一种新的基于方向的蜂窝网络切换估计日迁移模型

S. Sadhukhan, S. Mandal, Partha Bhaumik, Debashis Saha
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引用次数: 14

摘要

在现实生活中,用户大多先验地知道目的地,他们的移动不是纯粹随机的(就像随机行走模型中假设的那样);相反,它在某种程度上是基于方向的,取决于当前的位置和最终目的地。例如,一个经常去办公室的人经常在晚上回家(也就是说,流动性是白天的)。虽然没有现有的研究研究了可能对蜂窝运营商非常重要的基于方向的日移动模型,但我们为这种移动制定了一个马尔可夫模型,并给出了用户的蜂窝边界交叉(即预期的切换次数)的理论上限。我们在理论上计算了基于我们提出的移动性模型的交接次数,并在模拟环境中验证了结果。我们发现,大多数rnc /MSC之间的切换[4]只来自少数几个蜂窝,运营商应该为降低成本而将其制成双归属。
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A novel direction-based diurnal mobility model for handoff estimation in cellular networks
In real-life scenario where users mostly know their destinations a priori, their movement is not purely random (as assumed in random walk model); rather it is somewhat direction-based and depends on the present location and the final destination. For instance, an office goer often returns home in the evening (i.e., mobility is diurnal). While no existing research has studied direction-based diurnal mobility model which could be of immense importance to cellular operators, we formulate a Markov model for such movement and give a theoretical upper bound of cell boundary crossings (i.e., expected number of handoffs) by the user. We have theoretically calculated the number of handoffs based on our proposed mobility model and verified the result in a simulated environment. We find that a majority of inter-RNC/MSC handoffs [4] comes from only a few cells which should be made dual-homed by the operators for their cost reduction.
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