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Toward a Petri Net Based Approach to Support Risk Analysis of Dissonances between Human and Machine

机译:迈向基于Petri网的人机失调风险支持分析方法

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Abstract: Autonomy of a system is defined by its knowledge, its availability and its prescription to achieve goals. Different conflicts may occur between these parameters. They are called dissonances and the paper focuses on conflicts between individual or collective knowledge related to a predefined task allocation. Two kinds of dissonances will be studied: affordances and inconsistencies. Affordances relates to knowledge discovery when new links can exist between goals and conditions to achieve goals. Inconsistencies occur when opposite goals can be achieved in a given operational context. Contradictions concern individual inconsistencies related to the knowledge content of a decision-maker. Interferences are inconsistencies between the prescriptions of different decision-makers. The mathematical formalism of the Petri Net is then adapted to identify automatically affordances and inconsistencies. Knowledge is modeled by Petri net implementing the goals, the conditions of activation of a goal and the links between the goals and the conditions, taking into account the elements of interactions and the prescriptions of the decision-makers. The approach is applied to transportation domain by identifying possible affordances by using existing elements of interactions for achieving new goals, or by identifying inconsistencies between human drivers and on-board assistance systems.
机译:摘要:系统的自治性由其知识,可用性和达成目标的规定来定义。这些参数之间可能发生不同的冲突。它们被称为不和谐,本文着重讨论与预定义任务分配有关的个人知识或集体知识之间的冲突。将研究两种不和谐:承受能力和不一致。当目标和实现目标的条件之间可以存在新的联系时,“能力”与知识发现相关。当在给定的操作环境中可以实现相反的目标时,就会出现不一致的情况。矛盾涉及与决策者的知识内容有关的个体矛盾。干扰是不同决策者的处方之间的不一致。然后,将Petri网的数学形式主义修改为自动识别能力和不一致之处。知识是由Petri网为实现目标,激活目标的条件以及目标与条件之间的联系而建模的,同时考虑了交互作用的要素和决策者的规定。通过使用现有的交互元素来实现新目标来确定可能的负担能力,或者通过识别人类驾驶员与车载辅助系统之间的不一致之处,将该方法应用于交通领域。

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