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Human-robot interaction modeling and simulation of supervisory control and situational awareness during field experimentation with military manned and unmanned ground vehicles

机译:军事载人和无人地面车辆实地试验中人机交互建模及监控与态势感知仿真

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The proliferation of intelligent systems in today's military demands increased focus on the optimization of human-robot interactions. Traditional studies in this domain involve large-scale field tests that require humans to operate semi-automated systems under varying conditions within military-relevant scenarios. However, provided that adequate constraints are employed, modeling and simulation can be a cost-effective alternative and supplement. The current presentation discusses a simulation effort that was executed in parallel with a field test with Soldiers operating military vehicles in an environment that represented key elements of the true operational context. In this study, "constructive" human operators were designed to represent average Soldiers executing supervisory control over an intelligent ground system. The constructive Soldiers were simulated performing the same tasks as those performed by real Soldiers during a directly analogous field test. Exercising the models in a high-fidelity virtual environment provided predictive results that represented actual performance in certain aspects, such as situational awareness, but diverged in others. These findings largely reflected the quality of modeling assumptions used to design behaviors and the quality of information available on which to articulate principles of operation. Ultimately, predictive analyses partially supported expectations, with deficiencies explicable via Soldier surveys, experimenter observations, and previously-identified knowledge gaps.
机译:在当今的军事需求中,智能系统的激增越来越关注于人机交互的优化。该领域的传统研究涉及大规模的现场测试,这些测试要求人类在与军事相关的场景中,在变化的条件下操作半自动系统。但是,如果采用足够的约束,则建模和仿真可以是一种具有成本效益的替代方案和补充。本演示文稿讨论了模拟工作,该工作是与在代表真实作战环境关键要素的环境中操作军车的士兵进行的现场测试并行执行的。在这项研究中,“建设性”的人工操作员被设计为代表对智能地面系统执行监督控制的普通士兵。在直接类似的野外测试中,模拟了建设性士兵执行与真实士兵相同的任务。在高保真虚拟环境中执行模型可提供预测结果,这些结果代表某些方面的实际性能,例如情况感知,但在其他方面则有所不同。这些发现很大程度上反映了用于设计行为的建模假设的质量以及用于阐明操作原理的可用信息的质量。最终,预测分析在一定程度上支持了期望,而缺陷可以通过士兵调查,实验观察和先前发现的知识鸿沟来解释。

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