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Combating latency in haptic collaborative virtual environments

机译:对抗触觉协作虚拟环境中的延迟

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Haptic (force) feedback is increasingly being used in surgical-training simulators. The addition of "touch" is important extra information that can add another dimension to the realism of the experience. Progress in networking these systems together over long distances has been held back, principally because the latency of the network can induce severe instability in any dynamic objects in the scene. This paper describes techniques allowing long-distance sharing of haptic-enabled, dynamic scenes. At the CSIRO Virtual Environments Laboratory, we have successfully used this system to connect a prototype of a surgical-simulation application between participants on opposite sides of the world in Sweden and Australia, over a standard Internet connection spanning 3 continents and 2 oceans. The users were able to simultaneously manipulate pliable objects in a shared workspace, as well as guide each other's "hands" (and shake hands!) over 22,000 km (13620 miles) of Internet connection.The main obstacle to overcome was the latency-induced instability in the system, caused by the delays and jitter inherent in the network. Our system involved a combination of an event-collection mechanism, a network event-forwarding mechanism and a "pseudophysics" mechanism. We found that the resulting behavior of the interconnected body organs, under simultaneous-user manipulation, was sufficiently convincing to be considered for training surgical procedures.
机译:触觉(力)反馈越来越多地用于外科手术训练模拟器中。 “触摸”的添加是重要的额外信息,可以为体验的真实感增加新的维度。长距离将这些系统联网在一起的进展一直受到阻碍,这主要是因为网络的延迟会导致场景中任何动态物体的严重不稳定。本文介绍了允许远距离共享启用触觉的动态场景的技术。在CSIRO虚拟环境实验室中,我们已经成功地使用该系统,通过跨越3大洲和2大洋的标准Internet连接,在瑞典和澳大利亚的世界另一端的参与者之间连接了手术模拟应用程序的原型。用户能够在共享的工作空间中同时操纵柔韧的对象,并在22,000公里(13620英里)的Internet连接中互相引导对方的“手”(和握手!)。克服的主要障碍是延迟引起的网络中固有的延迟和抖动导致系统不稳定。我们的系统涉及事件收集机制,网络事件转发机制和“伪物理”机制的组合。我们发现,在同时进行用户操作的情况下,相互连接的身体器官产生的行为足够令人信服,可以考虑用于培训手术程序。

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