Small teams in the field can benefit from the capabilities provided by small Uncrewed Aerial Systems (sUAS) for missions such as reconnaissance, hostile attribution, remote emplacement, and search and rescue. The mobility, communications, and flexible payload capacity of sUAS can offer teams new levels of situational awareness and enable more highly coordinated missions than previously possible. However, piloting such aircraft for specific missions draws personnel away from other mission-critical tasks, increasing the load on remaining personnel while also increasing complexity of operations. For wider adoption and use of sUAS for security and humanitarian missions, safe and robust autonomy must be employed to reduce this burden on small teams. In this paper, we present the development of the Collaborative-UAS for Hostile Attribution, Surveillance, Emplacement, and Reconnaissance (CHASER) testbed, for rapidly prototyping capabilities that will reduce strain on small teams through sensor-guided autonomous control. We attempt to address autonomy needs unfilled by commercial sUAS platforms by creating and testing a series of composable modules that can be configured to support multiple missions. Methods implemented and presented here include radar track correlation, on-board computer vision target detection, target position estimation, closed-loop relative position control, and efficient search of a 3D volume for target acquisition. We configure and test a series of these modules in an example mission, executing a fully autonomous chase of an intruding sUAS in live flight, and demonstrating the success of the modularized autonomy approach. We present performance results from simulation or live flight tests for each module. Lastly, we describe the software architecture that we have developed for flexible controls and comment on how the capabilities presented may enable additional missions.
翻译:外地的小型小组可以受益于小型无人驾驶航空系统(SUAS)为侦察、敌对归属、远程安放、搜索和救援等特派团提供的能力; SUAS的机动性、通信和灵活有效载荷能力可为各小组提供新的情况认识水平,使特派团能够比以前可能做到的更加高度协调; 然而,为特定特派团试验这种飞机,使人员远离其他特派团关键任务,增加剩余人员的负担,同时增加行动的复杂性; 为了更广泛地为安全和人道主义特派团采用和使用SUAS,必须使用安全和强大的自主性来减轻小型小组的负担; 在本文件中,我们介绍开发用于敌对、监视、进驻和侦察的协同-UAS系统测试,使各小组能够迅速进行预测性工作,通过传感器引导的自主控制,减轻小小组的压力; 我们试图通过建立和测试一套可配置为多个特派团提供实时支持的可调制模块来解决自治问题。