Optimization for UAV-Assisted Simultaneous Transmission and Reception Communications in the Existence of Malicious Jammers

Zhiyu Huang, Shuzhen Liu, Zhichao Sheng, Hongwen Yu, Antonino Masaracchia
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Abstract

In this paper, we study an unmanned aerial vehicle (UAV)-assisted communication system, where the UAV is dispatched to implement simultaneous transmission and reception (STR) in the existence of multiple malicious jammers. Two schemes are investigated, namely frequency band-division-duplex (FDD) and time-fraction (TF). Based on FDD scheme, the UAV can transmit information by using the portion of the bandwidth and receive information within the remaining portion of the bandwidth simultaneously. To perform the STR within the whole bandwidth, the TF-based scheme is considered by using a fraction of a time slot for the downlink, while the remaining fraction of the time slot is allocated for the uplink. We aim to maximize the worst-case throughput by optimizing the UAV three dimensional (3D) trajectory and resource allocation for each scheme. The optimization problem is non-convex and thus computationally intractable. To handle the nonlinear problem, we use the block coordinate decomposition method to disaggregate the optimization problem into four subproblems and adopt the successive convex approximation technique to tackle non-convex problems. The simulation results demonstrate the performance of TF-based scheme over the benchmark schemes.
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存在恶意干扰时无人机辅助同步收发通信优化
本文研究了一种无人机辅助通信系统,在存在多个恶意干扰器的情况下,派遣无人机实现同时发送和接收(STR)。研究了两种方案,即频带分双工(FDD)和时间分数(TF)。基于FDD方案,无人机可以利用部分带宽发送信息,同时接收剩余部分带宽内的信息。为了在整个带宽内执行STR,考虑基于tf的方案,将一小部分时隙用于下行链路,而将剩余的时隙用于上行链路。我们的目标是通过优化无人机三维轨迹和每种方案的资源分配来最大化最坏情况下的吞吐量。优化问题是非凸的,因此难以计算。为了处理非线性问题,我们采用分块坐标分解法将优化问题分解为4个子问题,并采用逐次凸逼近技术处理非凸问题。仿真结果验证了基于tf的方案优于基准方案的性能。
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Preface: Security and Safety in Unmanned Systems Optimization for UAV-Assisted Simultaneous Transmission and Reception Communications in the Existence of Malicious Jammers Enabling Space-Air Integration: A Satellite-UAV Networking Authentication Scheme Adaptive Cooperative Secure Control of Networked Multiple Unmanned Systems under FDI Attacks Optimal DoS Attack on Multi-Channel Cyber-Physical Systems: A Stackelberg Game Analysis
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