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首页> 外文期刊>Advances in Science, Technology and Engineering Systems >Assessing the Operator’s Readiness to Perform Tasks of Controlling by the Unmanned Aerial Platforms
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Assessing the Operator’s Readiness to Perform Tasks of Controlling by the Unmanned Aerial Platforms

机译:评估操作员准备执行无人机平台控制的任务

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摘要

Together with the intensity of development in the field of technology of unmanned platforms and their effective use for solving various tasks of peacetime and war, the requirements for the training of the operator managing the platform also increase. This fully applies to personnel providing the flight of manned means. Nevertheless, there are significant differences in the requirement of operator preparedness for an unmanned platform. This is, first of all, control in conditions of remoteness from an unmanned platform, orientation on the display of the control panel, delays in the passage of information, and possibly a complete loss of communication. In such conditions, the requirements for the reaction time of the operator increase, he must also have the ability to anticipate the development of the situation, be able to work with available equipment for a long time. These and several other criteria determine the general criterion of operator productivity, which is introduced in the work. The productivity criterion is a linear convolution function of particular criteria with some weighting factors, the exact values of which are unknown. A detailed analysis of particular criteria made it possible to establish their inconsistency and heterogeneity. The article proposes an approach that allows us to eliminate the inconsistency of local criteria by separately calculating weight coefficients for each part based on the hierarchy analysis method. The basic properties of the proposed approach are also given; modeling confirms the correctness of the solutions. This approach can be useful in the certification of operators of various fields of activity.
机译:与无人机平台技术领域的发展强度及其有效利用解决和谐和战争的各种任务,管理平台的运营商培训的要求也增加。这充分适用于提供载人手段的人员。然而,对于无人驾驶平台的操作员准备要求存在显着差异。这首先是从无人驾驶平台,在控制面板显示的方向上的遥感条件下控制,信息通过的延迟,并且可能完全丧失通信。在这种情况下,操作员反应时间的要求增加,他还必须有能力预测发展情况,能够长时间使用可用的设备。这些和其他几个标准确定了在工作中引入的操作员生产率的一般标准。生产率标准是具有一些加权因素的特定标准的线性卷积功能,其精确值是未知的。对特定标准的详细分析使其成为不一致和异质性。该文章提出了一种方法,该方法允许我们通过基于层级分析方法单独计算每个部分的权重系数来消除本地标准的不一致。还提供了所提出的方法的基本性质;建模证实了解决方案的正确性。这种方法可用于各种活动领域的运营商认证。

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