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Safety Considerations for Operation of Unmanned Aerial Vehicles in the National Airspace System

机译:国家空域系统无人驾驶飞行器操作的安全考虑

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摘要

There is currently a broad effort underway in the United States and internationally by several organizations to craft regulations enabling the safe operation of UAVs in the NAS. Current federal regulations governing unmanned aircraft are limited in scope, and the lack of regulations is a barrier to achieving the full potential benefit of UAV operations. To inform future FAA regulations, an investigation of the safety considerations for UAV operation in the NAS was performed. Key issues relevant to operations in the NAS, including performance and operating architecture were examined, as well as current rules and regulations governing unmanned aircraft. In integrating UAV operations in the NAS, it will be important to consider the implications of different levels of vehicle control and autonomous capability and the source of traffic surveillance in the system.A system safety analysis was performed according to FAA system safety guidelines for two critical hazards in UAV operation: midair collision and ground impact. Event-based models were developed describing the likelihood of ground fatalities and midair collisions under several assumptions. From the models, a risk analysis was performed calculating the expected level of safety for each hazard without mitigation. The variation of expected level of safety was determined based on vehicle characteristics and population density for the ground impact hazard, and traffic density for midair collisions.The results of the safety analysis indicate that it may be possible to operate small UAVs with few operational and size restrictions over the majority of the United States. As UAV mass increases, mitigation measures must be utilized to further reduce both ground impact and midair collision risks to target levels from FAA guidance. It is in the public interest to achieve the full benefits of UAV operations, while still preserving safety through effective mitigation of risks with the least possible restrictions. Therefore, a framework was presented under which several potential mitigation measures were introduced and could be evaluated. It is likely that UAVs will be significant users of the future NAS, and this report provides an analytical basis for evaluating future regulatory decisions.
机译:目前,在美国和国际上,一些组织正在进行广泛的努力,以制定法规以使NAS中的无人机安全运行。当前有关无人驾驶飞机的联邦法规范围有限,缺乏法规是实现无人机运营的全部潜在利益的障碍。为了告知未来的FAA法规,对NAS中的无人机操作的安全注意事项进行了调查。研究了与NAS中的操作相关的关键问题,包括性能和操作体系结构,以及有关无人驾驶飞机的现行法规。在将无人机操作集成到NAS中时,重要的是要考虑不同级别的车辆控制和自动驾驶能力的影响以及系统中交通监控的来源。根据FAA系统安全准则对两个关键因素进行了系统安全分析无人机操作中的危险:空中碰撞和地面撞击。建立了基于事件的模型,该模型描述了几种假设下地面死亡和空中碰撞的可能性。根据这些模型,进行了风险分析,计算出每种危害的预期安全水平,而没有缓解措施。根据车辆特性和地面撞击危险的人口密度以及空中碰撞的交通密度,确定了预期安全等级的变化。安全分析的结果表明,有可能在操作和规模较小的情况下操作小型无人机对美国大部分地区的限制。随着无人机质量的增加,必须采取缓解措施,以将地面撞击和空中碰撞风险进一步降低至美国联邦航空局的指导水平。充分发挥无人机运营的利益符合公共利益,同时仍可以通过以最小限度的限制有效地减轻风险来保持安全。因此,提出了一个框架,在该框架下可以引入几种潜在的缓解措施并对其进行评估。无人机很可能会成为未来NAS的重要用户,该报告为评估未来的监管决策提供了分析基础。

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