Control Law for the Air Inlet of a Supersonic Drone

A. Tudosie
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Abstract

The paper deals with a supersonic air inlet for a supersonic drone, considered as controlled object The author has determined inlet's optimal architecture based on its efficiency (total pressure recovery) maximization, using the carpet search method. Inlet's characteristics were also determined and (based on same algorithm) one has determined the effective inlet control law with respect to the flight Mach number. A simple control system was proposed for the adapting of the inlet to the drone's flight regime and one has identified its main parts and described by their linearised adimensional mathematical model; the block diagram with transfer functions was built A study about system's quality (its step response) was performed which lead to some conclusions, concerning system's using possibilities, as well as for its pre-design.
超声速无人机进气道控制律研究
本文以超声速无人机为被控对象,以效率(总压恢复)最大化为目标,采用地毯搜索法确定了进气道的最优结构。还确定了进气道的特性,并(基于相同的算法)确定了关于飞行马赫数的有效进气道控制律。提出了一种简单的控制系统,用于适应无人机的飞行状态,并确定了其主要部分,并通过线性化的一维数学模型进行了描述;建立了传递函数框图,对系统的阶跃响应进行了研究,得出了系统使用可能性和系统预设计的一些结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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