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A practical method for estimating performance metrics of call admission control schemes in wireless mobile networks

机译:一种估算无线移动网络中呼叫准入控制方案性能指标的实用方法

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Providing the desired call blocking probability (CBP) to not only new but also existing calls has been a challenge for wireless mobile network service providers. To satisfy different requirements for new and handoff CBP, several call admission control (CAC) schemes have been proposed in the literature. Exact analysis of these schemes using 2D Markov chains is computationally intensive. Therefore, computationally efficient methods to analyze these systems using 1D Markov chain models have been considered. The "traditional" approach assumes that channel holding time for new and handoff calls have equal mean values. While the "normalized" approach relaxes this assumption, it is accurate only for the new call bounding CAC scheme. In this paper, we reevaluate the analytical methods for CBP probabilities for several widely known CAC schemes under more general assumptions by providing an easy to implement method. The numerical results show that when the average values of channel holding times for new and handoff calls are different the proposed approach gives more accurate results when compared with the traditional and normalized methods based on 1D Markov chain modeling, while keeping the computational complexity low.
机译:提供所需的呼叫阻止概率(CBP)不仅是新的,而且还为现有呼叫提供了无线移动网络服务提供商的挑战。为了满足新的和切换CBP的不同要求,在文献中提出了几种呼叫进入控制(CAC)方案。使用2D马尔可夫链的这些方案的精确分析是计算密集的。因此,已经考虑了使用1D马尔可夫链模型来分析这些系统的计算上有效的方法。 “传统”方法假设新的和切换呼叫的渠道保持时间具有相同的平均值。虽然“归一化”方法放宽了这种假设,但对于新的呼叫限定CAC方案仅准确。在本文中,我们通过提供易于实现的方法,重新评估几种广泛认识的CAC方案的CBP概率。数值结果表明,当新的和切换呼叫的通道保持时间的平均值不同时,与基于1D马尔可夫链建模的传统和规范化方法相比,所提出的方法提供更准确的结果,同时保持计算复杂性低。

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