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Optimal Control Allocation with Load Sensor Feedback for Active Load Suppression, Experiment Development

机译:具有负载传感器反馈的最优控制分配,用于主动负载抑制,实验开发

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The problem of control command and maneuver induced structural loads is an important aspect of any control system design. The aircraft structure and the control architecture must be designed to achieve desired piloted control responses while limiting the imparted structural loads. The classical approach is to utilize high structural margins, restrict control surface commands to a limited set of analyzed combinations, and train pilots to follow procedural maneuvering limitations. With recent advances in structural sensing and the continued desire to improve safety and vehicle fuel efficiency, it is both possible and desirable to develop control architectures that enable lighter vehicle weights while maintaining and improving protection against structural damage. An optimal control technique has been explored and shown to achieve desirable vehicle control performance while limiting sensed structural loads. The subject of this paper is the design of the optimal control architecture, and provides the reader with some techniques for tailoring the architecture, along with detailed simulation results.
机译:控制命令和机动引起的结构载荷问题是任何控制系统设计的重要方面。飞行器结构和控制架构必须设计成在限制所施加的结构载荷的同时实现所需的飞行员控制响应。经典方法是利用较高的结构余量,将控制面命令限制为一组有限的分析组合,并训练飞行员遵循程序操作的限制。随着结构感测的最新进展以及对提高安全性和车辆燃料效率的持续需求,开发控制结构既可以使车辆重量更轻,又可以保持并改善对结构损坏的防护,这是既有可能的,也是合乎需要的。已经探索并示出了一种最佳控制技术,该技术能够在限制感测到的结构载荷的同时实现理想的车辆控制性能。本文的主题是最佳控制体系结构的设计,并为读者提供一些用于调整体系结构的技术以及详细的仿真结果。

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