Optimal time allocation in multi-cell wireless powered communication networks

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Abstract

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.

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APA

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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