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Optimal Time Allocation in Multi-Cell Wireless Powered Communication Networks

机译:多单元无线通信网络中的最佳时间分配

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摘要

This paper focuses on time allocation to maximize the minimum throughput and sum-throughput of all users in a multi-cell wireless powered communication network (WPCN). Since interference of multi-cell WPCN is difficult to be calculated, we consider a multi-cell WPCN with load coupling and long-term average interference at all hybrid access points. The problems of maximizing the minimum throughput and sum-throughput are non-convex. First, two efficient optimization approaches are proposed to transform them into convex ones. As the max-min fairness throughput scheme cares more about the worst-case user, the doubly near-far problem can be addressed by the minimum throughput maximation. We also demonstrate the effectiveness of the proposed approaches through numerical analysis.
机译:本文侧重于时刻分配,以最大限度地提高多单元无线供电通信网络(WPCN)中所有用户的最小吞吐量和总和。由于难以计算多电池WPCN的干扰,因此在所有混合接入点处考虑具有负载耦合和长期平均干扰的多单元WPCN。最大化最小吞吐量和总吞吐量的问题是非凸的。首先,提出了两个有效的优化方法来将它们转换为凸面。随着MAX-MIN的公平吞吐量方案更多地关心最坏情况的用户,可以通过最小吞吐量最大化来解决双近遥远的问题。我们还通过数值分析展示了提出方法的有效性。

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