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A full-duplex SWIPT relaying protocol based on discrete energy state

机译:基于离散能源状态的全双工SWIPT中继协议

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In this paper, a new transmission protocol is proposed to improve the performance of the power-splitting energy harvesting relaying system. Since the decode-and-forward relay operates in the full-duplex mode, the relay energy state exhibits a complex charge-discharge behavior. Based on the discretization of the relay battery energy, the transfer probability of the relay energy state is analyzed by using the Markov chain, and the initial distribution of the relay energy state is presented. We further derive the closed-form expression of the outage probability. The numerical results verify the accuracy of the derived closed-form expression and reveal the influence of the power allocation factor and the relay transmit power on the system performance.
机译:本文提出了一种新的传输协议来提高功率分裂能量收集中继系统的性能。由于解码和前进继电器以全双工模式操作,因此中继能量状态表现出复杂的充电 - 放电行为。基于继电器电池能量的离散化,通过使用马尔可夫链来分析继电器能量状态的传递概率,并提出了继电器能量状态的初始分布。我们进一步推导出中断概率的闭合表达。数值结果验证了衍生的闭合形式表达的准确性,并揭示了电力分配因子的影响和继电器对系统性能的影响。

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