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Power in the Bucket and Angle of Arrival modelling in the presence of an airborne platform-induced turbulence

机译:存在机载平台引起的湍流时斗中的功率和到达角模型

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In the framework of a European collaborative research project called ALWS (Airborne platform effects on lasers and Warning Sensors), the effects of platform-related turbulence on MAWS (missile approach warning systems) and DIRCM (directed infrared countermeasures) performance are investigated. Field trials have been conducted to study the turbulence effects around a hovering helicopter and behind a turboprop aircraft on the ground, with engines running. The time dependence of the power in the bucket and the amplitude of the angle of arrival have been characterized during the trial. Temporal spectra of these two parameters present an asymptotic behavior typical of optical beams propagating through developed turbulence (Kolmogorov). Based on the formalism developed in the case of propagation through atmospheric turbulence, we have first estimated turbulence strength and wind velocity inside plume for different flight conditions. We have then proposed an approach to simulate times series of these two quantities in the same conditions. These simulated time series have been compared with the recorded data to assess their validity domain. This model will be integrated in a simulator to estimate the impact of the turbulence induced by the platform and calculate the system performance. In this model dedicated to plume and downwash effects, aero-optical effects are not taken into account.
机译:在一个名为ALWS(机载平台对激光和警告传感器的机载效应)的欧洲合作研究项目的框架内,研究了与平台有关的湍流对MAWS(导弹进近预警系统)和DIRCM(定向红外对策)性能的影响。已经进行了现场试验,以研究悬停的直升机周围和地面涡轮螺旋桨飞机后面,发动机运转时的湍流效应。在试验过程中已确定了铲斗中动力的时间依赖性和到达角的幅度。这两个参数的时间谱呈现出典型的渐进行为,这些行为典型地是通过已发展的湍流(Kolmogorov)传播的。基于在通过大气湍流传播的情况下形成的形式主义,我们首先估算了不同飞行条件下羽流内部的湍流强度和风速。然后,我们提出了一种在相同条件下模拟这两个量的时间序列的方法。这些模拟的时间序列已与记录的数据进行比较,以评估其有效性域。该模型将集成在模拟器中,以估计平台引起的湍流的影响并计算系统性能。在专门用于羽流和向下冲洗效果的模型中,未考虑航空光学效果。

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