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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Dynamic spreading gain control in multiservice CDMA networks
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Dynamic spreading gain control in multiservice CDMA networks

机译:多业务CDMA网络中的动态扩频增益控制

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In this paper, we consider a direct-sequence code division multiple access (DS-CDMA) network consisting of a single radio access point and a collection of wireless terminals. The network offers two classes of service: class-1 (real-time) and class-2 (reliable). We are interested in studying the effect of dynamic spreading gain control (SGC) on the dynamics of multiple access interference (MAI), spectral efficiency, and the quality of service (QoS) experienced by each service class. We first consider a time-slotted system in which class-2 terminals operate in a random access fashion. We show that under optimal (throughput maximizing) dynamic SGC: (1) the optimal retransmission probability is equal to one, and (2) the optimal spreading gain increases linearly, or equivalently, the transmission rate decreases inverse linearly, as the MAI level increases. We then model the system as a continuous-time finite-source queueing system with processor sharing, and obtain an explicit (closed-form) expression for the stationary distribution of the number of active class-1 and class-2 terminals, that is, the MAI level. This distribution is used to derive expressions for various QoS measures and define a capacity or admissible region. The results obtained by simulation and analysis are in extremely close agreement. This work contributes to a better understanding of the relationships between QoS, multiple access interference, and allocation of radio resources in DS-CDMA networks.
机译:在本文中,我们考虑由单个无线电接入点和一组无线终端组成的直接序列码分多址(DS-CDMA)网络。该网络提供两种服务类别:1类(实时)和2类(可靠)。我们感兴趣的是研究动态扩展增益控制(SGC)对每种服务类别所经历的多址干扰(MAI),频谱效率和服务质量(QoS)动力学的影响。我们首先考虑一个时隙系统,其中2类终端以随机访问的方式工作。我们表明,在最佳(吞吐量最大化)动态SGC下:(1)最佳重传概率等于1,并且(2)最佳扩频增益线性增加,或等效地,随着MAI级别的增加,传输速率呈线性倒数减小。然后,我们将该系统建模为具有处理器共享的连续时间有限源排队系统,并为活动的第1类和第2类终端的数量的固定分布获得一个显式(闭式)表达式。 MAI级别。该分布用于导出各种QoS度量的表达式,并定义容量或允许区域。通过仿真和分析获得的结果非常接近。这项工作有助于更好地理解DS-CDMA网络中QoS,多址干扰和无线电资源分配之间的关系。

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