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Secrecy outage probability of UAV-aided selective relaying networks

机译:UAV辅助选择性中继网络的保密性中断概率

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In this work, we analyze the secrecy outage probability of unmanned aerial vehicle (UAV)-aided selective relaying networks with M UAV-transmitters (UTs), N UAV-relays(URs), and K collaborative UAV-eavesdroppers (UEs). In the main channel, the best UT-UR pair is selected to transmit the source message to the destination, while unreliable ground-to-air (G2A) wireless backhaul across multiple UTs is considered. In the eavesdropper channel, the UEs intelligently exchange the information received form the UTs and URs, while eavesdropping probability among UEs is considered. Due to non-ideal line of sight transmission, network congestion, and synchronization, we introduce backhaul reliability to reflect the practical constraint on G2A wireless backhaul. To reflect UEs' synchronization to the main channel and their consumed communication resources for inner-information exchange, we introduce eavesdropping probability to describe the cost of UE collaboration. The exact secrecy outage probability is presented in a closed form. It is shown that the asymptotic secrecy outage probability is exclusively determined by M, N, and backhaul reliability. Simulation results verify the accuracy of the analytical expressions.
机译:在这项工作中,我们分析了无人驾驶车辆(UAV)的秘密中断概率与M UAV发射器(UTS),N个中继(US)和K协作UAV-eAVESDOPERS(UE)的秘密中断网络。在主通道中,选择最佳UT-UR对以将源消息传输到目的地,而跨多个UTS的不可靠的地到空气(G2A)无线回程。在窃听者频道中,UE智能地交换所接收的信息,该信息形成UTS和URS,同时考虑窃听UE之间的概率。由于非理想的视线传输,网络拥塞和同步,我们介绍了回程可靠性,以反映G2A无线回程的实际限制。为了将UES对主信道的同步及其消耗的内部信息交换的通信资源反映,我们介绍窃听概率来描述UE协作的成本。确切的保密中断概率以封闭的形式呈现。结果表明,渐近保密性中断概率专门由M,N和回程可靠性确定。仿真结果验证了分析表达式的准确性。

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