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Flexible Functional Split in C-RAN with Renewable Energy Powered Remote Radio Units

机译:具有可再生能源供电的远程无线电单元的C-RAN中的灵活功能划分

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Functional split is a promising technique to reduce the fronthaul rate requirement in cloud radio access networks (C-RAN). Different functional split schemes have different processing costs and fronthaul transmission rates. To maximize the throughput while satisfying the average fronthaul rate constraint in C- RAN with renewable powered Remote Radio Units (RRUs), we first explore the offline problem of selecting the optimal functional split scheme, jointly with the corresponding user data transmission duration and transmission power. We find that in each interval between successive energy arrivals, at most two functional split schemes should be selected, and the two schemes have the same transmission power. We further analyze the scenario with one instance of energy arrival and two candidate functional split schemes, and derive the closed-form expressions of the optimal transmission power and transmission duration for each scheme. Based on the analysis of the special case, a heuristic online algorithm is then proposed, which has similar performance with the optimal offline policy, as validated by simulations.
机译:功能拆分是减少云无线电接入网(C-RAN)中前传速率要求的一种有前途的技术。不同的功能拆分方案具有不同的处理成本和前传传输速率。为了在使用可再生动力远程无线电单元(RRU)满足C-RAN中的平均前传速率约束的同时最大化吞吐量,我们首先探索离线的问题,即选择最佳功能拆分方案,以及相应的用户数据传输持续时间和传输功率。我们发现,在连续能量到达之间的每个间隔中,最多应选择两个功能分离方案,并且两个方案具有相同的发射功率。我们使用一个能量到达实例和两个候选功能拆分方案来进一步分析该方案,并得出每种方案的最佳传输功率和传输持续时间的闭式表达式。通过对特殊情况的分析,提出了一种启发式在线算法,通过仿真验证了该算法与最优离线策略具有相似的性能。

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