首页> 外文会议>Conference on Wireless and Mobile Communications Nov 12-15, 2001, Beijing, China >Overcoming The Limits Imposed By Cellular Boundaries With iCAR
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Overcoming The Limits Imposed By Cellular Boundaries With iCAR

机译:使用iCAR克服细胞边界带来的限制

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iCAR is a new wireless system architecture based on the integration of cellular and modern ad-hoc relaying technologies. It addresses the congestion problem due to limited channel access in a cellular system and provides interoperability for heterogeneous networks. The iCAR system can efficiently balance traffic loads and share channel resource between cells by using ad-hoc relaying stations (ARS) to relay traffic from one cell to another dynamically. The concept of iCAR can be generalized to provide seemless integration of broadband wireless access systems and in particular, realize the vision for having anytime and anywhere ubiquitous wireless access. Analyzing the performance of iCAR is nontrivial as the classic Erlang-B formula no longer applies when relaying is used. In this paper, we build multi-dimensional Markov chains to analyze the performance of the iCAR system in terms of the call blocking probability. In particular, we develop an approximate model as well as an accurate model. While it can be time-consuming and tedious to obtain the solutions of the accurate model, the approximate model yields analytical results that are close to the simulation results we obtained previously. Our results show that with a limited number of ARS's, the call blocking probability in a congested cell as well as the overall system can be reduced.
机译:iCAR是基于蜂窝和现代自组织中继技术集成的新型无线系统架构。它解决了由于蜂窝系统中有限的信道访问而导致的拥塞问题,并为异构网络提供了互操作性。通过使用临时中继站(ARS)将业务从一个小区动态中继到另一个小区,iCAR系统可以有效地平衡流量负载并在小区之间共享信道资源。 iCAR的概念可以推广为宽带无线接入系统的无缝集成,尤其是可以实现随时随地普遍存在的无线接入的愿景。分析iCAR的性能并非易事,因为使用中继时经典的Erlang-B公式不再适用。在本文中,我们建立了多维马尔可夫链,以根据呼叫阻塞概率来分析iCAR系统的性能。特别是,我们开发了一个近似模型以及一个精确模型。虽然获得准确模型的解决方案可能既耗时又乏味,但近似模型所产生的分析结果与我们之前获得的模拟结果相近。我们的结果表明,使用数量有限的ARS,可以降低拥塞小区以及整个系统中的呼叫阻塞概率。

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