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Local Search for Designing Noise-Minimal Rotorcraft Approach Trajectories

机译:设计噪声最小的旋翼机进场轨迹的本地搜索

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摘要

NASA and the international community are investing in the development of a commercial transportation infrastructure that includes the increased use of rotorcraft, specifically helicopters and civil tilt rotors. However, there is significant concern over the impact of noise on the communities surrounding the transportation facilities. One way to address the rotorcraft noise problem is by exploiting powerful search techniques coming from artificial intelligence coupled with simulation and field tests to design low-noise flight profiles which can be tested in simulation or through field tests. This paper investigates the use of simulation based on predictive physical models to facilitate the search for low-noise trajectories using local search combined with a robust noise simulator.
机译:美国国家航空航天局(NASA)和国际社会正在投资开发商业运输基础设施,包括增加旋翼飞机的使用,特别是直升机和民用倾斜旋翼的使用。但是,人们非常关注噪声对交通设施周围社区的影响。解决旋翼飞机噪声问题的一种方法是,利用人工智能带来的强大搜索技术,再结合模拟和现场测试,来设计可在模拟或现场测试中进行测试的低噪声飞行轮廓。本文研究了基于预测物理模型的仿真的使用,该仿真通过结合使用局部搜索和鲁棒的噪声模拟器来促进对低噪声轨迹的搜索。

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