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Parameter Optimization of Dynamic Inversion Control Laws for Shipboard Operations

机译:舰载作战动态反演控制律的参数优化

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Two approaches to gains optimization of dynamic inversion control laws have been developed to facilitate the shipboard operation of rotorcraft. The first approach is a frequency-based method to optimize the tradeoff between stability margins and disturbance rejection properties; the second approach uses direct optimization of gains to enhance tracking performance in the time domain. Comparative studies show that both methods tend to use high gain design for improvement of tracking error while rejecting airwake disturbances and following station-keeping commands over a moving deck. The frequency domain based method provides firm information on the margin to instability, although this is done via analysis of each axis independently. The direct optimization approach directly addresses tracking error performance in all axes, but the method resulted in only moderate improvements over the baseline gains for the particular case studied.
机译:已经开发了两种获得动态反演控制定律最优化的方法,以促进旋翼飞机的舰载操作。第一种方法是基于频率的方法,用于优化稳定裕度和干扰抑制特性之间的折衷。第二种方法使用增益的直接优化来增强时域的跟踪性能。比较研究表明,两种方法都倾向于使用高增益设计来改善跟踪误差,同时拒绝空中苏醒干扰并遵循移动甲板上的站点保持命令。尽管通过独立分析每个轴来完成,基于频域的方法提供了关于不稳定性裕度的可靠信息。直接优化方法直接解决了所有轴上的跟踪误差性能,但是对于所研究的特定情况,该方法仅对基线增益进行了适度的改进。

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