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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Analysis of Random Walk Mobility Models with Location Heterogeneity
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Analysis of Random Walk Mobility Models with Location Heterogeneity

机译:具有位置异质性的随机游动模型的分析

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摘要

This paper investigates random walk mobility models with location heterogeneity, where different locations may have different neighboring regions. We consider locations in a one-dimension network and investigate two cases, i.e., where nodes situated have the capability to shuffle throughout the network and where nodes are allowed to move to positions nearby within a certain range. In the former situation, with the exact expressions derived, we find location heterogeneity has a critical impact on the first hitting time of random walk, varying from to according to different extent of heterogeneity. The result covers, as two special cases, both the classic independent and identically distributed (i.i.d) mobility and traditional random walk when varying the number of full-range locations. In the latter one, our asymptotic results on both the first crossing time and cover time suggest that they are inversely proportional to the range of neighboring region ( and , respectively). Furthermore, with multiple concurrent random walks introduced, the first hitting time can be drastically decreased and the effect is strengthened if combined with location heterogeneity. In addition, our investigation into the stationary distribution of nodes indicates that the uniformity no longer holds due to different transition probabilities, as a result of location heterogeneity. We also conduct extensive simulation results to verify our observations and enhance the understanding on the impact of network parameters. Based on the insights obtained, we move forward to investigate the impact of location heterogeneity in two-dimension networks.
机译:本文研究具有位置异质性的随机步行移动性模型,其中不同位置可能具有不同的邻近区域。我们考虑一维网络中的位置,并调查两种情况,即所位于的节点具有在整个网络中随机播放的能力以及允许节点移动到一定范围内附近位置的能力。在前一种情况下,通过推导确切的表达式,我们发现位置异质性对随机游走的首次命中时间具有至关重要的影响,异质性随异质性程度的不同而不同。当改变全范围位置的数量时,作为两个特殊情况,结果涵盖了经典的独立且均布的(i.d.d)移动性和传统的随机行走。在后一个中,我们在第一个穿越时间和覆盖时间上的渐近结果表明它们与相邻区域的范围成反比(分别为和)。此外,通过引入多个并发的随机游走,与位置异质性相结合,可以大大减少首次击球时间,并增强效果。另外,我们对节点的平稳分布的研究表明,由于位置异质性,由于不同的转移概率,一致性不再成立。我们还将进行广泛的仿真结果以验证我们的观察结果,并增强对网络参数影响的理解。基于获得的见解,我们将继续研究二维网络中位置异质性的影响。

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