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Low-Complexity Scheduling and Power Adaptation for Coordinated Cloud-Radio Access Networks

机译:协调的云无线电接入网的低复杂度调度和功率自适应

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摘要

In practical wireless systems, the successful implementation of resource allocation techniques strongly depends on the algorithmic complexity. Consider a cloud-radio access network (CRAN), where the central cloud is responsible for scheduling devices to the frames’ radio resources blocks (RRBs) of the single-antenna base-stations (BSs), adjusting the transmit power levels, and for synchronizing the transmit frames across the connected BSs. Previous studies show that the jointly coordinated scheduling and power control problem in the considered CRAN can be solved using an approach that scales exponentially with the number of BSs, devices, and RRBs, which makes the practical implementation infeasible for reasonably sized networks. This paper instead proposes a low-complexity solution to the problem, under the constraints that each device cannot be served by more than one BS but can be served by multiple RRBs within each BS frame, and under the practical assumption that the channel is constant during the duration of each frame. The paper utilizes graph-theoretical based techniques and shows that constructing a single power control graph is sufficient to obtain the optimal solution with a complexity that is independent of the number of RRBs. Simulation results reveal the optimality of the proposed solution for slow-varying channels, and show that the solution performs near-optimal for highly correlated channels.
机译:在实际的无线系统中,资源分配技术的成功实施很大程度上取决于算法的复杂性。考虑一个云无线电接入网(CRAN),其中中央云负责将设备调度到单天线基站(BS)的帧的无线电资源块(RRB),调整发射功率水平以及跨连接的BS同步发送帧。先前的研究表明,可以使用一种与BS,设备和RRB的数量成指数比例扩展的方法来解决所考虑的CRAN中的联合协调调度和功率控制问题,这对于合理规模的网络来说,实际的实现是不可行的。本文提出了一种低复杂度的解决方案,在每个设备不能由一个以上的BS服务但每个BS帧中可以由多个RRB服务的约束下,并且在实际假设信道在每帧的持续时间。本文利用基于图论的技术,表明构建单个功率控制图足以获得最优解决方案,其复杂度与RRB的数量无关。仿真结果表明,该算法对于慢速变化的信道具有最优性,并且对于高度相关的信道,该解决方案的性能接近最优。

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