Connectivity between ground vehicles can be utilized and expanded to include aerial vehicles for coordinated missions. Using Vehicle-to-Everything (V2X) communication technologies, a communication link can be established between Connected and Autonomous vehicles (CAVs) and Unmanned Aerial vehicles (UAVs). Hardware implementation and testing of a ground to air communication link is crucial for real-life applications. Two different communication links were established, Dedicated Short Range communication (DSRC) and 4G internet based WebSocket communication. Both links were tested separately both for stationary and dynamic test cases. One step further, both links were used together for a real-life use case scenario called Quick Clear demonstration. The aim was to first send ground vehicle location information from the CAV to the UAV through DSRC communication. On the UAV side, the connection between the DSRC modem and Raspberry Pi companion computer was established through User Datagram Protocol (UDP) to get the CAV location information to the companion computer. Raspberry Pi handles 2 different connection, it first connects to a traffic contingency management system (CMP) through Transmission Control Protocol (TCP) to send CAV and UAV location information to the CMP. Secondly, Raspberry Pi uses a WebSocket communication to connect to a web server to send photos taken by an on-board camera the UAV has. Quick Clear demo was conducted both for stationary test and dynamic flight tests. The results show that this communication structure can be utilized for real-life scenarios.
翻译:地面车辆之间的连接可加以利用和扩大,以包括协调飞行任务的航空飞行器。使用车辆对一切的(V2X)通信技术,可以在连接和自主车辆和无人驾驶飞行器之间建立通信联系。硬件安装和测试地面对空中通信联系对于现实生活应用至关重要。建立了两种不同的通信联系,即专用短距离通信(DSSRC)和基于网络Socket的4G互联网网络通信。两种链接都分别为固定和动态测试案例进行了测试。还有一步是,两种链接一起用于称为快速清晰演示的真实使用情况。目的是首先通过DSRC通信将地面车辆定位信息从CAV发送至无人驾驶飞行器。在UAV方面,DSRC调制调制与Raspberry Pi伴带计算机的连接是通过用户数据表协议(UDP),将CAV定位定位信息单独测试。Raspberry Pi处理2个不同的连接,首先连接到交通应急管理系统(CMP),通过快速控制协议将实际飞行测试结果传送到服务器。通过PAVRC-C测试平台将快速测试结果发送。