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Stability and Dynamic Control of Underlay Mobile Edge Networks

机译:底层移动边缘网络的稳定性和动态控制

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摘要

This paper studies the stability and dynamic control of underlay mobile edge networks. First, the stability region for a multiuser edge network is obtained under the assumption of full channel state information. This result provides a benchmark figure for comparing performance of the proposed algorithms. Second, a centralized joint flow control and scheduling algorithm is proposed to stabilize the queues of edge devices while respecting the average and instantaneous interference power constraints at the core access point. This algorithm is proven to converge to a utility point arbitrarily close to the maximum achievable utility within the stability region. Finally, more practical implementation issues such as distributed scheduling are examined by designing efficient scheduling algorithms taking advantage of communication diversity. The proposed distributed solutions utilize mini-slots for contention resolution and achieve a certain fraction of the utility optimal point. The performance lower bounds for distributed algorithms are determined analytically. The detailed simulation study is performed to pinpoint the cost of distributed control for mobile edge networks with respect to centralized control.
机译:本文研究了底层移动边缘网络的稳定性和动态控制。首先,在全信道状态信息的假设下获得多用户边缘网络的稳定区域。该结果提供了一个基准数字,用于比较所提出算法的性能。其次,提出了一种集中式联合流量控制和调度算法,以在考虑核心接入点的平均和瞬时干扰功率约束的同时,稳定边缘设备的队列。事实证明,该算法可以收敛到在稳定区域内任意接近最大可达到效用的效用点。最后,通过设计利用通信多样性的高效调度算法,研究了诸如分布式调度之类的更实际的实现问题。所提出的分布式解决方案利用小时隙来解决争用,并达到公用事业最优点的一定比例。分布式算法的性能下限是通过解析确定的。进行了详细的仿真研究,以针对集中控制确定移动边缘网络的分布式控制成本。

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