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Optimal Throughput for Two-Way Relaying: Energy Harvesting and Energy Co-Operation

机译:双向中继的最佳吞吐量:能量收集和能量合作

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For a two-way relay network (TWRN) with three nodes, we discuss the performance optimization of digital network coding (DNC) and physical network coding (PNC) schemes under the energy harvesting (EH) constraints and peak power constraints. We also consider the energy transfer between nodes, which is referred to as energy co-operation. To find the maximal achievable performance, we first consider the case of offline scheduling, formulate the corresponding optimization problems, find the optimal solutions, as well as present some useful theoretical properties on optimality. Then we move to the online scheduling, and propose both dynamic programming and some intuitive policies to approach the performance of its offline counterpart. Numerical results show that PNC outperforms DNC due to the higher spectrum efficiency and the intrinsic coding gains, under the same conditions. Furthermore, it is observed that if the relay harvests much more energy and shares it with the two source nodes, DNC with energy co-operation scheme has the potential to perform comparable to or even better than PNC without energy co-operation scheme, which validates the importance of energy co-operation in contemporary communication systems.
机译:对于具有三个节点的双向中继网络(TWRN),我们讨论了在能量收集(EH)约束和峰值功率约束下数字网络编码(DNC)和物理网络编码(PNC)方案的性能优化。我们还考虑节点之间的能量转移,这被称为能量合作。为了找到最大可实现的性能,我们首先考虑离线调度的情况,制定相应的优化问题,找到最优解,并给出一些关于最优性的有用理论性质。然后,我们转向在线调度,并提出动态编程和一些直观的策略来接近其离线副本的性能。数值结果表明,在相同条件下,由于具有更高的频谱效率和固有编码增益,PNC优于DNC。此外,可以观察到,如果中继收获更多的能量并将其与两个源节点共享,则具有能量合作方案的DNC的性能有可能与不具有能量合作方案的PNC相当甚至更好。能源合作在当代通信系统中的重要性。

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