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Integration of functions within STUAS operator crew on board Royal Netherlands Navy ships

机译:荷兰皇家海军舰艇上STUAS操作员内部的功能集成

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Many reasons exist for the military to favor unmanned systems and future missions are envisioned that require longer, more diverse and more frequent deployment of UAVs with increased mission precision. This will also result in a much higher demand on operator crews working with UAVs. With the current pressure on operational budgets, a more effective use of automation is needed in order to answer this demand. This frees operator capacity and enables integration of operator crew functions. This paper describes a case study that was performed to evaluate function integration within a Small Tactical Unmanned Aerial System (STUAS) operator crew on board a Royal Netherlands Navy ship during the flight phase, with the goal to extend the sensory capabilities of the ship: the Air Vehicle Operator (AVO) and the Payload Operator (PO) tasks allocated to one operator. Also a combined AVO/PO-interface was provided to this one operator and was evaluated. Results show that, for simulated maritime scenario as used in this evaluation study, integration of STUAS functions and interfaces can still lead to effective operations. Types of missions and flight phase operator tasks not addressed in this study remain subject of future study. This study should therefore be regarded as a first step of the full analysis of the possibilities for integration of STUAS functions and interfaces together with the enabling automation and support.
机译:军方倾向于使用无人系统的原因很多,可以预见未来的任务需要更长,更多样化和更频繁地部署无人机,以提高任务精度。这也将导致对使用无人机的操作人员提出更高的要求。在当前的运营预算压力下,需要更有效地利用自动化技术来满足这一需求。这释放了操作员的能力,并实现了操作员功能的整合。本文介绍了一个案例研究,该案例旨在评估荷兰皇家海军舰船在飞行阶段的小型战术无人机系统(STUAS)驾驶员在飞行阶段的功能集成,目的是扩展船舶的感官能力:分配给一名操作员的航空器操作员(AVO)和有效载荷操作员(PO)任务。还向该操作员提供了组合的AVO / PO接口,并对其进行了评估。结果表明,对于本评估研究中使用的模拟海上情景,STUAS功能和界面的集成仍然可以带来有效的运营。本研究中未解决的任务类型和飞行阶段操作员任务仍然是未来研究的主题。因此,这项研究应被视为全面分析STUAS功能和接口以及支持的自动化和支持的可能性的第一步。

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