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Traffic Models and Blocking Probabilities for Two-Fold and Three-Fold SDMA Communication Systems

机译:两折和三折SDMA通信系统的流量模型和阻塞概率

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摘要

Spectrum efficiency is a constant challenge in the design of wireless networks. Space-division-multiple-access (SDMA) is a promising approach to achieve higher spectral efficiency which reuses bandwidth via multiplexing signals based on their spatial signature. Several different studies have shown that SDMA can effectively improve system capacity in a mobile environment. In this paper, we present a new Markov chain traffic model for a duplicate-at-last (DL) approach [IEE Proceedings on Communication 146 (1999) 303] in two-fold and three-fold SDMA systems. Simplified blocking probability formulations for two-fold and three-fold SDMA are also derived. Simulations based on a common method of spatial separation check for channel allocation in SDMA are presented to evaluate the probability of successfully creating two-fold and three-fold SDMA channels. The simulation, as well as analytical, results indicate that the SDMA system can reduce the blocking probability of the calls and result in more traffic loading than a traditional cellular system. The results also show that our simplified approaches not only can reduce the computational complexity, but can also accurate approximate two-fold and three-fold SDMA performance.
机译:频谱效率是无线网络设计中的一个持续挑战。空分多址(SDMA)是一种有前途的方法,可以实现更高的频谱效率,该频谱效率基于其空间特征通过复用信号来复用带宽。多项不同的研究表明,SDMA可以有效地提高移动环境中的系统容量。在本文中,我们提出了一种新的马尔可夫链流量模型,用于在两层和三层SDMA系统中进行“最后复制(DL)”方法[IEE Proceedings on Communication 146(1999)303]。还得出了两倍和三倍SDMA的简化阻塞概率公式。提出了一种基于空间分离检查的通用方法进行SDMA信道分配的仿真,以评估成功创建两倍和三倍SDMA信道的可能性。仿真以及分析结果表明,与传统的蜂窝系统相比,SDMA系统可以降低呼叫的阻塞概率,并导致更多的业务负载。结果还表明,我们的简化方法不仅可以降低计算复杂度,而且可以精确地近似两倍和三倍的SDMA性能。

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