首页> 外文会议>AIAA information systems-AIAA infotech@aerospace;AIAA SciTech forum >μADS-B Detect and Avoid Flight Tests on Phantom 4 Unmanned Aircraft System
【24h】

μADS-B Detect and Avoid Flight Tests on Phantom 4 Unmanned Aircraft System

机译:μADS-B检测并避免在Phantom 4无人机系统上进行飞行测试

获取原文

摘要

Researchers at the National Aeronautics and Space Administration Armstrong Flight Research Center in Edwards, California and Vigilant Aerospace Systems collaborated for the flight-test demonstration of an Automatic Dependent Surveillance-Broadcast based collision avoidance technology on a small unmanned aircraft system equipped with the uAvionix Automatic Dependent Surveillance-Broadcast transponder. The purpose of the testing was to demonstrate that National Aeronautics and Space Administration / Vigilant software and algorithms, commercialized as the FlightHorizon UAS~(™), are compatible with uAvionix hardware systems and the DJI Phantom 4 small unmanned aircraft system. The testing and demonstrations were necessary for both parties to further develop and certify the technology in three key areas: flights beyond visual line of sight, collision avoidance, and autonomous operations. The National Aeronautics and Space Administration and Vigilant Aerospace Systems have developed and successfully flight-tested an Automatic Dependent Surveillance-Broadcast Detect and Avoid system on the Phantom 4 small unmanned aircraft system. The Automatic Dependent Surveillance-Broadcast Detect and Avoid system architecture is especially suited for small unmanned aircraft systems because it integrates: 1) miniaturized Automatic Dependent Surveillance-Broadcast hardware; 2) radio data-link communications; 3) software algorithms for real-time Automatic Dependent Surveillance-Broadcast data integration, conflict detection, and alerting; and 4) a synthetic vision display using a fully-integrated National Aeronautics and Space Administration geobrowser for three dimensional graphical representations for ownship and air traffic situational awareness. The flight-test objectives were to evaluate the performance of Automatic Dependent Surveillance-Broadcast Detect and Avoid collision avoidance technology as installed on two small unmanned aircraft systems. In December 2016, four flight tests were conducted at Edwards Air Force Base. Researchers in the ground control station looking at displays were able to verify the Automatic Dependent Surveillance-Broadcast target detection and collision avoidance resolutions. Further, a Federal Aviation Administration representative witnessed the flight-test execution of beyond line-of-sight encounter geometries and collision avoidance resolutions of small unmanned aircraft sytems.
机译:美国国家航空航天局的研究人员ARMSTRONG在爱德华州的飞行研究中心,加利福尼亚州和警惕航空航天系统,用于在一个带有Uavionix自动依赖的小型无人机系统上自动依赖监控基础的碰撞技术的飞行试验演示监控广播转发器。该测试的目的是证明美国国家航空管理局/警惕软件和算法,商业化为Flighthorizo​​n UAS〜(™),与Uavionix硬件系统和Dji Phantom 4小型无人机系统兼容。双方在三个关键领域进一步发展和证明技术的测试和示范是必要的:超越视野视线,碰撞和自主操作之外的航班。美国国家航空航天局和警惕航空航天系统已经开发并成功地在幻影4小型无人机系统上进行了自动依赖监控广播检测和避免系统。自动依赖监控广播检测和避免系统架构尤其适用于小型无人机系统,因为它集成了:1)小型化自动依赖监视广播硬件; 2)无线​​电数据链路通信; 3)实时自动依赖监控数据集成,冲突检测和警报的软件算法; 4)使用全综合的美国国家航空航天局的合成视觉展示,用于三维图形表示,用于自己和空中交通情境意识。飞行试验目标是评估自动依赖监视广播检测的性能,并避免安装在两个小型无人机系统上的碰撞避免技术。 2016年12月,在爱德华兹空军基地进行了四次飞行试验。在看显示的地面控制站的研究人员能够验证自动依赖的监视广播目标检测和碰撞避免分辨率。此外,联邦航空总局代表目睹了超越视线上的飞行试验执行,遇到了小无人驾驶飞机系统的几何形状和碰撞分辨率。

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