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Sensitivity of Handover Performance to Path Loss Exponent: A Variable Hysteresis Margin based Handover Initiation Algorithm

机译:切换性能对路径损耗指数的敏感性:基于可变磁滞余量的切换启动算法

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In this paper, we analyze the sensitivity of handover initiation algorithm to path loss exponent The effect of the propagating model parameters on both the mean number of handovers, and handover initiation delay are investigated. The algorithm is based on signal strength measurements using relative signal strength with hysteresis margin approach. The mean number of handovers is estimated for a single trip of mobile station from one base station to another, henceforth referred to as handover rate. Different path loss exponents varying from 2 to 8 are used for the simulation and the corresponding impact on handover rate and delay was studied. It is observed that handover rate depends on the path loss exponent. In a nonuniform environment, path loss parameters may be different and a given handover scheme cannot give optimum results consistently in the entire cellular network. A variable hysteresis margin based scheme for optimum handover performance under different propagation environments is proposed. The simulation results yield optimized tradeoff between handover rate and handover Initiation delay.
机译:在本文中,我们分析了切换发起算法对路径损耗指数的敏感性。研究了传播模型参数对平均切换次数和切换发起延迟的影响。该算法基于使用相对信号强度和磁滞余量方法的信号强度测量。对于移动站从一个基站到另一个基站的单次行程,估计平均切换次数,此后称为切换速率。仿真使用了从2到8的不同路径损耗指数,并研究了对切换速率和延迟的相应影响。观察到切换速率取决于路径损耗指数。在非均匀环境中,路径损耗参数可能不同,并且给定的切换方案无法在整个蜂窝网络中始终如一地提供最佳结果。提出了一种基于可变磁滞余量的方案,用于在不同传播环境下实现最佳切换性能。仿真结果产生了切换速率和切换启动延迟之间的优化折衷。

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