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Ultra Wide Band WLANs: A self-configuring resource control scheme for accessing UWB hot-spots with QoS guarantees

机译:超宽带WLAN:一种具有QoS保证的用于访问UWB热点的自配置资源控制方案

摘要

In the framework of wireless access networks the Hot-Spot concept is attracting several operators. In a Hot- Spot near stationary terminals may reach one or more Radio Access Points (RAP) offering wireless access to the fixed network. Mobile terminals should be able to register to the network, associate to a RAP and activate a wireless communication supporting given bit rates and Quality of Service (QoS) features. Several mobile users, requiring different services, enter and exit the Hot- Spot. In this scenario network operators should have the opportunity to configure quickly radio resources to serve the mobile terminals and to handle efficiently the network resources in order to maximize the income. Among the different technologies emerging in this field, we investigate the feasibility of a wireless access based on Ultra Wide Band (UWB) radio, combined with a flexible admission control scheme based on transmission power selection. We employ UWB in unlicensed mode, i. e., we operate in accordance to the limits imposed by the regulatory bodies (e. g., US Federal Communications Commission). The flexibility of the admission control depends mainly on the capability of a mobile terminal of "measuring" the environment it is entering and thus supporting the RAP in the selection of the appropriate transmission parameters. The proposed approach provides an admission policy based on the Maximum Extra Interference (MEI) and selects the power level through a simple interaction among the involved mobile terminals. The information for basing the decision on is collected through measurements and signaling. In order to increase the system efficiency, transmission parameters are selected in accordance to a "balancing" criterion (thus Balanced- MEI, B-MEI). The B-MEI approach keeps quite simple the admission of new mobile terminals in a RAP's area but contemporarily satisfies the trade-off between fair resource assignment and system efficiency. This is a key trade- off in wireless access systems where interference effects determine the upper limit of the number of users that can be admitted in the network.
机译:在无线接入网络的框架中,热点概念吸引了多家运营商。在热点附近,固定终端可能会到达一个或多个提供无线访问固定网络的无线接入点(RAP)。移动终端应该能够注册到网络,关联到RAP并激活支持给定比特率和服务质量(QoS)功能的无线通信。需要不同服务的几个移动用户进入和退出热点。在这种情况下,网络运营商应有机会快速配置无线电资源以服务于移动终端并有效处理网络资源,以使收入最大化。在该领域出现的不同技术中,我们研究了基于超宽带(UWB)无线电与基于传输功率选择的灵活准入控制方案相结合的无线接入的可行性。我们在无执照模式下使用UWB,即例如,我们根据监管机构(例如,美国联邦通信委员会)施加的限制进行操作。准入控制的灵活性主要取决于移动终端“测量”其进入的环境的能力,从而支持RAP选择适当的传输参数。所提出的方法提供基于最大额外干扰(MEI)的准入策略,并通过所涉及的移动终端之间的简单交互来选择功率电平。通过测量和信令收集用于决策的信息。为了提高系统效率,根据“平衡”标准选择传输参数(因此,选择了Balanced-MEI,B-MEI)。 B-MEI方法使RAP区域中的新移动终端的接纳变得非常简单,但是同时满足了公平资源分配和系统效率之间的权衡。这是在无线接入系统中的一个重要的折衷方案,在无线接入系统中,干扰效应决定了可以被网络接纳的用户数量的上限。

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