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Resource Allocation and Quality of Service Evaluation for Wireless Communication Systems using Fluid Models

机译:使用流体模型的无线通信系统的资源分配和服务质量评估

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Wireless systems offer a unique mixture of connectivity, flexibility, and freedom. It is therefore not surprising that wireless technology is being embraced with increasing vigor. For real-time applications, user satisfaction is closely linked to quantities such as queue length, packet loss probability, and delay. System performance is therefore related to, not only Shannon capacity, but also Quality of Service (QoS) requirements. This work studies the problem of resource allocation in the context of stringent QoS constraints. The joint impact of spectral bandwidth, power, and coderate is considered. Analytical expressions for the probability of buffer overflow, its associated exponential decay rate, and the effective capacity are obtained. Fundamental performance limits for Markov wireless channel models are identified. It is found that, even with an unlimited power and spectral bandwidth budget, only a finite arrival rate can be supported for a QoS constraint defined in terms of exponential decay rate.
机译:无线系统提供了连通性,灵活性和自由性的独特组合。因此,毫不奇怪的是,无线技术越来越活跃。对于实时应用,用户满意度与诸如队列长度,丢包率和延迟之类的数量紧密相关。因此,系统性能不仅与香农容量有关,而且与服务质量(QoS)要求有关。这项工作研究了在严格的QoS约束下的资源分配问题。考虑频谱带宽,功率和编码率的共同影响。获得了缓冲区溢出的概率,其相关的指数衰减率和有效容量的解析表达式。确定了马尔可夫无线信道模型的基本性能极限。已经发现,即使在功率和频谱带宽预算不受限制的情况下,对于以指数衰减率定义的QoS约束也只能支持有限的到达率。

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