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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Radio Access Congestion in Multiaccess/Multiservice Wireless Networks
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Radio Access Congestion in Multiaccess/Multiservice Wireless Networks

机译:多址/多服务无线网络中的无线电接入拥塞

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This work addresses the problem of radio access congestion control and resource allocation in scenarios where multiple available radio access technologies (RATs) support a wide range of services over a given coverage area. A key issue in these networks is selecting the most appropriate RAT at a call/session establishment according to some specified user/operator criteria. In this sense, a wide range of high-level policies can be defined, providing the most favorable resource allocation. Regardless of having efficient RAT selection policies, which may ensure some initial quality of service (QoS) requirements, intrinsic network dynamics (e.g., mobility, user activity, and interference rise) can cause potential QoS failures, leading to a degraded network performance and, hence, radio access congestion. This work is devoted to the study of the impact of radio access congestion on a number of RAT-selection policies. Consequently, a congestion probability (CP) model is developed to capture the statistical behavior of radio access congestion events. In addition, a general Markovian framework is adopted to evaluate the allocation of multiple services into multiple RATs by means of high-level policy definitions. Specific RAT-selection policies are defined according to several criteria, and their performances are evaluated in a time-division multiple-access (TDMA)/wideband code-division multiple-access (WCDMA) multi-RAT scenario supporting voice and data services. Moreover, the use of CP information as a possible allocation principle for RAT selection is also evaluated, which, in the assumed scenario, results in the most favorable allocation policy.
机译:这项工作解决了在多个可用的无线电接入技术(RAT)支持给定覆盖范围内的广泛服务的情况下的无线电接入拥塞控制和资源分配问题。这些网络中的关键问题是根据某些指定的用户/运营商标准在呼叫/会话建立时选择最合适的RAT。从这个意义上讲,可以定义各种各样的高级策略,从而提供最有利的资源分配。无论具有有效的RAT选择策略(可以确保某些初始服务质量(QoS)要求),固有的网络动态性(例如,移动性,用户活动和干扰上升)都可能导致潜在的QoS故障,从而导致网络性能下降,并且因此,无线电接入拥塞。这项工作致力于研究无线电接入拥塞对许多RAT选择策略的影响。因此,开发了一种拥塞概率(CP)模型来捕获无线电接入拥塞事件的统计行为。另外,采用通用的马尔可夫框架来通过高级策略定义评估将多个服务分配给多个RAT。根据几种标准定义特定的RAT选择策略,并在支持语音和数据服务的时分多址(TDMA)/宽带码分多址(WCDMA)多RAT方案中评估其性能。此外,还评估了使用CP信息作为RAT选择的可能分配原则,在假定的情况下,这将导致最有利的分配策略。

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