RSSI-based heading control for robust long-range aerial networking using directional antennas

Jing Yan, Yan Wan, Junfei Xie, Shengli Fu, Songwei Li
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引用次数: 2

Abstract

Aerial networking using directional antennas (ANDA) is considered as a promising solution for the networking of unmanned aerial vehicles (UAVs) over long distance. The cyber constraints on communication channel characteristics and physical constraints on the payload, power, and mobility of UAVs produce challenges to achieve a robust ANDA. In this paper, an RSSI and fuzzy logic based control algorithm is developed to control 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 GPS and communication channel characteristic measured by received signal strength indicator (RSSI), using unscented Kalman filter and fuzzy logic strategies. Simulations are performed to validate the RSSI and fuzzy logic based directional antenna control approach. The solution developed in this paper can significantly enhance the performance of wireless communication channel in imperfect environment subject to the unavailability of GPS and unstable strength of wireless signals.
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基于rssi的定向天线鲁棒远程空中网络航向控制
使用定向天线(ANDA)的空中网络被认为是一种很有前途的远程无人驾驶飞行器(uav)网络解决方案。通信信道特性的网络约束和无人机有效载荷、功率和机动性的物理约束对实现鲁棒ANDA产生了挑战。本文提出了一种基于RSSI和模糊逻辑的控制算法,用于控制两架移动无人机上的定向天线,以实现鲁棒的宽带远程通信信道。其中,通过融合GPS和接收信号强度指示器(RSSI)测量的通信信道特征,采用无气味卡尔曼滤波和模糊逻辑策略,实现了无人机定向天线的远距离自对准。仿真验证了基于RSSI和模糊逻辑的定向天线控制方法。本文提出的解决方案可以在GPS不可用和无线信号强度不稳定的不完全环境下显著提高无线通信信道的性能。
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