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Successful one way data communication probability of energy harvesting cognitive relay network with spatially random primary users

机译:具有空间随机主用户的能量收集认知中继网络成功的单向数据通信概率

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In this work, we study the performance of a decode and forward relay assisted secondary user pair co-existing with a primary network under wireless energy harvesting scenario. The locations of primary transmitters and receivers are modeled using two independent Poisson point processes (PPPs). In this network model, we consider that the secondary transmitter scavenges energy from primary transmitters and transmits its data towards secondary destination via a secondary relay. The direct link between the secondary transmitter and secondary destination is assumed to be unavailable. We find an analytical expression for the probability of successful one way data communication between the secondary transmitter and secondary destination through the secondary relay considering, (i) maximum interference power constraint imposed by primary receivers, (ii) interference from primary transmitters and (iii) additive white gaussian noise. Trade-off between the benefit of energy harvesting at secondary transmitter and the adverse interference effect (both at secondary relay and destination) due to primary transmission is shown through numerical analysis. The analytical expression is validated through computer simulation.
机译:在这项工作中,我们研究了在无线能量收集情况下与主网络共存的解码和前向中继辅助的辅助用户对的性能。使用两个独立的泊松点过程(PPP)对主要发射机和接收机的位置进行建模。在此网络模型中,我们认为辅助发射器从主要发射器中清除能量,并通过辅助继电器将其数据传输到辅助目的地。假定次级发射机和次级目的地之间的直接链路不可用。我们找到了一个解析表达式,表示通过考虑以下因素,次级发射机与次级目的地之间通过次级中继成功进行单向数据通信的概率:(i)主要接收机施加的最大干扰功率约束,(ii)来自主要发射机的干扰,以及(iii)加性高斯白噪声。通过数值分析显示了在二级发射机处收集能量的好处与由于初级传输引起的不利干扰影响(在二级中继和目的地处)之间的折衷。通过计算机仿真验证了解析表达式。

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