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Enhanced scheduling schemes with energy conservation for dynamic point selection in cloud radio access networks

机译:具有节能功能的增强型调度方案,用于云无线电接入网中的动态点选择

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In 5G mobile communications, Cloud-RAN (C-RAN) (Camps-Mur et al. in IEEE Commun Mag 57:99-105, 2019) is proposed to provide broadband services. It separates computation entities, i.e., baseband units (BBUs), from base stations and puts all BBUs in a centralized cloud. Existing researches have investigated how to enhance user equipments (UEs) to receive data from multiple collaborative cells by leveraging the dynamic point selection(DPS) technology. Collaborative transmission may cause higher energy consumption for UEs. Although 3GPP has defined the discontinuous reception (DRX) mechanism by regulating UEs to turn off their radio interfaces in a periodical manner, how to well coordinate DRX with DPS under the C-RAN architecture is still left as an open issue. This paper is the first one addressing this resource optimization problem in C-RAN with DPS, which asks how to optimize DRX parameters of UEs by considering their quality-of-service (QoS). We prove this problem to be NP-complete, and then propose two effective and efficient DPS solutions, called serving-ratio(SR) scheme and cost-aware (CA) scheme. SR serves UEs based on a special 'serving ratio' to ensure UEs receiving continuous subframes, especially for those in cell intersections. On the other hand, CA exploits the strategies of minimal scheduling costs to balance energy and throughput efficiency in a perspective way. Extensive simulation results validate that our schemes can successfully achieve higher system throughput, provide better resource utilization, and serve more UEs while guaranteeing their QoS and saving considerable energy as compared to existing schemes.
机译:在5G移动通信中,提议使用Cloud-RAN(C-RAN)(Camps-Mur等人在IEEE Commun Mag 57:99-105,2019)中提供宽带服务。它将计算实体(即基带单元(BBU))与基站分开,并将所有BBU置于集中式云中。现有研究已经研究了如何利用动态点选择(DPS)技术来增强用户设备(UE)以从多个协作小区接收数据。协作传输可能会导致UE消耗更多能量。尽管3GPP通过调节UE定期关闭其无线电接口来定义不连续接收(DRX)机制,但是在C-RAN架构下如何良好协调DRX与DPS仍然是一个悬而未决的问题。本文是第一个使用DPS解决C-RAN中资源优化问题的方法,该问题提出如何通过考虑UE的服务质量(QoS)来优化其DRX参数。我们证明此问题是NP完全的,然后提出了两个有效且高效的DPS解决方案,称为服务比率(SR)方案和成本感知(CA)方案。 SR基于特殊的“服务比率”为UE服务,以确保UE接收连续的子帧,尤其是在小区交叉口中。另一方面,CA利用最小调度成本的策略以透视方式平衡能量和吞吐量效率。大量的仿真结果证明,与现有方案相比,我们的方案可以成功实现更高的系统吞吐量,提供更好的资源利用率并为更多UE服务,同时保证其QoS并节省大量能源。

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