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Application of an Integrated Methodology for Propulsion and Airframe Control Design to a STOVL Aircraft

机译:推进和机身控制设计综合方法在STOVL飞机上的应用

摘要

An advanced methodology for integrated flight propulsion control (IFPC) design for future aircraft, which will use propulsion system generated forces and moments for enhanced maneuver capabilities, is briefly described. This methodology has the potential to address in a systematic manner the coupling between the airframe and the propulsion subsystems typical of such enhanced maneuverability aircraft. Application of the methodology to a short take-off vertical landing (STOVL) aircraft in the landing approach to hover transition flight phase is presented with brief description of the various steps in the IFPC design methodology. The details of the individual steps have been described in previous publications and the objective of this paper is to focus on how the components of the control system designed at each step integrate into the overall IFPC system. The full nonlinear IFPC system was evaluated extensively in nonreal-time simulations as well as piloted simulations. Results from the nonreal-time evaluations are presented in this paper. Lessons learned from this application study are summarized in terms of areas of potential improvements in the STOVL IFPC design as well as identification of technology development areas to enhance the applicability of the proposed design methodology.
机译:简要介绍了用于未来飞机的集成飞行推进控制(IFPC)设计的先进方法,该方法将使用推进系统产生的力和力矩来增强机动能力。这种方法有可能以系统的方式解决机身和这种增强机动性飞机典型的推进子系统之间的耦合问题。通过对IFPC设计方法的各个步骤的简要说明,介绍了该方法在以悬停过渡飞行阶段着陆的短距起飞垂直着陆(STOVL)飞机中的应用。各个步骤的详细信息已在以前的出版物中进行了描述,并且本文的目的是集中于在每个步骤设计的控制系统的组件如何集成到整个IFPC系统中。完整的非线性IFPC系统在非实时仿真和试验仿真中得到了广泛的评估。本文介绍了非实时评估的结果。从该应用研究中吸取的教训从STOVL IFPC设计的潜在改进领域以及确定技术开发领域以增强建议的设计方法的适用性方面进行了总结。

著录项

  • 作者

    Garg Sanjay; Mattern Duane;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
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