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Toward a multi-method approach to formalizing human-automation interaction and human-human communications

机译:朝着一种形式地形成人类自动化互动和人类通信的多方法方法

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Breakdowns in complex systems often occur as a result of system elements interacting in ways unanticipated by analysts or designers. The use of task behavior as part of a larger, formal system model is potentially useful for analyzing such problems because it allows the ramifications of different human behaviors to be verified in relation to other aspects of the system. A component of task behavior largely overlooked to date is the role of human-human interaction, particularly human-human communication in complex human-computer systems. We are developing a multi-method approach based on extending the Enhanced Operator Function Model language to address human agent communications (EOFMC). This approach includes analyses via theorem proving and future support for model checking linked through the EOFMC top level XML description. Herein, we consider an aviation scenario in which an air traffic controller needs a flight crew to change the heading for spacing. Although this example, at first glance, seems to be one simple task, on closer inspection we find that it involves local human-human communication, remote human-human communication, multi-party communications, communication protocols, and human-automation interaction. We show how all these varied communications can be handled within the context of EOFMC.
机译:复杂系统中的故障通常由于分析师或设计师意外的方式与系统元素进行交互。使用任务行为作为较大的正式系统模型的一部分,可能是对分析此类问题的可能性,因为它允许在系统的其他方面验证不同人类行为的后果。任务行为的组成部分大幅忽视到目前为止是人类互动的作用,特别是人类人类通信在复杂的人机系统中。我们正在开发一种基于扩展增强型操作函数模型语言来解决人工代理通信(EOFMC)的多方法方法。该方法包括通过定理的分析,证明和未来支持通过EofMC顶级XML描述链接的模型检查。在此,我们考虑航空场景,其中空中交通控制器需要飞行机组人员来改变标题以进行间隔。虽然这个例子乍一看,似乎是一个简单的任务,仔细检查我们发现它涉及当地的人类通信,远程人类通信,多方通信,通信协议和人类自动化互动。我们展示了如何在EOFMC的背景下处理所有这些变化的通信。

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