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Trajectory Optimization Procedures for Rotorcraft Vehicles, their Software Implementation and Applicability to Models of Varying Complexity

机译:旋翼飞行器轨迹优化程序及其软件实现及对复杂性模型的适用性

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This paper describes numerical procedures for the solution of trajectory optimization problems in rotorcraft flight mechanics. We specifically consider procedures which can be easily interfaced with black-box flight simulators, with minimal assumptions on the functionalities of such third-party software components, and which can cater to a wide range of vehicle models of varying complexity. At first we identify in the direct approach to the solution of maneuver optimal control problems the method of choice for this class of problems. Next, we formulate the direct transcription and the direct multiple shooting approaches, we discuss their characteristics and identify their respective optimal application areas. Finally, we describe the functionality and architecture of a general purpose code implementing both methods. The capabilities of the proposed procedures are demonstrated with the help of practical examples of industrial relevance, regarding both helicopters and tilt-rotors.
机译:本文描述了解决旋翼飞行器飞行力学中的轨迹优化问题的数值程序。我们特别考虑了可以轻松地与黑匣子飞行模拟器进行交互的过程,而对此类第三方软件组件的功能的假设却很少,并且可以适应各种复杂程度各异的车辆模型。首先,我们在解决机动最优控制问题的直接方法中确定了此类问题的选择方法。接下来,我们制定直接转录和直接多重射击的方法,讨论它们的特征并确定它们各自的最佳应用领域。最后,我们描述实现这两种方法的通用代码的功能和体系结构。借助有关直升机和俯仰旋翼的工业相关实例,证明了所建议程序的功能。

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