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Investigation of Optimal Control Allocation for Gust Load Alleviation in Flight Control

机译:飞行控制中减轻阵风负荷的最优控制分配研究

摘要

Advances in sensors and avionics computation power suggest real-time structural load measurements could be used in flight control systems for improved safety and performance. A conventional transport flight control system determines the moments necessary to meet the pilot's command, while rejecting disturbances and maintaining stability of the aircraft. Control allocation is the problem of converting these desired moments into control effector commands. In this paper, a framework is proposed to incorporate real-time structural load feedback and structural load constraints in the control allocator. Constrained optimal control allocation can be used to achieve desired moments without exceeding specified limits on monitored load points. Minimization of structural loads by the control allocator is used to alleviate gust loads. The framework to incorporate structural loads in the flight control system and an optimal control allocation algorithm will be described and then demonstrated on a nonlinear simulation of a generic transport aircraft with flight dynamics and static structural loads.
机译:传感器和航空电子计算能力的进步表明,实时结构载荷测量可用于飞行控制系统,以提高安全性和性能。常规的运输飞行控制系统确定满足飞行员命令所需的力矩,同时消除干扰并保持飞机的稳定性。控制分配是将这些期望的时刻转换成控制效应器命令的问题。在本文中,提出了一个框架,将实时结构载荷反馈和结构载荷约束纳入控制分配器中。约束的最佳控制分配可用于实现所需的力矩,而不会超出监视的负载点的指定限制。控制分配器将结构载荷减到最小,以减轻阵风载荷。将描述将结构载荷纳入飞行控制系统的框架和最佳控制分配算法,然后在具有飞行动力学和静态结构载荷的通用运输机的非线性仿真中进行演示。

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