Design of fault-tolerant and dependable assistance systems with degree of autonomy adaptation

L. Zouaghi, A. Wagner, E. Badreddin
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引用次数: 1

Abstract

In this paper, a guideline for designing dependable assistance systems with fault-tolerant control and real-time adaptation of autonomy degree for Human-Machine-Interaction (HMI) with the human in the loop is proposed. The approach models the technical system and its operator symmetrically as dynamical system components, which are decomposed into behavioral levels with different reaction times. The approach is based on a multi-level behavior-based control structure, which is extended to monitoring and fault detection in order to enhance the overall system dependability, to user modeling and to shared human-machine interaction. Methods and techniques used for the implementation of the proposed concept are demonstrated on an air and a ground vehicle.
具有自主适应程度的容错可靠辅助系统设计
本文提出了一种具有容错控制和实时自适应自主程度的人机交互可靠辅助系统设计准则。该方法将技术系统及其操作人员对称地建模为动态系统组件,并将其分解为具有不同反应时间的行为层。该方法基于多层次的基于行为的控制结构,并将其扩展到监测和故障检测,以提高系统的整体可靠性,用户建模和共享人机交互。在空中和地面车辆上演示了用于实施所提出概念的方法和技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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