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Integrated flight and propulsion control system design using H{sup}∞ loop-shaping techniques

机译:使用H {SUP}∞环形技术集成飞行和推进控制系统设计

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An integrated flight and propulsion control system is designed for an experimental short take-off and vertical landing aircraft configuration using H{sup}∞ Loop-Shaping controller design techniques. The aircraft model used in the study is basedon the Harrier airframe with the Pegasus engine replaced by a thermodynamic simulation of a Rolls-Royce Spey powerplant, to allow the incorporation of advanced engine control concepts. The controller follows a two-inceptor strategy to command flight pathangle rate and velocity along the flight path, while Simultaneously keeping several airframe and engine variables within specified safety limits. Nominal and robust performance properties of the centralised IFPC system are validated via non-linear PCbased simulation.
机译:集成飞行和推进控制系统专为使用H {SUP}环形控制器设计技术而设计的实验短起飞和垂直着陆飞机配置。该研究中使用的飞机模型是将哈尔斯机架的哈尔尔机构与轧辊 - Royce Spey PowerPlant的热力学模拟所取代,以允许加入先进的发动机控制概念。控制器遵循两者策略来指挥飞行路径沿着飞行路径的速度和速度,同时在指定的安全限制内同时保持多个机身和发动机变量。集中式IFPC系统的标称和强大的性能属性通过非线性PCCASED仿真验证。

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