Protection of originating calls in handoff prioritization schemes

S. Ali, A. Fakoorian, H. Taheri
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引用次数: 5

Abstract

With the increasing popularity of wireless communication systems, customers are expecting the same quality of service (QoS), availability and performance from the wireless communication networks as the traditional wire-line networks. Currently the research work on radio channel allocation in cellular mobile systems focuses mainly on two aspects, improving the user admission capability and protecting the connection continuity for handoff calls as a QoS constraint. However, given a QoS constraint, a wireless network has to sacrifice its capacity in order to support an increase in handoff rate. In this paper, we propose and analyze a different handoff scheme which not only gives priority to handoff calls, due to importance of them from QoS standpoint, but also protects originating calls to keep system capacity at an acceptable level. In channel reservation schemes, there are some periods that reserved channels are not actively utilized. In this paper, these periods are defined as dead time. Indeed, our scheme mathematically analyzes the mean dead time. We use a system model defined by a two dimensional Markov chain which computes mathematically the performance in terms of the mean dead time, blocking probability of originating calls, forced termination probability and call incompletion probability. Results are compared with conventional predictive channel reservation (PCR) and guard channel (GC) schemes.
在切换优先级方案中对发起呼叫的保护
随着无线通信系统的日益普及,用户期望无线通信网络具有与传统有线网络相同的服务质量(QoS)、可用性和性能。目前对蜂窝移动系统中无线信道分配的研究主要集中在两个方面:提高用户接纳能力和作为QoS约束保护切换呼叫的连接连续性。然而,给定QoS约束,无线网络必须牺牲其容量以支持切换速率的增加。在本文中,我们提出并分析了一种不同的切换方案,该方案不仅优先考虑切换呼叫,因为从QoS的角度来看它们很重要,而且还保护原始呼叫,使系统容量保持在可接受的水平。在信道保留方案中,有一段时间保留的信道没有被积极利用。本文将这些时段定义为死区时间。实际上,我们的方案在数学上分析了平均死区时间。我们使用一个由二维马尔可夫链定义的系统模型,该模型从平均死区时间、发起呼叫的阻塞概率、强制终止概率和呼叫不完成概率等方面对性能进行数学计算。结果比较了传统的预测通道保留(PCR)和保护通道(GC)方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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