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Full-altitude attitude angles envelope and model predictive control-based attitude angles protection for civil aircraft

机译:全高度姿态角包络和基于模型预测控制的民用飞机姿态角保护

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This paper aims to address the dual-input problem for civil aircraft equipped with side-sticks. A concept of full-altitude attitude angles envelope is firstly proposed; at low altitude this envelope protects the aircraft from striking ground, while at high altitude it restricts attitude angles within a threshold to guarantee passenger-ride qualities. Model Predictive Control (MPC) strategy is utilized in this paper; at each operation point, given linearized dynamics of the aircraft, cost function and inequalities constraints for MPC are specified, associated control laws are generated. Flight simulation investigates the performance of MPC protection laws; two flight records at high altitude and a record simulating the take-off and landing process are presented. Based on the test records, the proposed MPC-based protection framework is considered to be applicable. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:本文旨在解决配备侧操纵杆的民用飞机的双重输入问题。首先提出了全高度姿态角包络的概念。在低空时,该包膜可保护飞机免受撞击地面,而在高空时,则将姿态角限制在阈值以内,以确保乘客乘坐的质量。本文采用模型预测控制(MPC)策略。在每个操作点,给定飞机的线性动力学,MPC的成本函数和不等式约束,并生成相关的控制律。飞行模拟调查了MPC保护法的性能;提供了两个高空飞行记录以及一个模拟起飞和着陆过程的记录。根据测试记录,建议的基于MPC的保护框架被认为是适用的。 (C)2016 Elsevier Masson SAS。版权所有。

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