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Distributed Processing Mechanism utilizing PCI Backplane for 3G Node-B

机译:利用PCI背板的3G Node-B分布式处理机制

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The typical Base Transceiver Station (BTS) or Node-B architecture can be partitioned onto Radio Frequency (RF) module, Baseband module, Transport module and Control module. The Control, Transport and Baseband modules run their own standard protocols defined in 3GPP. Our Node-B has mapped all these modules onto its own data acquisition board utilizing the PCI backplane. This paper describes the communication mechanism between the different data acquisition boards based on the compact PCI (cPCI) platforms. The features available in the PCI bridges in different data acquisition boards have been carefully studied before designing the communication mechanism. Furthermore, the mechanism is developed based on the understanding of the traffic characteristics found in a typical 3G Node-B. We present the experimental results of our communication mechanism. The numerical calculation results have proved that our system is capable for supporting the data throughput up to 14 UL/DL 384kbps user channels.
机译:典型的基站收发器(BTS)或Node-B体系结构可以划分为射频(RF)模块,基带模块,传输模块和控制模块。控制,传输和基带模块运行3GPP中定义的自己的标准协议。我们的Node-B使用PCI背板将所有这些模块映射到其自己的数据采集板上。本文介绍了基于紧凑PCI(cPCI)平台的不同数据采集板之间的通信机制。在设计通信机制之前,已经仔细研究了不同数据采集板中PCI桥中的可用功能。此外,该机制是基于对典型3G Node-B中流量特征的理解而开发的。我们介绍了我们的沟通机制的实验结果。数值计算结果证明,我们的系统能够支持高达14个UL / DL 384kbps用户通道的数据吞吐量。

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