精度和高精度的系统都是昂贵的,并且不容易操作。最近,已经进行了研究,以使用HTC Vive虚拟现实系统估算人体姿势。该系统显示出准确的结果,同时将成本保持在1000美元以下。该系统使用光学方法。两个发射器设备通过在接收器硬件上使用照片二极管来跟踪红外脉冲和激光平面。使用这些发射器设备与低成本定制接收器硬件相结合的系统是先前开发的,但需要手动测量发射机设备的位置和方向。这些手动测量可能很耗时,容易出错,并且在特定设置中不可能。我们提出了一种算法,以使用自定义接收器/校准硬件的任何选择的环境中自动校准发射机设备的姿势。结果表明,校准在各种设置中起作用,同时比手动测量所允许的更准确。此外,校准运动和速度对结果的精度没有明显的影响。

Systems for estimating the six-degrees-of-freedom human body pose have been improving for over two decades. Technologies such as motion capture cameras, advanced gaming peripherals and more recently both deep learning techniques and virtual reality systems have shown impressive results. However, most systems that provide high accuracy and high precision are expensive and not easy to operate. Recently, research has been carried out to estimate the human body pose using the HTC Vive virtual reality system. This system shows accurate results while keeping the cost under a 1000 USD. This system uses an optical approach. Two transmitter devices emit infrared pulses and laser planes are tracked by use of photo diodes on receiver hardware. A system using these transmitter devices combined with low-cost custom-made receiver hardware was developed previously but requires manual measurement of the position and orientation of the transmitter devices. These manual measurements can be time consuming, prone to error and not possible in particular setups. We propose an algorithm to automatically calibrate the poses of the transmitter devices in any chosen environment with custom receiver/calibration hardware. Results show that the calibration works in a variety of setups while being more accurate than what manual measurements would allow. Furthermore, the calibration movement and speed has no noticeable influence on the precision of the results.

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