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支持自动空对空加油的探头配置无人机的传感器技术综述。

Review of Sensor Technology to Support Automated Air-to-Air Refueling of a Probe Configured Uncrewed Aircraft.

机构信息

Polytechnic Institute, Purdue University, West Lafayette, IN 47907, USA.

School of Aviation and Transportation Technology, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Sensors (Basel). 2023 Jan 15;23(2):995. doi: 10.3390/s23020995.

Abstract

As technologies advance and applications for uncrewed aircraft increase, the capability to conduct automated air-to-air refueling becomes increasingly important. This paper provides a review of required sensors to enable automated air-to-air refueling for an uncrewed aircraft, as well as a review of published research on the topic. Automated air-to-air refueling of uncrewed aircraft eliminates the need for ground infrastructure for intermediate refueling, as well as the need for on-site personnel. Automated air-to-air refueling potentially supports civilian applications such as weather monitoring, surveillance for wildfires, search and rescue, and emergency response, especially when airfields are not available due to natural disasters. For military applications, to enable the Air Wing of the Future to strike at the ranges required for the mission, both crewed and uncrewed aircraft must be capable of air-to-air refueling. To cover the sensors required to complete automated air-to-air refueling, a brief history of air-to-air refueling is presented, followed by a concept of employment for uncrewed aircraft refueling, and finally, a review of the sensors required to complete the different phases of automated air-to-air refueling. To complete uncrewed aircraft refueling, the uncrewed receiver aircraft must have the sensors required to establish communication, determine relative position, decrease separation to astern position, transition to computer vision, position keep during refueling, and separate from the tanker aircraft upon completion of refueling. This paper provides a review of the twelve sensors that would enable the uncrewed aircraft to complete the seven tasks required for automated air-to-air refueling.

摘要

随着技术的进步和无人机应用的增加,实现自动空对空加油的能力变得越来越重要。本文回顾了实现无人机自动空对空加油所需的传感器,以及关于该主题的已发表研究。无人机的自动空对空加油消除了对中间加油所需的地面基础设施的需求,以及对现场人员的需求。自动空对空加油可能支持民用应用,如天气监测、野火监测、搜索和救援以及应急响应,特别是在由于自然灾害而无法使用机场的情况下。对于军事应用,为了使未来的航空联队能够在任务所需的范围内进行打击,载人飞机和无人机都必须能够进行空对空加油。为了涵盖完成自动空对空加油所需的传感器,本文首先介绍了空对空加油的简要历史,然后介绍了无人机加油的使用概念,最后回顾了完成自动空对空加油不同阶段所需的传感器。为了完成无人机加油,无人机接收器必须具备建立通信、确定相对位置、减小至尾追位置的分离、过渡到计算机视觉、加油过程中的位置保持以及加油完成后与加油机分离所需的传感器。本文回顾了 12 个传感器,这些传感器将使无人机能够完成自动空对空加油所需的 7 个任务。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6089/9861264/313472caf611/sensors-23-00995-g001.jpg

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