咨询与建议

看过本文的还看了

相关文献

该作者的其他文献

文献详情 >Latency and Distortion of Elec... 收藏

Latency and Distortion of Electromagnetic Trackers for Augmented Reality Systems

增强现实系统电磁跟踪器的延迟和失真

丛 书 名:Synthesis Lectures on Algorithms and Software in Engineering

作     者:Himberg, Henry Motai, Yuichi 

I S B N:(纸本) 9781627055079 

出 版 社:Morgan & Claypool Publishers 

出 版 年:2014年

主 题 词:Augmented reality Tracking (Engineering) 

学科分类:080902[工学-电路与系统] 0809[工学-电子科学与技术(可授工学、理学学位)] 08[工学] 0802[工学-机械工程] 

摘      要:Augmented reality (AR) systems are often used to superimpose virtual objects or information on a scene to improve situational awareness. Delays in the display system or inaccurate registration of objects destroy the sense of immersion a user experiences when using AR systems. AC electromagnetic trackers are ideal for these applications when combined with head orientation prediction to compensate for display system delays. Unfortunately, these trackers do not perform well in environments that contain conductive or ferrous materials due to magnetic field distortion without expensive calibration techniques. In our work we focus on both the prediction and distortion compensation aspects of this application, developing a small footprint predictive filter for display lag compensation and a simplified calibration system for AC magnetic trackers. In the first phase of our study we presented a novel method of tracking angular head velocity from quaternion orientation using an Extended Kalman Filter in both single model (DQEKF) and multiple model (MMDQ) implementations. In the second phase of our work we have developed a new method of mapping the magnetic field generated by the tracker without high precision measurement equipment. This method uses simple fixtures with multiple sensors in a rigid geometry to collect magnetic field data in the tracking volume. We have developed a new algorithm to process the collected data and generate a map of the magnetic field distortion that can be used to compensate distorted measurement data.

读者评论 与其他读者分享你的观点

用户名:未登录
我的评分