Lee Woonghee, Lee Joon Yeop, Joo Hyeontae, Kim Hwangnam
School of Electrical Engineering, Korea University, Seoul 02841, Korea.
Sensors (Basel). 2021 Apr 15;21(8):2791. doi: 10.3390/s21082791.
Recently, unmanned aerial vehicles (UAVs) have been applied to various applications. In order to perform repetitive and accurate tasks with a UAV, it is more efficient for the operator to perform the tasks through an integrated management program rather than controlling the UAVs one by one through a controller. In this environment, control packets must be reliably delivered to the UAV to perform missions stably. However, wireless communication is at risk of packet loss or packet delay. Typical network communications can respond to situations in which packets are lost by retransmitting lost packets. However, in the case of UAV control, delay due to retransmission is fatal, so control packet loss and delay should not occur. As UAVs move quickly, there is a high risk of accidents if control packets are lost or delayed. In order to stably control a UAV by transmitting control messages, we propose a control packet transmission scheme, . replicates control packets and then transmits them over multiple network connections to increase the probability of successful control packet transmission. We implemented using real equipment, and we verified its performance through experiments and theoretical analysis.
最近,无人机已被应用于各种领域。为了让无人机执行重复且精确的任务,操作员通过集成管理程序执行任务比通过控制器逐个控制无人机更高效。在这种环境下,控制数据包必须可靠地传送到无人机,以便稳定地执行任务。然而,无线通信存在数据包丢失或延迟的风险。典型的网络通信可以通过重传丢失的数据包来应对数据包丢失的情况。但是,在无人机控制中,重传导致的延迟是致命的,因此不应出现控制数据包丢失和延迟的情况。由于无人机移动速度快,如果控制数据包丢失或延迟,发生事故的风险很高。为了通过传输控制消息来稳定控制无人机,我们提出了一种控制数据包传输方案,该方案复制控制数据包,然后通过多个网络连接进行传输,以提高控制数据包成功传输的概率。我们使用实际设备实现了该方案,并通过实验和理论分析验证了其性能。