基于输入-状态稳定性方法的延时遥操作触觉数据缩减

Xiao Xu, Li-Yu Daisy Liu, E. Steinbach
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引用次数: 5

摘要

在分组交换网络中,具有触觉反馈的延时远程操作存在两个主要挑战:双向交换触觉数据的高分组速率和存在通信延迟的系统稳定性的维持。对于前者,保证触觉信息的高更新率(≥1khz)需要大量的传输资源。对于后者,必须采用保证稳定的控制体系来保证系统的稳定性。为了实现稳定的系统设计和高效的触觉数据通信,遥操作系统需要同时考虑触觉数据缩减和保稳控制。在本文中,我们提出了一种新的延迟遥操作触觉数据通信解决方案,该方案将基于感知死带的触觉数据约简方法与输入状态稳定性控制器相结合。特别地,提出的基于iss的触觉数据缩减方案能够在恒定通信延迟存在的情况下降低触觉数据包速率,同时保持系统的稳定性。实验结果表明,我们的方法在不引入明显的感知失真的情况下,将整体触觉数据减少了80%。与最先进的基于时域无源方法的触觉数据约简方法[1]相比,当延迟小于100 ms时,我们的方法在相似的数据包速率下提供了更好的用户体验。此外,实验结果还表明,当网络服务质量和用户体验要求不同时,通信和控制的联合优化可以实现最佳的远操作质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Haptic Data Reduction for Time-delayed Teleoperation Using the Input-to-State Stability Approach
There are two major challenges for time-delayed teleoperation with haptic feedback over packet-switched networks: the high packet rate of the bidirectionally exchanged haptic data and the maintenance of system stability in the presence of communication delay. Concerning the former, ensuring the required high update rate for haptic information (≥1 kHz) requires significant transmission resources. Regarding the latter, stability-ensuring control architectures must be employed to guarantee system stability. In order to achieve both stable system design and efficient haptic data communication, joint consideration of haptic data reduction and stability-ensuring control is necessary for teleoperation systems. In this paper, we propose a novel haptic data communication solution for time-delayed teleoperation which integrates the perceptual deadband-based haptic data reduction method with the input-to-state stability (ISS) controller. In particular, the proposed ISS-based haptic data reduction solution is able to reduce the haptic packet rate while preserving the system stability in the presence of constant communication delay. Experimental results show that our approach reduces the overall haptic data by up to 80% without introducing significant perceptual distortion. Compared with the state-of-the-art time-domain passivity approach-based haptic data reduction approach [1], our method provides an improved user experience at a similar packet rate when the delay is less than 100 ms. Moreover, the experimental results also indicate that a joint optimization of communication and control may achieve the best possible teleoperation quality when the requirements of network quality of service and user experience vary.
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