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首页> 外文期刊>International journal of communication systems >Transmit-sense-receive-based cognitive antijamming for airborne ad hoc networks
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Transmit-sense-receive-based cognitive antijamming for airborne ad hoc networks

机译:基于发送-接收-接收的空中自组织网络认知抗干扰

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In this paper, a transmit-sense-receive mode-based simultaneous transmit-and-receive cognitive antijamming (SCAJ) strategy is proposed to enhance spectrally efficient of airborne networks in congested electromagnetic spectrum environment. We explore the performance of spectrum sensing based on energy detection in SCAJ system. The tight close form expressions of jamming detection and false-alarm probability are derived under different channels, the throughput of individual SCAJ system is analyzed, and SCAJ transceiver-based airborne ad hoc network capacity is presented for air platform equipping with digital beamforming antennas. Simulation results show that proposed SCAJ technology can improve the antijamming capability and airborne ad hoc network capacity compared to the half-duplex cognitive antijamming scheme. It is an effective approach to solve the problem of designing airborne networks arise from the limited availability of spectrum and the desire to provide much higher data rates.
机译:本文提出了一种基于发射-感知-接收模式的同时发射与接收认知抗干扰(SCAJ)策略,以提高电磁频谱环境中机载网络的频谱效率。我们探索了基于能量检测的SCAJ系统中频谱感知的性能。推导了在不同信道下的干扰检测和误报概率的紧密形式表达式,分析了单个SCAJ系统的吞吐量,并提出了基于SCAJ收发器的机载ad hoc网络容量,用于装备数字波束赋形天线的空中平台。仿真结果表明,与半双工认知抗干扰方案相比,所提出的SCAJ技术可以提高抗干扰能力和机载ad hoc网络容量。这是一种有效的方法,可以解决由于频谱可用性有限以及提供更高数据速率的需求而导致的机载网络设计问题。

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