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Human-robot interaction via voice-controllable intelligent user interface

机译:通过语音可控的智能用户界面进行人机交互

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An understanding of how humans and robots can successfully interact to accomplish specific tasks is crucial in creating more sophisticated robots that may eventually become an integral part of human societies. A social robot needs to be able to learn the preferences and capabilities of the people with whom it interacts so that it can adapt its behaviors for more efficient and friendly interaction. Advances in human-computer interaction technologies have been widely used in improving human-robot interaction (HRI). It is now possible to interact with robots via natural communication means such as speech. In this paper, an innovative approach for HRI via voice-controllable intelligent user interfaces is described. The design and implementation of such interfaces are described. The traditional approaches for human-robot user interface design are explained and the advantages of the proposed approach are presented. The designed intelligent user interface, which learns user preferences and capabilities in time, can be controlled with voice. The system was successfully implemented and tested on a Pioneer 3-AT mobile robot. 20 participants, who were assessed on spatial reasoning ability, directed the robot in spatial navigation tasks to evaluate the effectiveness of the voice control in HRI. Time to complete the task, number of steps, and errors were collected. Results indicated that spatial reasoning ability and voice-control were reliable predictors of efficiency of robot teleoperation. 75% of the subjects with high spatial reasoning ability preferred using voice-control over manual control. The effect of spatial reasoning ability in teleoperation with voice-control was lower compared to that of manual control.
机译:了解人类和机器人如何成功交互以完成特定任务至关重要,这对于创建更复杂的机器人(最终可能成为人类社会的组成部分)至关重要。一个社交机器人需要能够学习与之交互的人的偏好和能力,以便能够适应其行为,从而实现更有效和友好的交互。人机交互技术的进步已广泛用于改善人机交互(HRI)。现在可以通过诸如语音之类的自然交流手段与机器人进行交互。本文介绍了一种通过语音可控的智能用户界面进行HRI的创新方法。描述了这种接口的设计和实现。解释了传统的人机界面设计方法,并提出了该方法的优点。可以通过语音控制设计的智能用户界面,该界面可以及时了解用户的喜好和功能。该系统已在Pioneer 3-AT移动机器人上成功实施和测试。对20位参与者进行了空间推理能力评估,他们将机器人引导到空间导航任务中以评估HRI中语音控制的有效性。收集了完成任务的时间,步骤数和错误。结果表明,空间推理能力和语音控制是机器人遥操作效率的可靠预测指标。有75%的具有较高空间推理能力的对象更喜欢使用语音控制而不是手动控制。与人工控制相比,语音控制远程操作中的空间推理能力影响较低。

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