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首页> 外文期刊>Journal of guidance, control, and dynamics >Flight-Test Evaluation of an Adaptive Controller for Flying Qualities Specification and Protection
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Flight-Test Evaluation of an Adaptive Controller for Flying Qualities Specification and Protection

机译:用于飞行质量规范和保护的自适应控制器的飞行试验评估

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摘要

The human pilot is a crucial component of the pilot/vehicle system. This article focuses on the in-flight ability of an adaptive receding horizon optimal controller to specify favorable flying qualities. Moreover, in the case of a deteriorated vehicle, the controller serves to protect the desirable flying qualities by automatically compensating for the new aircraft characteristics. Although the receding horizon optimal controller is able to protect the handling qualities as long as adequate physical control authority exists, particularly severe failures can result in heavily limited authority where encounters with actuator rate limits may occur. The controller itself is robust to rate-limit encounters, however, the handling qualities suffer because the authority no longer exists to deliver the performance expected by the pilot To protect handling qualities and mitigate the risk of pilot-induced oscillation past this exhaustion of control authority, the controller is integrated into the Smart Adaptive Flight Effective Cue system (detailed elsewhere). The piloted flight tests demonstrate the capability of the receding horizon optimal controller to 1) deliver specified flying qualities, 2) protect those flying qualities in failure cases where adequate authority exists, and 3) operate in tandem with the Smart Adaptive Flight Effective Cue system to protect the pilot/vehicle system in cases of severely limited authority.
机译:飞行员是飞行员/车辆系统的重要组成部分。本文重点介绍自适应后视地平线最优控制器的飞行能力,以指定有利的飞行质量。而且,在车辆损坏的情况下,控制器用于通过自动补偿新的飞机特性来保护所需的飞行质量。尽管只要存在足够的物理控制权限,后退最佳控制器就能保护操作质量,但特别严重的故障可能会导致权限严重受限,从而可能遇到执行器速率限制。控制器本身对遇到速率限制很鲁棒,但是,由于不再具有提供飞行员预期性能的权限,因此操纵质量受到损害。为了保护操纵质量并减轻飞行员在这种控制权限耗尽后引起的振荡的风险,该控制器已集成到“智能自适应飞行有效提示”系统中(在其他地方详细介绍)。试飞测试表明,后退水平最优控制器具有以下能力:1)提供指定的飞行质量,2)在存在足够权限的故障情况下保护那些飞行质量,以及3)与Smart Adaptive Flight Effective Cue系统配合使用,以达到以下目的:在权限受到严格限制的情况下保护飞行员/车辆系统。

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