Performance Analysis of UMTS and WLAN Interworking with Multi-service Load

K. Saravanan, G. Sivaradje
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引用次数: 1

Abstract

Future generation wireless networks are expected to support multiple wireless access technologies, each with different access bandwidth and coverage range. Two of these technologies include Universal Mobile Telecommunications System (UMTS) and IEEE 802.11 Wireless Local Area Networks (WLANs). The internetworking architectures that enable interoperability between 3G (UMTS) and WLAN networks was done by connecting them at the Gateway GPRS Supporting Node (GGSN) node and evaluated via simulations using OPNET. In the GGSN integration, whenever a MN in a WLAN network wants to communicate with User Equipment (UE) in the UMTS network, it does so through the GGSN node. The UE in the UMTS network first activates the Packet Data Protocol (PDP) context that it wants to use. This operation makes the UE known to its GGSN and to external data networks, in this case, the WLAN network. Various simulations are done to measure the various application delays involved when users directly communicate across the UMTS-WLAN networks without actually accessing any external data networks. The performance evaluations on the various interworking architectures are done and the delays and other parameters involved when user data is exchanged across the UMTS and WLAN will be compared. The application types used included: FTP, HTTP and VOIP. The parameters measured include load, throughput end-to-end packet delay, file download response time, HTTP page response time.
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多业务负载下UMTS与WLAN互通的性能分析
下一代无线网络预计将支持多种无线接入技术,每种技术都具有不同的接入带宽和覆盖范围。其中两项技术包括通用移动通信系统(UMTS)和IEEE 802.11无线局域网(wlan)。实现3G (UMTS)和WLAN网络互操作性的互联网络架构是通过在网关GPRS支持节点(GGSN)节点上连接它们来完成的,并通过OPNET进行模拟评估。在GGSN集成中,当WLAN网络中的MN需要与UMTS网络中的UE通信时,需要通过GGSN节点进行通信。UMTS网络中的终端首先激活它想要使用的PDP (Packet Data Protocol)上下文。该操作将使终端的GGSN和外部数据网络(即WLAN网络)都知道该终端。当用户直接通过UMTS-WLAN网络进行通信而不实际访问任何外部数据网络时,进行了各种模拟以测量所涉及的各种应用程序延迟。完成了对各种互连体系结构的性能评估,并比较了在UMTS和WLAN之间交换用户数据时所涉及的延迟和其他参数。使用的应用类型包括:FTP、HTTP和VOIP。测量的参数包括负载、吞吐量端到端数据包延迟、文件下载响应时间、HTTP页面响应时间。
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