用镜头变形制造移动错觉,缓解远程操控延迟问题
Deformation of the panoramic sphere into an ellipsoid to induce self-motion in telepresence users
- 通过球面变形为椭球诱导用户产生自我移动错觉
- 500毫秒延迟下对任务完成时间和碰撞率无显著改善
- 可能加剧虚拟现实晕动症,需进一步优化
移动远程操控机器人使用户可通过技术感知并探索远程环境。传统系统依赖安装在移动机器人上的摄像头进行控制。尽管360度摄像头等高沉浸技术可提升情境感知和存在感,但也带来显著挑战:额外处理与带宽需求常导致高达数秒的延迟,使实时控制困难。高延迟系统需用户辅助机制。本研究提出一种新方法,利用光流在用户发送运动指令与通过360°相机流看到实际动作之间的延迟期内,制造自我移动的错觉。实验发现,在500毫秒延迟下,该错觉对任务完成时间与物体碰撞率无显著改善。部分证据显示,该方法可能通过模拟器晕动症问卷(SSQ)测量增加虚拟现实晕动症。结论认为,需进一步调整才能使该方法具备可行性。
原文摘要 · Abstract (English)
Mobile telepresence robots allow users to feel present and explore remote environments using technology. Traditionally, these systems are implemented using a camera onboard a mobile robot that can be controlled. Although high-immersion technologies, such as 360-degree cameras, can increase situational awareness and presence, they also introduce significant challenges. Additional processing and bandwidth requirements often result in latencies of up to seconds. The current delay with a 360-degree camera streaming over the internet makes real-time control of these systems difficult. Working with high-latency systems requires some form of assistance to the users. This study presents a novel way to utilize optical flow to create an illusion of self-motion to the user during the latency period between user sending motion commands to the robot and seeing the actual motion through the 360-camera stream. We find no significant benefit of using the self-motion illusion to performance or accuracy of controlling a telepresence robot with a latency of 500 ms, as measured by the task completion time and collisions into objects. Some evidence is shown that the method might increase virtual reality (VR) sickness, as measured by the simulator sickness questionnaire (SSQ). We conclude that further adjustments are necessary in order to render the method viable.
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