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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >QoS Provisioning with New Effective Bandwidth/Buffer Calculation Scheme in Wireless IP Networks
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QoS Provisioning with New Effective Bandwidth/Buffer Calculation Scheme in Wireless IP Networks

机译:无线IP网络中采用新的有效带宽/缓冲区计算方案的QoS设置

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摘要

The huge commercial success of mobile telephony, the phenomenal growth of Internet users, the popularity of IP-based multimedia applications are the major driving forces behind third-generation (3G), ongoing Byond 3G (B3G), and forth-genertion (4G) evolution, 3G brought wired applications, both data and multimedia, into wireless environments. It operates on IP-based infrastructures to provide wider service access capability. To support and satisfy QoS (Quality of Service) of diverse IP-based multimedia applications, traffic management, such as Connection Admission Control (CAC) and resource allocation, becomes essential. CAC and resource allocation are computationally complex when combined with QoS guarantee for traffic with different characteristics. However, CAC and resource allocation are real-time traffic control procedures. Hence, processing load should be minimized to reduce delay. At the same time, network resources should be utilized efficiently to accommodate more users. However, reducing processing load and obtaining high resource utilization efficiency has been considered to be contradictory matter. In addition, CAC and resource allocation schemes which consider multiple QoS criteria - loss and delay -simultaneously have not been adequately studied. Simultaneous QoS consideration is important to satisfy stringent and diverse QoS requirements of multimedia traffic. In this paper, we propose a nobel effective bandwidth/buffer calculation method based on a virtual channel/buffer analysis scheme. We show that our method can achieve high resource utilization efficiency with reduced processing load. Moreover, we show that our scheme allows for simultaneous consideration of multiple QoS criteria, loss and delay.
机译:移动电话的巨大商业成功,互联网用户的惊人增长,基于IP的多媒体应用的普及是第三代(3G),正在进行的Byond 3G(B3G)和第四代(4G)的主要推动力。随着3G的发展,将数据和多媒体的有线应用程序带入了无线环境。它在基于IP的基础架构上运行,以提供更广泛的服务访问功能。为了支持和满足基于IP的各种多媒体应用程序的QoS(服务质量),流量管理(例如连接许可控制(CAC)和资源分配)变得至关重要。与具有不同特征的流量的QoS保证结合使用时,CAC和资源分配在计算上很复杂。但是,CAC和资源分配是实时流量控制过程。因此,应最小化处理负载以减少延迟。同时,应有效利用网络资源以容纳更多用户。然而,减少处理负荷并获得高资源利用效率被认为是矛盾的事情。此外,还没有充分研究同时考虑多个QoS标准(丢失和延迟)的CAC和资源分配方案。同时考虑QoS对于满足多媒体流量的严格和多样化QoS要求很重要。在本文中,我们提出了一种基于虚拟通道/缓冲区分析方案的诺贝尔有效带宽/缓冲区计算方法。我们证明了我们的方法可以在减少处理负荷的情况下实现高资源利用率。此外,我们证明了我们的方案可以同时考虑多个QoS标准,丢失和延迟。

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