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LPV modelling and LFT Uncertainty Identification for Robust Analysis:application to the VEGA Launcher during Atmospheric Phase

机译:用于稳健分析的LPV建模和LFT不确定性识别:常压阶段在VEGA发射器上的应用

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摘要

In this article, the development of a proper Linear Fractional Transformation model for the robust analysis of the atmospheric controllers of the European VEGA launcher is presented. By proper it is meant a model that: (i) captures the key launcher’s behavior during the ascent atmospheric phase, (ii) has a complexity in terms of number of parameters and repetitions that does not limit the applicability of robust analyses, (iii) can be easily updated with very different trajectory profiles, and (iv) arises from a methodology that is well connected with industrial practice and can be understood and used relatively easy. This last requirement is fundamental to transfer the LFT methodology into the VEGA program, which is critical if robust analysis is to be used within their verification and validation process. The potential of the proposed methodology and the validity of the developed LFT models for robust analysis have been successfully verified using simulation data from three of the four VEGA qualification flights.
机译:在本文中,提出了一种用于对欧洲VEGA发射器的大气控制器进行鲁棒分析的适当线性分数变换模型的开发。恰当的说,它是一个模型,该模型:(i)捕获关键的发射器在上升大气阶段的行为,(ii)在参数和重复次数方面具有复杂性,并且不限制稳健分析的适用性,(iii)可以很容易地用非常不同的轨迹轮廓来更新它们,并且(iv)是一种与工业实践紧密相关并且可以相对容易地理解和使用的方法。这最后一个要求是将LFT方法转移到VEGA程序中的基础,这对于在验证和确认过程中使用可靠的分析至关重要。使用来自四个VEGA资格飞行中的三个的模拟数据已成功验证了所提出方法的潜力以及所开发LFT模型用于稳健分析的有效性。

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