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Measuring Human-Automation Function Allocation

机译:测量人员自动化功能分配

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Function allocation is the design decision in which work functions are assigned to all agents in a team, both human and automated. Building on the preceding companion papers' review of the requirements of effective function allocation and discussion of a computational framework for modeling function allocation, in this paper, we develop specific metrics of function allocation that can be derived from such models as well as from observations in high-fidelity human-in-the-loop simulations or real operations. These metrics span eight issues with function allocation: (a) workload, (b) stability of the work environment, (c) mismatches between responsibility and authority, (d) incoherency in function allocations, (e) interruptive automation, (f) automation's boundary conditions, (g) function allocations limiting human adaptation to context, (h) and mission performance. Some of the metrics measure distinct issues whereas others assess different causes of issues that can manifest in similar ways; collectively, they are intended to be comprehensive in their ability to discriminate for a range of issues. Trade-offs may exist between these metrics, and they need to be examined collectively to identify potential trade-offs or conflicts between them. This paper continues the example given in the preceding companion paper, demonstrating how these metrics of function allocation can be assessed from computational simulations of an air transport flight deck through the descent phase of flight.
机译:功能分配是一项设计决策,其中将工作功能分配给团队中的所有代理,包括人工和自动化。在前面的随行论文对有效功能分配要求的回顾和对功能分配建模的计算框架的讨论的基础上,在本文中,我们开发了可以从此类模型以及从观察中得出的功能分配的特定指标。高保真人体在环仿真或实际操作。这些度量标准涉及功能分配的八个问题:(a)工作量,(b)工作环境的稳定性,(c)职责和权限之间的不匹配,(d)功能分配的不一致性,(e)中断自动化,(f)自动化的边界条件(g)功能分配,限制了人类对环境(h)和任务性能的适应。一些度量标准衡量不同的问题,而另一些度量标准评估可以以类似方式表现出问题的不同原因。总体而言,它们旨在全面区分各种问题。这些指标之间可能存在折衷,因此需要对它们进行汇总检查,以识别它们之间潜在的折衷或冲突。本文继续前篇伴随论文中给出的示例,演示了如何通过航空运输飞行甲板在飞行下降阶段的计算仿真来评估这些功能分配指标。

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