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.
CITATION STYLE
He, C., Liang, J., Qian, G., Guo, C., & Feng, D. (2019). Optimal time allocation in multi-cell wireless powered communication networks. IEEE Access, 7, 26519–26526. https://doi.org/10.1109/ACCESS.2018.2881428
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