A Comparison of Scheduling Algorithms for Wireless Access plus X-Haul

M. Andrews
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Abstract

We consider a centralized wireless architecture in which multiple cells are connected to a centralized unit via a shared x-haul. When computing a schedule for this architecture we must take into account capacity constraints on both the air interface access link and the x-haul. We evaluate three scheduling approaches that differ based on the degree of coupling between the air interface/x-haul and on whether queuing is allowed at the access link. It is known that we can optimize the geometric mean of throughput via a standard backpressure approach in which the air interface and x-haul scheduling is coupled by a queue at the access link. We demonstrate that with a joint scheduling approach we can obtain similar performance with zero queuing at the air interface (and hence zero delay).
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无线接入与X-Haul调度算法的比较
我们考虑一个集中式无线架构,其中多个单元通过共享x-haul连接到一个集中单元。在计算这种架构的时间表时,我们必须考虑空中接口访问链路和x-haul的容量限制。我们根据空中接口/x-haul之间的耦合程度以及在访问链路上是否允许排队来评估三种不同的调度方法。众所周知,我们可以通过标准背压方法优化吞吐量的几何平均值,其中空中接口和x-haul调度通过访问链路上的队列耦合。我们证明,使用联合调度方法,我们可以在空中接口获得零排队(因此零延迟)的类似性能。
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