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Flying Qualities Specifications and Design Standards forUnmanned Air Vehicles

机译:飞行素质规格和设计标准违反了航空器

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An increasing number of unmanned air vehicle (UAV) systems are being developed for use by the U.S. Navy and Marine Corps. The adequate design and development of UAV platforms is crucial to future fleet operations. Flying qualities standards and criteria are currently deficient for UAVs and rely heavily on manned air vehicle standards and guidance. UAV specific missions, tasking, and payload requirements warrant development of new standards and criteria. Inadequate flying qualities specifications for UAVs may lead to reduced operational effectiveness, high loss rates, increased development cost and delays, and unnecessary design requirements. Typical guidance used in developing UAV platform system specifications for flying qualities has been MIL-F-8785, MIL-HDBK-1797, MIL-HDBK-516, and ADS-33-PRF. These documents, developed as manned specifications, are correlated to pilot comfort and abilities, and have not been updated to address UAV specific needs and requirements. Current UAV specifications do not take into account sensor and payload mission requirements, and changes in basic flying qualities criteria that would allow more flexibility to the UAV designer without compromising airworthiness or mission performance. For example, traditional stall warning devices that ensure safe margin for pilots could be replaced with requirements for sensors and software that recognize and recover from upset conditions when they occur. Modifications to the existing manned flying qualities specifications go well beyond removing requirements for stick force gradients, but delve into the basic stability and control requirements of the airborne system itself. A UAV design should be aided, not hampered, by the more than 100 years of manned aviation history, to reach its full potential for mission performance. This paper briefly assesses the contents of the various fixed wing flying qualities specifications, identifies certain deficiencies with respect to UAVs, and proposes the development of new flying qualities criteria, specifications, and design standards specific to UAV platforms. Additionally, thispaper identifies key research areas for the future.
机译:正在开发出越来越多的无人驾驶航空公司(UAV)系统以供美国海军和海军陆战队使用。 UAV平台的充分设计和开发对于未来的舰队运营至关重要。飞行质量标准和标准目前缺乏无人机,依靠载人航空公司标准和指导。无人机特定的任务,任务和有效载荷需求要求新标准和标准的开发。无人机的速度范围不足可能导致运营效率降低,高损失率,增加的开发成本和延误以及不必要的设计要求。用于开发UAV平台系统的典型指南,用于发展Quav平台的飞行品质规范已经是MIL-F-8785,MIL-HDBK-1797,MIL-HDBK-516和ADS-33-PRF。这些文件作为载人规范开发的文件与试点舒适和能力相关,并且尚未更新以满足UAV特定需求和要求。目前的UAV规范不会考虑传感器和有效载荷任务要求,以及基本飞行质量标准的变化,这将对无人机设计师提供更大的灵活性,而不会影响适航或使命性能。例如,传统的失速警告设备,确保飞行员安全余量可以替换为传感器和软件的要求替换,这些要求和软件在发生时识别和从扰乱条件中恢复。对现有有载有载有造币型品质规格的修改远远超出去除棒力梯度的要求,但深入研究空中系统本身的基本稳定性和控制要求。 UAV设计应援助,并未受到妨碍100多年的载人航空历史,以达到其使命绩效的全部潜力。本文简要评估了各种固定翼飞行质量规范的内容,确定了对无人机的某些缺陷,并提出了开发新的飞行质量标准,规范和特定于UAV平台的设计标准。此外,此纸纸识别未来的主要研究领域。

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