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A real time packet classification and allocation approach for C-RAN implementation in 5G network

机译:5G网络中C-RAN实现的实时数据包分类和分配方法

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Cloud-RAN (C-RAN) is a centralized architecture which is able to solve most of the challenges of mobile operators and to fulfill the needs of ever-growing end-users in the fifth generation (5G) cellular network. The main idea behind C-RAN is to split the functionalities of the traditional base stations (BS) into a radio unit known as Remote Radio Head (RRH) and a Centralized and virtualized Baseband Unit (BBUs). The Virtualization of BBU provides more scalability and flexibility to the BBU unit, along with that this also gives a number of benefits in terms of cost and capacity. There are many research articles published earlier which described the C-RAN network architecture briefly, but no one describes the actual packet flow and processing in the C-RAN network. In this paper, we try to solve this issue in two consecutive steps. The first step is to classify the incoming packets, and then allocate that packet based on the destination address to the proper virtual baseband unit (VB). Then the second step is to schedule the packets based on the priority value and also provide the load balancing mechanism in VB if required.
机译:Cloud-Ran(C-RAN)是一种集中式架构,能够解决移动运营商的大部分挑战,并满足第五代(5G)蜂窝网络中不断增长的最终用户的需求。 C-RAN背后的主要思想是将传统基站(BS)的功能分成称为远程无线头(RRH)的无线电单元和集中式和虚拟化基带单元(BBUS)。 BBU的虚拟化为BBU单元提供了更多的可扩展性和灵活性,同时,这也在成本和容量方面提供了许多好处。早些时候出版了许多研究文章,这简要地描述了C-RAN网络架构,但没有人描述C-RAN网络中的实际数据包流程和处理。在本文中,我们尝试在两个连续步骤中解决这个问题。第一步是对传入分组进行分类,然后将该分组基于目的地地址分配给适当的虚拟基带单元(VB)。然后,第二步骤是根据优先级值调度分组,并且如果需要,还提供VB中的负载平衡机制。

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