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POMDP-Based Throughput Maximization for Cooperative Communications Networks with Energy-Constrained Relay under Attack in the Physical Layer

机译:基于POMDP的吞吐量最大化,用于在物理层中攻击中的能量受限继电器的合作通信网络

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摘要

In this paper, we investigate jamming attacks in the physical layer against cooperative communications networks, where a jammer tries to block the data communication between the source and destination. An energy-constrained relay is able to assist the source to forward the data to the destination even when the jammer tries to block the direct link. Due to a limited-capacity battery of the relay, a non-radio frequency energy harvester equipped in the relay helps to prolong its operation. We propose a scheme based on a partially observable Markov decision process (POMDP) to find the optimal action for the source such that we can maximize the achievable throughput of cooperative communications networks. Under this scheme, the source dynamically selects the appropriate action mode for its transmission in order to obtain maximum throughput under the jamming attack. Simulation results verify that the proposed scheme is superior to the Myopic scheme where only current throughput is taken into account for making decisions.
机译:在本文中,我们研究了对合作通信网络的物理层中的干扰攻击,其中干扰试图阻止源和目的地之间的数据通信。能量受限的继电器能够帮助源即使当干扰器试图阻止直接链路时也能够帮助源将数据转发到目的地。由于继电器的有限电量,在继电器中的非射频能量收割机有助于延长其操作。我们提出了一种基于部分可观察的马尔可夫决策过程(POMDP)的方案来找到源的最佳动作,使得我们可以最大限度地提高合作通信网络的可实现吞吐量。在该方案下,源动态选择适当的动作模式,以便在干扰攻击下获得最大吞吐量。仿真结果验证所提出的方案优于近视方案,其中仅考虑了当前吞吐量进行决策。

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