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Performance modeling and evaluation of data/voice services in wireless networks

机译:无线网络中数据/语音服务的性能建模和评估

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Application-level performance is a key to the adoption and success of the CDMA 2000. To predict this performance in advance, a detailed end-to-end simulation model of a CDMA network is built to include application traffic characteristics, network architecture, network element details using the proposed simulation methodology. We assess the user-perceived application performance when a RAN and a CN adopt different transport architectures such as ATM and IP. To evaluate the user-perceived quality of voice service, we compare the end-to-end packet delay for different vocoder schemes such as G.711, G.726 (PCM), G.726 (ADPCM), and vocoder bypass scheme. By the simulation results, the vocoder bypass scenario shows 30% performance improvement over the others. We also compare the quality of voice service with and without DPS scheduling scheme. We know that DPS scheme keep the voice delay bound even if the service traffic is high. For data packet performance, HTTP v. 1.1 shows better performance than that of HTTP v. 1.0 due to the pipelining and TCP persistent connection. We may conclude that IP transport technology is better solution for higher PER environment since the packet overhead of IP is smaller than that of ATM for web browsing data traffic, while it shows opposite effect to the small size voice packet in RAN architecture. We show that the 3G-1X EV-DO system gives much better packet delay performance than 3G-1X RTT. The main conclusion is that end-to-end application-level performance is affected by various elements and layers of the network and thus it must be considered in all phases of the development process.
机译:应用程序级性能是CDMA 2000的采用和成功的关键。为了预先预测这种性能,需要构建一个详细的CDMA网络端到端仿真模型,其中包括应用程序流量特性,网络体系结构,网络元素使用建议的仿真方法进行详细说明。当RAN和CN采用不同的传输架构(例如ATM和IP)时,我们评估用户感知的应用程序性能。为了评估用户感知的语音服务质量,我们比较了不同声码器方案(例如G.711,G.726(PCM),G.726(ADPCM)和声码器旁路方案)的端到端分组延迟。通过仿真结果,声码器旁路方案显示出比其他方案高30%的性能。我们还将比较采用和不采用DPS调度方案的语音服务质量。我们知道,即使业务流量很高,DPS方案也会使语音延迟受到限制。对于数据包性能,由于具有流水线和TCP持久连接,HTTP 1.1版显示出比HTTP 1.0版更好的性能。我们可以得出的结论是,IP传输技术对于较高的PER环境是更好的解决方案,因为IP的数据包开销比ATM的Web浏览数据流量小,而它却与RAN体系结构中的小尺寸语音包相反。我们证明3G-1X EV-DO系统比3G-1X RTT具有更好的分组延迟性能。主要结论是,端到端应用程序级性能受网络各个元素和层的影响,因此必须在开发过程的所有阶段都将其考虑在内。

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