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Throughput and energy consumption trade-off in traffic splitting in heterogeneous networks with dual connectivity

机译:具有双连接的异构网络中流量分流中的吞吐量和能耗折衷

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This paper investigates the trade-off between throughput and energy consumption in heterogeneous networks with dual connectivity and backhaul delay. The problem of traffic splitting between the main eNB and secondary eNBs is formulated as a multi-objective optimization problem. Based on some observations, assumptions, and subsequent simplifications, two algorithms are devised. One targets throughput optimization (TO) by transmission delay minimization. The other one does energy savings (ES) by not transmitting on the main eNB depending on the delay allowance defined in the QoS criterion of the transmitted data. The main eNB is in control of the data transfer to the secondary eNB. Simulations show that the TO algorithm performs slightly better than an earlier published algorithm in which the secondary eNBs are in control of the data transfer from the main eNB. The ES algorithm does save energy at the expense of a larger transmission delay.
机译:本文研究了具有双重连接和回程延迟的异构网络中吞吐量和能耗之间的权衡。主eNB和辅eNB之间的业务分配问题被表述为多目标优化问题。基于一些观察,假设和随后的简化,设计了两种算法。一种目标是通过最小化传输延迟来优化吞吐量。另一个通过不根据在传输数据的QoS标准中定义的延迟允许在主eNB上进行传输来实现节能(ES)。主eNB控制到辅助eNB的数据传输。仿真显示,TO算法的性能比早期发布的算法要好一些,在后者中,辅助eNB控制着来自主eNB的数据传输。 ES算法确实节省了能量,但代价是传输延迟更大。

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