首页> 外文会议>AHS International Specialists' Meeting >An Integrated Simulation and Flight Testing Approach for Unmanned Aerial Systems (UAS) Airworthiness Criteria
【24h】

An Integrated Simulation and Flight Testing Approach for Unmanned Aerial Systems (UAS) Airworthiness Criteria

机译:无人空中系统(UAS)适航标准的集成仿真和飞行试验方法

获取原文

摘要

A Tri-Service Unmanned Aerial Systems (UAS) Airworthiness Integrated Product Team (IPT) has been formed under the sponsorship of the Joint Aeronautical Commander抯 Group (JACG) to coordinate the development of UAS airworthiness criteria under each service抯 airworthiness authority1. This IPT is focused on three primary variables as the driving factors for certification requirements: ?Airspace required for primary operations -^sSpecial Use airspace versus full access to National/International airspace ?Vehicle Type -^sWeight based demarcation (large, medium, light, mini) ?Vehicle Performance -^sMaximum speed listed, but could be expanded to include other characteristics Selection of applicable airworthiness certification criteria, and the associated criteria standards and acceptable methods of compliance, is dependent upon the variables above. One basic premise is that aircraft systems designed primarily for use in Special Use airspace may allow for use of a different set of certification criteria, different criteria standards, and/or different methods of verifying compliance than those systems designed for operations primarily in Non-Special Use airspace. The Georgia Institute of Technology proposes to support the Tri-Service UAS Airworthiness IPT by extending the very successful integrated UAS simulation and flight testing environment they developed as the rotary wing aircraft system integrator for the DARPA Software Enabled Control (SEC) for Intelligent Unmanned Aerial Vehicles (UAVs) Program2. They also propose to use technologies and experience from being the lead for the Air Force Multi-disciplinary University Research Initiative (MURI) Vision Based Control Program. A study contract was issued by NAVAIR through the National Institute for Aerospace (NIA) and a white paper3 has been prepared to outline the overall approach which is described and presented in this paper.
机译:在联合航空指挥官抯组(JACG)的赞助下,一家无人驾驶空中系统(UAS)为适航综合产品团队(IPT),以协调每次维修管理机构下的UAS适航标准的开发。这一IPT专注于三个主要变量作为认证要求的驱动因素:?主要操作所需的空域 - ^ Sspecial使用空域与全国/国际空域的全部访问?车辆类型 - ^基于野蛮的划分(大,中,灯,光线,迷你)?车辆性能 - ^SMAXi级速度列出,但可以扩展到包括适用适用的适用性认证标准的其他特征,以及相关的标准标准和可接受的遵守方法,取决于上述变量。一个基本前提是主要用于特殊用途空域的飞机系统可以允许使用不同的认证标准,不同的标准标准和/或验证合规性的不同方法,而不是主要在非特殊的操作使用空域。佐治亚州理工学院建议通过扩展非常成功的集成UAS仿真和飞行测试环境来支持TRI-Service UAS适航IPT,它们开发为旋转翼飞机系统集成商,为DARPA软件的控制(秒)为智能无人驾驶飞行器(无人机)程序2。他们还建议使用技术和经验来成为空军多学科大学研究倡议(Muri)视觉的控制计划的领先地位。纳维航空公司通过国家航空航天研究所(NIA)颁发了一项研究合同,并准备了一个白皮书,以概述本文中描述和展示的整体方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号