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On Secure Communication Using RF Energy Harvesting Two-Way Untrusted Relay

机译:使用射频能量收集双向不可信中继的安全通信

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We focus on a scenario where two wireless source nodes wish to exchange confidential information via an RF energy harvesting untrusted two-way relay. Despite its cooperation in forwarding the information, the relay is considered untrusted out of the concern that it might attempt to decode the confidential information that is being relayed. To discourage the eavesdropping intention of the relay, we use a friendly jammer. Under the total power constraint, to maximize the sum-secrecy rate, we allocate the power among the sources and the jammer optimally and calculate the optimal power splitting ratio to balance between the energy harvesting and the information processing at the relay. We further examine the effect of imperfect channel state information at both sources on the sum- secrecy rate. Numerical results highlight the role of the jammer in achieving the secure communication under channel estimation errors. We have shown that, as the channel estimation error on any of the channels increases, the power allocated to the jammer decreases to abate the interference caused to the confidential information reception due to the imperfect cancellation of jammer's signal.
机译:我们关注的场景是两个无线源节点希望通过RF能量收集不受信任的双向中继来交换机密信息。尽管中继在转发信息方面进行了合作,但出于中继可能会尝试解码正在中继的机密信息的考虑,仍将中继视为不信任。为了阻止中继的窃听意图,我们使用了友好的干扰器。在总功率约束下,为了最大程度地提高总保密率,我们在电源和干扰源之间进行了最优分配,并计算了最佳功率分配比,以在继电器的能量收集和信息处理之间取得平衡。我们进一步检查了两个来源上不完善的信道状态信息对保密率的影响。数值结果突显了干扰器在信道估计误差下实现安全通信的作用。我们已经表明,随着任何一个信道上的信道估计误差的增加,分配给干扰器的功率会减少,以消除由于干扰信号的不完全消除而导致对机密信息接收造成的干扰。

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