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Recent NASA Wind Tunnel Free-Flight Testing of A Multirotor Unmanned Aircraft System

机译:NASA最近对多旋翼无人机系统进行风洞自由飞行测试

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Wind tunnel free-flight tests of a small quadrotor aircraft were completed in the NASA Langley 12-Foot Low Speed Tunnel and 20-Foot Vertical Spin Tunnel. The primary objective of these tests was to acquire flight data in forward and descending flight for the purpose of assessing the fidelity of an all-attitude flight dynamics simulation previously developed from static and dynamic wind tunnel data. A secondary objective was to demonstrate and mature free-flight test methods specific to the emerging class of small unmanned aircraft and urban air mobility vehicles. Experimental flight data correlated well with simulation predictions which included steady trim conditions consistent with straight and level flight, and quasi-steady conditions associated with descent velocities prone to vortex ring state development. The test method was shown to be well suited to these classes of vehicles and several unique infrastructure requirements, including tether systems and data acquisition requirements were identified. In addition, unique operational test techniques and safety procedures were developed to accommodate the testing. Results of these tests will be used to support air traffic management studies and research into safety assurance concepts that enable the integration of these classes of vehicles into the National Airspace System.
机译:在NASA兰利12英尺低速隧道和20英尺垂直旋转隧道中完成了小型四旋翼飞机的风洞自由飞行测试。这些测试的主要目的是获取向前和向下飞行的飞行数据,以评估以前根据静态和动态风洞数据开发的全姿态飞行动力学模拟的保真度。第二个目标是证明和成熟于新兴的小型无人飞机和城市空中机动车辆的自由飞行测试方法。实验飞行数据与模拟预测很好地相关,模拟预测包括与直线飞行和水平飞行一致的稳定纵倾条件,以及与易于产生涡旋环态发展的下降速度相关的准稳定条件。事实证明,该测试方法非常适合这些类型的车辆,并且确定了一些独特的基础设施要求,包括系绳系统和数据采集要求。此外,还开发了独特的操作测试技术和安全程序来适应测试。这些测试的结果将用于支持空中交通管理研究以及对安全保障概念的研究,这些概念使这些类型的车辆能够集成到国家空域系统中。

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