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Enhancing UAS Pilot Safety by Terminal and Airport Shared Information Situational Awareness

机译:通过终端和机场共享信息情境意识提升UAS试点安全性

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Numerous parties have a desire to operate Unmanned Aircraft Systems (UASs)~1 and small UASs (known as "sUAS") in the complex terminal environment and on the airport surface. New and increasingly available surveillance technologies, data link driven controller instructions such as DTAXI, and access to NAS system information via SWIM (System Wide Information Management) are potential means to enhance the ability of the UAS Pilot in Command's (PICs) to integrate and operate safely in the terminal environment. Vendors directly connected to SWIM feeds can receive ASDEX data from equipped airports. Vendors also connect to other NAS data feeds for flight planning, airport status, weather information, and traffic flow management initiatives. These data feeds are transitioning to new formats consistent with international standards. All of these information streams are able to provide the Remote PIC with better Situational Awareness (SA) and the ability to better understand the relationship of their aircraft to other aircraft movements; all of which will assist in maintaining the efficiency of NAS operations as well as the speed and tempo of airports operations. Future airport area surveillance information sources from ADS-B and from Ground Based Sense and Avoid (GBSAA) solutions are also emerging. Enhanced vision technologies for Remotely Piloted Aircraft (RPA) are being deployed to support reduced visibility operations. Additionally, autonomous technologies are being researched to control aircraft movement on the airport surface. Specific pilot alerts are being developed for surface events, such as conformance to taxi path, failure of other aircraft to hold for crossing clearances, or intersection encroachments. This paper provides an integrated view of how these emerging technologies can be leveraged to support the Remote PIC and the UAS operations in congested terminal airspace and on airport surface operations.
机译:众多各方希望在复杂的终端环境和机场表面上操作无人驾驶飞机系统(UASS)〜1和小型乌斯(称为“SUAS”)。新且越来越可用的监控技术,数据链路驱动的控制器指示,如Dtaxi,以及通过SWIM(系统广播信息管理)访问NAS系统信息是增强UAS飞行员在命令(PICS)中集成和操作的能力的潜在手段安全地在终端环境中。直接连接到游泳饲料的供应商可以获得有设备的机场的ASDEX数据。供应商还连接到航班规划,机场地位,天气信息和交通流量管理计划的其他NAS数据源。这些数据馈送正在转换为与国际标准一致的新格式。所有这些信息流都能够以更好的情况感知(SA)提供远程照片,并能够更好地了解飞机与其他飞机运动的关系;所有这些都将有助于保持NAS运营的效率以及机场运营的速度和节奏。未来的机场区域监控信息来自ADS-B和地面的感觉和避免(GBSAA)解决方案也在出现。正在部署用于远程驾驶飞机(RPA)的增强视觉技术,以支持降低的可见性操作。此外,正在研究自治技术,以控制机场表面的飞机运动。正在为表面事件开发特定的导频警报,例如符合出租车路径,其他飞机的失败,以保持交叉间隙,或交叉路口侵占。本文提供了如何利用这些新兴技术来支持远程照片和拥挤终端空域和机场表面操作的遥控器和UAS操作的综合图。

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