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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Throughput Maximization for a Buffer-Aided Successive Relaying Network Employing Energy Harvesting
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Throughput Maximization for a Buffer-Aided Successive Relaying Network Employing Energy Harvesting

机译:利用能量收集的缓冲辅助连续中继网络的吞吐量最大化

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Energy harvesting (EH)-assisted nodes are capable of significantly prolonging the lifetime of future wireless networks, provided that they rely on appropriate transmission policies, which accommodate the associated stochastic energy arrival. In this paper, a successive-relaying-based network using rechargeable source and relay nodes having limited buffers for both their energy and data storage is considered. The maximization of the network throughput with noncausal knowledge of energy arrivals by the deadline is formulated as a nonconvex optimization problem, and it is solved using the interior-point optimization (IPOPT) method. The performance of the low-complexity suboptimal scheme was found to reach its maximum when the two phases of the successive relaying protocol have equal duration. The optimal and suboptimal schemes are capable of achieving up to 92% and 88% of the throughput performance of the benchmark scheme. The suboptimal scheme's throughput performance is consistently about 90% of that of the optimal scheme. For asymmetric data (or energy) buffer sizes, it was found that the throughput performance depends on the total (i.e., collective) data (or energy) buffer capacity available in the network and not just on the smallest data buffer.
机译:能量收集(EH)辅助节点能够显着延长未来无线网络的寿命,前提是它们依赖于适应相关随机能量到达的适当传输策略。在本文中,考虑了使用可充电源和中继节点的基于连续中继的网络,这些节点的能量和数据存储都具有有限的缓冲区。在截止日期之前将能量到达的非因果关系知识最大化的网络吞吐量公式化为非凸优化问题,并使用内点优化(IPOPT)方法解决。当连续中继协议的两个阶段具有相等的持续时间时,发现低复杂度次优方案的性能达到了最大值。最佳方案和次优方案能够实现基准方案吞吐性能的高达92%和88%。次优方案的吞吐量性能始终约为最优方案的90%。对于非对称数据(或能量)缓冲器大小,发现吞吐量性能取决于网络中可用的总(即,集体)数据(或能量)缓冲器容量,而不仅取决于最小的数据缓冲器。

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