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Optimal Disturbance Generation for Flight Control Law Testing ?

机译:飞行控制法测试的最佳干扰生成

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In this paper we present an approach for testing flight control laws with optimal disturbances using differential game theory. The approach is based on a state constrained differential game formulation in which the criterion under investigation is introduced in the cost function. In this differential game the first player representing disturbances acting on the closed loop system is trying to maximize the value of the criterion at a fixed terminal time point. For our application this player may not only model typical disturbances for flight control systems, such as wind gusts, but also pilot commands or other external influences which can drive the closed loop system to an unsafe state. The second, minimizing, player represents a control law parametrization and is subject to state constraints such as limits for actuator positions and rates. The value of this game provides a lower bound of the criterion under investigation for the given control structure and the bounded disturbances as well as the bounded parametrization of the control law. The numerical solution for this problem type is obtained by employing a highly parallelized solver implemented on a grid computer. The current implementation of this solver allows for the solution of nonlinear state constrained differential games in up to seven dimensions. An example problem formulation is presented for testing the longitudinal controller of a generic aircraft model using a worst case pilot command as disturbance input.
机译:在本文中,我们提出了一种使用差分博弈理论测试具有最佳扰动的飞行控制律的方法。该方法基于状态约束的差分博弈公式,其中将要研究的标准引入成本函数中。在这个差分游戏中,代表干扰作用于闭环系统的第一位玩家试图在固定的终端时间点最大化标准的值。对于我们的应用程序,该播放器不仅可以模拟飞行控制系统的典型干扰(例如阵风),还可以模拟飞行员命令或其他可能将闭环系统驱动到不安全状态的外部影响。第二个最小化的参与者表示控制律参数,并且受状态约束(例如执行器位置和速率的限制)的影响。对于给定的控制结构和有界干扰以及控制律的有界参数化,该博弈的值提供了所研究准则的下限。通过使用在网格计算机上实现的高度并行化的求解器,可以获得针对此问题类型的数值解。该求解器的当前实现允许在多达七个维度上求解非线性状态约束的差分博弈。提出了一个示例问题公式,用于使用最坏情况的飞行员命令作为干扰输入来测试通用飞机模型的纵向控制器。

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