首页> 外文期刊>International Journal of Industrial Ergonomics >Change detection support for supervisory controllers of highly automated systems: Effects on performance, mental workload, and recovery of situation awareness following interruptions
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Change detection support for supervisory controllers of highly automated systems: Effects on performance, mental workload, and recovery of situation awareness following interruptions

机译:改变高自动化系统监督控制器的检测支持:对性能,心理工作量的影响,以及情况意识的恢复

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Dynamic Positioning (DP) is a computer-controlled process to automatically keep a floating vessel at a specific position or to follow a pre-defined path (tracking) by using its own propellers and thrusters. The human supervisory controller has no direct need to constantly know what the status is of all parts of the automation and the system it is controlling, because the highly automated DPS is controlling all components itself. Only after a failure arises, the operator needs to take over manual control and take appropriate action(s) to prevent the failure from harming the operation. As the supervisory controller may be out of the loop, swiftly taking over control may be problematic when failures arise. The purpose of the current study was to investigate whether automation of change detection enables human operators with low awareness of the automation and the system it is controlling to quickly recover awareness in emergency take-over situations. A 2 by 2 within subjects experiment was conducted using a DP simulation (n = 22). Within-subjects factors were support (Yes, No) and interruption (Yes, No). Results showed that change detection support helps in the process of recovering situation awareness after it has been reduced, due to an interruption of the primary task of overseeing the automation. Interestingly, support was not beneficial to the participants in all conditions. In non-interrupted conditions the support unexpectedly resulted in higher workload, raising questions whether supervisory controllers should be supported continuously or only when it is required. Relevance to industry: The results show that change detection support has potential value in operational maritime environments, especially in situations where the DP operator has low situation awareness. Future research should investigate whether adaptive aiding could alleviate some of the negative effects of non-adaptive operator support in maritime environments. (C) 2018 Elsevier B.V. All rights reserved.
机译:动态定位(DP)是一种计算机控制的过程,以通过使用其自身的螺旋桨和推进器自动地将浮动容器保持在特定位置或跟踪预定路径(跟踪)。人类监管控制器没有直接需要不断知道的状态是自动化的所有部分和它控制的系统,因为高度自动化的DPS是控制所有组件本身。只有在发生故障后,操作员只需接管手动控制并采取适当的行动,以防止失败损害操作。由于监控控制器可能出循环,当出现故障时,迅速接管控制可能是有问题的。目前研究的目的是调查变更检测的自动化是否使人类运营商能够低意识,自动化和系统控制,以快速恢复紧急占用情况的认识。使用DP模拟进行受试者实验中的2倍2(n = 22)。受试者内部因素是支持(是,否)和中断(是,否)。结果表明,由于监督自动化的主要任务的中断,改变检测支持有助于恢复局面意识的过程。有趣的是,支持对所有条件的支持者没有利于参与者。在非中断条件下,支持意外地导致更高的工作量,提高了应不断支持监督控制器的问题,或者仅在需要时才支持。与行业的相关性:结果表明,变更检测支持具有运营海洋环境的潜在价值,特别是在DP运营商具有低情节意识的情况下。未来的研究应该调查自适应辅助是否可以减轻非自适应操作员支持在海事环境中的一些负面影响。 (c)2018 Elsevier B.v.保留所有权利。

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