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Performance evaluation of a hierarchical cellular system with mobile velocity-based bidirectional call-overflow scheme

机译:基于移动速度的双向呼叫溢出方案的分层蜂窝系统性能评估

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With the increase of teletraffic demands in mobile cellular system, hierarchical cellular systems (HCSs) have been adopted extensively for more efficient channel utilization and better GoS (Grade of Services). A practical issue related to HCS is to design a scheme for controlling and allocating call traffic to different layers. There are several strategies to deal with this problem, such as no call-overflow scheme, unidirectional call-overflow scheme and bidirectional call-overflow scheme. The objective of this paper is to investigate a bidirectional call-overflow scheme, based on the velocity of the mobile making the calls. To ensure that hand off calls are given higher priorities, it is assumed that guard channels are assigned in both macrocells and microcells. In order to evaluate the performance of the new scheme and compare the performance of several related schemes, two now models based on a one-dimensional Markov process are developed and analytical results are derived. Theoretical analysis and numerical evaluation show that the proposed scheme outperforms others in terms of average hew call blocking and hand off failure probability of the system. In addition, when the teletraffic to the HCS reaches a certain grade, the GoS is insensitive to the maximum velocity and the velocity threshold which is used to assign calls to different layers in our scheme.
机译:随着移动蜂窝系统中电信业务需求的增加,分层蜂窝系统(HCS)已被广泛采用,以提高信道利用效率和改善GoS(服务等级)。与HCS有关的一个实际问题是设计一种用于控制呼叫流量并将其分配到不同层的方案。有多种策略可以解决此问题,例如无呼叫溢出方案,单向呼叫溢出方案和双向呼叫溢出方案。本文的目的是根据移动电话发出呼叫的速度研究双向呼叫溢出方案。为了确保赋予越区切换呼叫更高的优先级,假定在宏小区和微小区中都分配了保护信道。为了评估新方案的性能并比较几种相关方案的性能,开发了两个基于一维马尔可夫过程的模型,并得出了分析结果。理论分析和数值评估表明,该方案在平均呼叫阻塞和切换失败概率方面优于其他方案。另外,当到HCS的电话流量达到一定等级时,GoS对最大速度和速度阈值不敏感,该阈值用于将呼叫分配给我们方案中的不同层。

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