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A Generic Guidance and Control Structure for Six-Degree-of-Freedom Conceptual Aircraft Design

机译:六自由度概念飞机设计的通用制导和控制结构

摘要

A control system framework is presented for both real-time and batch six-degree-of-freedom simulation. This framework allows stabilization and control with multiple command options, from body rate control to waypoint guidance. Also, pilot commands can be used to operate the simulation in a pilot-in-the-loop environment. This control system framework is created by using direct vehicle state feedback with nonlinear dynamic inversion. A direct control allocation scheme is used to command aircraft effectors. Online B-matrix estimation is used in the control allocation algorithm for maximum algorithm flexibility. Primary uses for this framework include conceptual design and early preliminary design of aircraft, where vehicle models change rapidly and a knowledge of vehicle six-degree-of-freedom performance is required. A simulated airbreathing hypersonic vehicle and a simulated high performance fighter are controlled to demonstrate the flexibility and utility of the control system.
机译:提出了用于实时和批处理六自由度仿真的控制系统框架。该框架允许通过多种命令选项进行稳定和控制,从人体速度控制到航路点指导。同样,飞行员命令可用于在飞行员环境中进行仿真。通过使用具有非线性动态反转的直接车辆状态反馈来创建此控制系统框架。直接控制分配方案用于指挥飞行器执行器。在线B矩阵估计在控制分配算法中使用,以实现最大的算法灵活性。该框架的主要用途包括飞机的概念​​设计和早期初步设计,在此飞机模型会快速变化,并且需要了解车辆的六自由度性能。模拟的呼吸高超音速飞行器和模拟的高性能战斗机受到控制,以证明控制系统的灵活性和实用性。

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