基于软件定义无线电的GSM网络可靠性分析

Asif Ali Zamzami, Ega Putra Devara, Joni Pramana, Amang Sudarsono, Ahmad Zainudin
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引用次数: 7

摘要

近年来,通信领域的发展迅速。电信发展的一个重要问题是扩大公共移动网络基础设施,即基站。但是,基站的发展需要大量的资金。目前,采用软件定义无线电(SDR)和通用软件无线电外设(USRP)是提高基站基础设施建设效率和成本的一种解决方案。USRP作为基站,SDR作为系统开发的软件补充。本文提出了一种GSM 2.5G网络系统。我们利用软交换、GNU无线电和OpenBTS等软件来支持移动交换中心(MSC)、基站控制器(BSC)和基站收发站(BTS)功能。介绍了两个或多个基站之间的切换机制,以及系统中的认证机制。我们还测量了通用分组无线业务(GPRS)提供的系统的吞吐量。系统容量平均提供4 Kbps的下载和3 Kbps的上传。影响吞吐量的主要因素是用于下载和上传的多时隙信道分配因素。当MS从USRP 1移动到USRP 2时,MS接收到的USRP 1的信号电平比USRP 2的信号电平弱。因此,MS选择信号较强的USRP作为其基站。另外,为了防止黑客攻击和对系统提供用户认证,用户和MSC必须具有相同的Ki密钥。通过使用拥有GSM网络的Ki的密钥,只有拥有与Ki相同密钥的用户才能在系统上注册。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability analysis of GSM network using Software Defined Radio-based system
Recently, the development of telecommunication fields is growing rapidly. One of the important issues in the development of telecommunications is the expansion of public mobile network infrastructures, i.e., base stations. However, the development of base stations requires substantial funds. Currently, there is a solution in building base station infrastructure with more efficient and cheaper by using Software Defined Radio (SDR) and Universal Software Radio Peripheral (USRP). USRP is working as a base station and SDR as a software complement in the development of the system. In this paper, we propose a GSM 2.5G network system. We utilize several software such as soft-switch, GNU radio and OpenBTS to support Mobile Switching Center (MSC), Base Station Controller (BSC), and Base Transceiver Station (BTS) functionalities. We demonstrate handover mechanism between two and more base stations, and authentication mechanism in the system. We also measure the throughput of the system provided by General Packet Radio Service (GPRS). The system capacity provides in average of 4 Kbps for download and 3 Kbps for upload. The main factor that affects the throughput is the factor of multi slot channel allocations towards download and upload. We also demonstrate handover mechanism when MS moves away from USRP 1 towards USRP 2, signal level of USRP 1 received by MS is weaker than signal level of USRP 2. Thus, MS selects USRP which has a strong signal as its base station. In addition, to prevent hacking and provide user authentication on the system, user and MSC must have a same key of Ki. By using a secret key of Ki which owned GSM network, only users that have the same key of Ki can be registered on the system.
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