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Performance evaluation of radio access selection strategies in constrained multi-access/multi-service wireless networks

机译:受限多址/多业务无线网络中无线接入选择策略的性能评估

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The benefits of jointly managing the combined set of radio resources offered by heterogeneous networks consisting of several radio access technologies (RATs) have been profusely studied and assessed in recent years. This notion has been coined as common radio resource management (CRRM). Nevertheless, most of the existing work assumes scenarios where all RATs are accessible (provided the RAT is not at full capacity) to those users demanding a particular service. If this is so, the obtained benefits become rather optimistic given that we neglect the fact that the deployed RATs may have different coverage overlapping conditions among them and that users may not have terminals that support all RATs (i.e. multimode terminals). In this paper we extend a previously developed Markov framework in order to capture the effect of having different coverage overlapping conditions along with the capability of certain terminals to support all or a subset of available RATs. Probabilistic models are obtained for the characterization of a wide range of coverage and terminal heterogeneity scenarios. Extensive performance evaluation is carried out in order to identify those parameters influencing the suitability of a particular initial RAT selection strategy, that is, to choose the most suitable RAT at call/session initiation among those accessible. Results indicate that suitable RAT selection is tightly dependent on: the ratio between the different offered traffic loads (or service-mix), the contention (if any) for radio resources by different services in particular RATs, and the identification of access-constrained RATs due to lack of coverage and/or terminal capability. In this paper we provide specific guidelines and rules concerning resource allocation for the utmost utilization of radio resources, in terms of Erlang capacity, and enhanced perceived quality by the users, in terms of achievable throughput.
机译:近年来,对由几种无线电接入技术(RAT)组成的异构网络提供的联合管理无线电资源组合集合的好处进行了深入研究和评估。该概念被称为通用无线电资源管理(CRRM)。但是,大多数现有工作都假设所有需要特定服务的用户都可以访问所有RAT的情况(前提是RAT不能满负荷使用)。如果是这样,则由于我们忽略了以下事实,即所部署的RAT之间可能具有不同的覆盖重叠条件,并且用户可能没有支持所有RAT的终端(即多模终端),因此所获得的收益变得相当乐观。在本文中,我们扩展了先前开发的Markov框架,以捕获具有不同覆盖范围重叠条件的效果以及某些终端支持所有可用RAT或其中一部分的能力。获得了概率模型,用于表征广泛的覆盖范围和终端异质性场景。进行广泛的性能评估,以识别那些影响特定初始RAT选择策略适用性的参数,即在可访问的那些中,在呼叫/会话启动时选择最合适的RAT。结果表明,适当的RAT选择紧密取决于:不同提供的业务负载(或服务组合)之间的比率,特定RAT中不同服务对无线电资源的争用(如果有)以及访问受限的RAT的标识由于缺乏覆盖范围和/或终端功能。在本文中,我们根据Erlang容量提供了有关最大程度地利用无线电资源的资源分配的特定准则和规则,并就可达到的吞吐量而言,提高了用户的感知质量。

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