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SoTCM: a scene-oriented task complexity metric for gaze-supported teleoperation tasks

机译:SOTCM:凝视支持的遥操作任务的面向现场的任务复杂度度量

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Recent developments in human-robot interaction (HRI) research have heightened the need to incorporate indirect human signals to implicitly facilitate intuitive human-guided interactions. Eye-gaze has been widely used nowadays as an input interface in multi-modal teleoperation scenarios due to their advantage in revealing human intentions and forthcoming actions. However, to date, there has been no discussion about how the structure of the environment, that the human is interacting with, could affect the complexity of the teleoperation task. In this paper, a new metric named "Scene-oriented Task Complexity Metric" (SoTCM) is proposed to estimate the complexity of a certain scene that is involved in eye-gaze-supported teleoperation tasks. The proposed SoTCM objectively estimates the effort that could be exerted by the human operator in terms of the expected time required to point at all the informative locations retrieved from the scene under discussion. The developed SoTCM depends on both the density and distribution of the informative locations in the scene, while incorporates the eye movement behavior found in the psychology literature. The proposed SoTCM is subjectively validated by using the time-to-complete index in addition to the standard (NASA-TLX) workload measure in eight varying structure scenes. Results confirmed a significant relation between SoTCM and the measured task workload which endorses the applicability of using SoTCM in predicting scene complexities and subsequently the task workload in advance.
机译:最近的人体机器人相互作用(HRI)研究的发展提高了必要结合间接人体信号,隐含地促进直观的人为引导的相互作用。目前,目前已被广泛使用作为多模态遥操作场景中的输入界面,因为他们在揭示人类意图和即将到来的行动方面的优势。然而,迄今为止,人们如何讨论人类的结构如何与人类交互,可能会影响遥操作任务的复杂性。在本文中,提出了一种名为“面向演出的任务复杂度度量”(SOTCM)的新度量来估计某些场景的复杂性,这些场景涉及眼睛凝视支持的遥操作任务。拟议的司机客观地估计人类运营商可以在从现场检索的所有信息位置所需的预期时间就可以讨论所需的预期时间来估计。发达的SOTCM取决于现场信息的密度和分布,同时包括心理学文献中发现的眼球运动行为。除了在八个不同的结构场景中的标准(NASA-TLX)工作负载测量之外,还通过使用时间 - 完整的索引来主观验证所提出的SOTCM。结果证实了SOTCM和测量任务工作负载之间的重要关系,这些工作负载赞同使用SOTCM在预测场景复杂性以及随后提前任务工作负载的适用性。

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