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Simulation Model Fidelity Enhancement Using Corrective Force and Moment Increments Review of Activity Performed in NATO-AVT Panel 296

机译:使用纠正力和时刻的仿真模型保真度增强在Nato-AVT面板296中执行的活动审查

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The Applied Vehicle Technology (AVT) Panel of the NATO Science and Technology Organization has recently engaged a Research Task Group on the topic of rotorcraft flight simulation model fidelity. This group aimed to explore a comprehensive set of methods for flight mechanics simulation fidelity enhancement, including training simulation applications. Particular effort was also directed to the metrics used for simulation fidelity model assessment as suitable for the final intent of the model.The work presented in this paper was carried out in the framework of this Research Task Group. AVT-296. which examined seven different approaches: our paper focusses on just one of these. The objective was to assess flight-model renovation methods through four different applications. As a common approach, flight data from various helicopters were used to extract a set of flight dynamics information (state and control derivatives) that were used to compute corrective force and moment terms.The approach consists of a comparison between flight-test and flight mechanics model derivatives to compute delta forces and moments. These delta terms are added to the forces and moments through a linear combination and to generate the additional accelerations needed to capture any lacking dynamics. The derivatives that require updating need to be identified and. of course, will depend on the nature of the modelling deficiency. This paper shows how this method is applied to enhancing the lateral-directional oscillatory characteristics of flight models and how they can be upgraded to achieve higher fidelity for design and development applications but with special attention to meeting the fidelity requirements for flight training simulators.
机译:北约科技组织的应用车辆技术(AVT)专家组最近从事旋翼飞行飞行模拟模型保真度的研究任务组。本集团旨在探索一套全面的飞行机械模拟保真度,包括培训仿真应用。特殊努力还涉及用于模拟保真模型评估的指标,适用于模型的最终意图。本文提出的工作是在本研究任务组的框架中进行的。 AVT-296。这检查了七种不同的方法:我们的纸质侧重于其中一个。目标是通过四种不同的应用评估飞行模型改造方法。作为一种常见的方法,使用来自各种直升机的飞行数据来提取用于计算纠正力和时刻条款的一组飞行动力学信息(状态和控制衍生物)。方法包括飞行试验和飞行力学之间的比较模型衍生物来计算Delta力和时刻。这些增量术语通过线性组合添加到力和时刻,并生成捕获任何缺乏动态所需的附加加速度。需要识别更新的衍生品和。当然,将取决于缺乏建模的性质。本文展示了如何应用该方法来提高飞行模型的横向振荡特性以及如何升级,以实现更高的设计和开发应用的保真度,但特别注意符合飞行训练模拟器的保真要求。

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