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Matching of Aerodynamic databank with Flight test data - Longitudinal Dynamics

机译:空气动力学数据库与飞行试验数据的匹配 - 纵向动力学

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The Flight Simulator (FS) is a key aspect of the traditional aeronautical industry and the general aviation. In the general aviation, the flight simulator contributes to decrease pilot training costs and keep safety the aviation. In the case of traditional industries such as Embraer, Boeing and Airbus, and beyond that, the FS avoid delays and decrease the costs in development of new aircraft. Thus, the aeronautical industry has invested hardly on modeling and simulation (M&S). The objective of this paper is to describe the process of updating the longitudinal aerodynamic coefficients from aerodynamic model of the FS using flight test data in order to establish a model in according with aviation rules. This process is called as aerodynamic matching, and has presented very satisfactory results in aeronautical industry. The methodology used and proposed here is one more tool to model with high accuracy the flight dynamics of airplanes.
机译:飞行模拟器(FS)是传统航空工业和一般航空的关键方面。在一般航空中,飞行模拟器有助于降低试点培训成本并保持航空安全。对于传统行业,如海盗,波音和空中客车,而且,FS避免延迟并降低了新飞机开发的成本。因此,航空工业几乎没有对建模和仿真(M&S)投资。本文的目的是描述使用飞行测试数据来更新来自FS的空气动力学模型的纵向空气动力学系数的过程,以根据航空规则建立模型。这个过程称为空气动力学匹配,并在航空工业中提出了非常令人满意的结果。这里使用和提出的方法是更高精度的模型的一个工具,高精度飞机的飞行动态。

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