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Cloud Radio Access Networks With Coded Caching

机译:具有编码缓存的云无线电接入网

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A cloud radio access network (C-RAN) is considered as a candidate to meet the expectations of higher data rate demands in wireless networks. In C-RAN, low energy base stations (BSs) are deployed over a small geography and are allowed to connect to the cloud via finite capacity backhaul links where the information is processed. A conventional C-RAN, however, requires high capacity backhaul links, since the requested files need to be transferred first from the cloud to the BS before conveying them to the users. One approach to overcome the limitations of the backhaul links is to introduce local storage caches at the BSs, in which the popular files are stored locally in order to reduce the load of the backhaul links. Furthermore, we utilize coded caching with the goal to minimize the total network cost, i.e., the transmit power and the cost associated with the backhaul links. The initial formulation of the optimization problem for this model is non-convex. We first reformulate and then convexify the problem through some relaxation techniques. In comparison to the uncoded caching at the BSs, our results highlight the benefits associated with coded caching and show that it decreases the backhaul cost.
机译:云无线电接入网(C-RAN)被认为是满足无线网络对更高数据速率要求的期望的候选者。在C-RAN中,低能耗基站(BS)部署在较小的地理区域内,并允许它们通过处理信息的有限容量回程链路连接到云。然而,常规的C-RAN需要高容量的回程链路,因为在将文件传送给用户之前,需要首先将所请求的文件从云传送到BS。克服回程链路的限制的一种方法是在BS处引入本地存储高速缓存,其中将流行文件存储在本地,以减少回程链路的负载。此外,我们利用编码缓存的目的是使总网络成本(即,发射功率和与回程链路相关的成本)最小化。该模型的优化问题的最初公式是非凸的。我们首先通过一些松弛技术来重新表述然后凸显该问题。与BS处的未编码缓存相比,我们的结果突出了与编码缓存相关的优势,并表明它降低了回程成本。

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