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Received signal strength indicator-based decentralised control for robust long-range aerial networking using directional antennas

机译:基于接收信号强度指示器的分散控制,用于使用定向天线进行鲁棒的远程空中联网

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摘要

Aerial networking using directional antennas (ANDA) is referred as a promising solution for the networking of unmanned aerial vehicles (UAVs) and for the fast provision of on-demand communication infrastructure to the ground. The cyber constraints on communication channel characteristics and physical constraints on the payload, power, and mobility of UAVs make it challenging to achieve a robust ANDA. In this study, the authors develop a decentralised control algorithm for directional antennas mounted on two moving UAVs to achieve a robust broad-band long-distance communication channel. In particular, the self-alignment of UAV-mounted directional antennas over a long distance is achieved through fusing the Global Positioning System (GPS) and communication channel characteristic measured by received signal strength indicator, using unscented Kalman filter and fuzzy logic. The solution significantly enhances the performance of wireless communication channel in imperfect environment subject to the unavailability of GPS signals and unstable strength of wireless signals. Finally, simulations are performed to validate the decentralised directional antenna control approach.
机译:使用定向天线(ANDA)的空中网络被认为是无人飞行器(UAV)的网络以及为地面快速提供按需通信基础设施的有前途的解决方案。通信信道特性的网络约束以及无人机的有效载荷,功率和移动性的物理约束使得实现强大的ANDA具有挑战性。在这项研究中,作者为安装在两个移动式无人机上的定向天线开发了一种分散控制算法,以实现鲁棒的宽带长距离通信信道。特别是,通过融合全球定位系统(GPS)和接收信号强度指示器测量的通信信道特性,并使用无味卡尔曼滤波器和模糊逻辑,可以实现无人飞行器定向天线的长距离自对准。该解决方案在GPS信号不可用以及无线信号强度不稳定的不完美环境中,可以显着提高无线通信信道的性能。最后,进行仿真以验证分散式定向天线控制方法。

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