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Periodic Optimal Control For Range Maximization Of Powered Sailplanes With Retractable Electric Motor

机译:具有可伸缩电动机的动力滑模的定期最佳控制

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The maximum-range flight of a powered sailplane with a retractable electric motor is treated as a periodic optimal control problem. The periodic nature of the maximum-range flight, known as saw-tooth mode, is due to the high drag when the motor is extended and the low drag when the motor is retracted. An optimization treatment based on energy considerations is performed to develop analytical solutions and to deepen the insight into the physical mechanism underlying the superiority of the saw-tooth mode. This is complemented by a treatment using a modeling based on point mass dynamics and an efficient optimization method to construct solutions for maximum-range saw-tooth flight. As a main result concerning the range performance, it is shown that the maximum range achievable with optimal saw-tooth flight is considerably larger than the greatest range possible with the best steady-state cruise.
机译:带有可伸缩电动机的动力滑翔机的最大范围飞行被视为定期的最佳控制问题。最大程度飞行的周期性,称为锯齿模式,是由于当电动机延伸时的高拖动,并且当电动机缩回时的低拖动。进行基于能量考虑的优化处理,以开发分析解决方案,并深入了解锯齿模式优越性的物理机制的洞察。这是通过使用基于点质量动态的建模和有效优化方法的处理来补充,以构建最大程度锯齿飞行的解决方案。作为有关范围性能的主要结果,显示最佳锯齿飞行可实现的最大范围比最佳稳态巡航的最大范围大得多。

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