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Optimal Call Admission Control for Voice Traffic in Cellular Mobile Communication Networks

机译:蜂窝移动通信网络中语音流量的最佳呼叫允许控制

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We propose a new call admission control (CAC) scheme for voice calls in cellular mobile communication networks. It is assumed that the rejection of a hand-off call is less desirable than that of a new call, for a hand-off call loss would cause a severe mental pain to a user. We consider the pains of rejecting new and hand-off calls as different costs. The key idea of our CAC is to restrict the admission of new calls in order to minimize the total expected costs per unit time over the long term. An optimal policy is derived from a semi-Markov decision process in which the intervals between successive decision epochs are exponentially distributed. Based on this optimal policy, we calculate the steady state probability for the number of established voice connections in a cell. We then evaluate the probability of blocking new calls and the probability of forced termination of hand-off calls. In the numerical experiments, it is found that the forced termination probability of hand-off calls is reduced significantly by our CAC scheme at the slight expense of the blocking probability of'new calls and the channel utilization. Comparison with the static guard channel scheme is made.
机译:我们为蜂窝移动通信网络中的语音呼叫提出了一种新的呼叫允许控制(CAC)方案。假定与新呼叫相比,拒绝切换呼叫的要求不那么理想,因为切换呼叫的丢失将给用户带来严重的精神痛苦。我们认为拒绝新呼叫和转移呼叫的痛苦是不同的成本。我们CAC的主要思想是限制新呼叫的进入,以使长期内每单位时间的总预期成本最小化。从半马尔可夫决策过程中得出最佳策略,在该过程中,连续决策纪元之间的间隔呈指数分布。基于此最佳策略,我们为一个单元中已建立的语音连接数计算稳态概率。然后,我们评估阻止新呼叫的可能性和强制终止转接呼叫的可能性。在数值实验中,发现通过我们的CAC方案,切换呼叫的强制终止概率大大降低,而新呼叫的阻塞概率和信道利用率却稍有降低。与静态保护通道方案进行了比较。

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