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多模态控制多个模拟无人飞行器上的传感器。

Multimodal control of sensors on multiple simulated unmanned vehicles.

机构信息

Electronic, Electrical and Computer Engineering, The University of Birmingham, Birmingham B15 2TT, UK.

出版信息

Ergonomics. 2011 Sep;54(9):792-805. doi: 10.1080/00140139.2011.597516. Epub 2011 Aug 25.

Abstract

The use of multimodal (speech plus manual) control of the sensors on combinations of one, two, three or five simulated unmanned vehicles (UVs) is explored. Novice controllers of simulated UVs complete a series of target checking tasks. Two experiments compare speech and gamepad control for one, two, three or five UVs in a simulated environment. Increasing the number of UVs has an impact on subjective rating of workload (measured by NASA-Task Load Index), particularly when moving from one to three UVs. Objective measures of performance showed that the participants tended to issue fewer commands as the number of vehicles increased (when using the gamepad control), but, while performance with a single UV was superior to that of multiple UVs, there was little difference across two, three or five UVs. Participants with low spatial ability (measured by the Object Perspectives Test) showed an increase in time to respond to warnings when controlling five UVs. Combining speech with gamepad control of sensors on UVs leads to superior performance on a secondary (respond-to-warnings) task (implying a reduction in demand) and use of fewer commands on primary (move-sensors and classify-target) tasks (implying more efficient operation). STATEMENT OF RELEVANCE: Benefits of multimodal control for unmanned vehicles are demonstrated. When controlling sensors on multiple UVs, participants with low spatial orientation scores have problems. It is proposed that the findings of these studies have implications for selection of UV operators and suggests that future UV workstations could benefit from multimodal control.

摘要

探索了使用多模态(语音加手动)控制传感器对一个、两个、三个或五个模拟无人飞行器 (UV) 的组合的方法。模拟 UV 的新手控制器完成一系列目标检查任务。两个实验比较了在模拟环境中使用语音和游戏手柄控制一个、两个、三个或五个 UV 的情况。随着 UV 数量的增加,对工作负荷的主观评价(通过 NASA 任务负荷指数测量)会产生影响,尤其是从一个 UV 增加到三个 UV 时。性能的客观测量表明,参与者随着车辆数量的增加往往会发出更少的命令(使用游戏手柄控制时),但在单个 UV 和多个 UV 之间,性能差异很小。空间能力较低的参与者(通过物体视角测试测量)在控制五个 UV 时,对警告的响应时间增加。将语音与 UV 传感器的游戏手柄控制相结合,可在次要(响应警告)任务上实现更好的性能(意味着需求减少),并在主要(移动传感器和分类目标)任务上使用更少的命令(意味着更高效的操作)。相关声明:证明了多模态控制对无人飞行器的好处。当控制多个 UV 的传感器时,空间定位分数较低的参与者会遇到问题。有人提出,这些研究的结果对 UV 操作员的选择具有启示意义,并表明未来的 UV 工作站可以从多模态控制中受益。

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