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EFFECTIVENESS OF A COMPUTER-BASED HELICOPTER TRAINER FOR INITIAL HOVER TRAINING

机译:基于计算机直升机训练器的初始悬停训练的有效性

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Today, simulators are achieving levels of complexity and cost that are comparable to those of the aircraft they should replace. For this reason, questions have been raised, in both the technical and training communities, on the required level of simulation fidelity for effective pilot training. Computer Based Trainers (CBTs) are not currently considered in regulatory standards, because it has not been proven yet whether they can replace or complement actual flight training hours. The aim of this paper is to better understand to what extent the low-level hover skills developed on a CBT are effectively transferred to a more realistic simulation environment. To achieve this goal, a quasi-Transfer-of-Training (qToT) experiment with task-naive participants was performed in the CyberMotion Simulator (CMS) at the Max Planck Institute for Biological Cybernetics. Twenty-four subjects, divided in two groups, were trained to perform the hover maneuver controlling an identified model of a Robinson R44 civil light helicopter. The first group (the "experimental" group) was trained in a CBT and then transferred to the realistic setting in the CMS. The second group (the "control" group) received the entire training in the CMS. At the end of the experiment, the two groups were found to show comparable performance. This suggests that, even for the training of low-level flying skills, CBTs may be a valid alternative to high fidelity simulators, if supported by a suitable training program.
机译:如今,模拟器正在实现与他们应该取代的飞机相当的复杂性和成本的水平。出于这个原因,在技术和培训社区中,在技术和培训社区中提出了问题,以获得有效的试验培训所需的模拟保真度。电脑培训师(CBT)目前尚未考虑在监管标准中,因为尚未证明它们是否可以取代或补充实际的飞行训练时间。本文的目的是更好地了解CBT上开发的低级悬停技能在多大程度上有效地转移到更现实的模拟环境。为实现这一目标,在Max Planck生物网络网络研究所的Cyber​​ Mution Simulionator(CMS)中进行了关于任务天真参与者的准转移训练(Qtot)实验。二十四个受试者分为两组,培训,以执行控制罗宾逊R44民用轻直升机的识别模型的悬停机动。第一组(“实验”组)培训在CBT中,然后转移到CMS中的现实环境。第二组(“控制”组)收到了CMS中的整个培训。在实验结束时,发现两组表现出可比性。这表明,即使对于低级飞行技能的培训,如果由合适的训练计划支持,CBT可能是高保真模拟器的有效替代方案。

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