Analysis of the simulated aggregate interference in random ad-hoc networks

Yiftach Richter, I. Bergel
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引用次数: 9

Abstract

In this paper, we propose a new method for bias correction in the simulation of random wireless ad-hoc networks (WANETs), when the distribution of the node locations is modeled as a Poisson-Point-Process (PPP). The aggregate interference is the main limiting factor in WANETs, and dominates the achievable rate and thus also the network capacity. In the proposed method, a bias correction constant is added to the aggregate interference that is measured in each simulation iteration. The value of the constant is derived through stochastic geometry analysis. We prove that the proposed method can reduce the computational complexity by several orders of magnitude, while producing more accurate simulation results. This improved accuracy is also demonstrated by simulations. As an example, we prove that a bias corrected simulation with only 100 transmitters is sufficient to estimate the aggregate interference with an accuracy of 1%.
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随机ad-hoc网络模拟聚合干扰分析
本文提出了一种基于泊松点过程(PPP)模型的随机无线自组织网络(WANETs)仿真中的偏差校正方法。汇聚干扰是wanet的主要限制因素,它决定着可达速率,从而决定着网络容量。在该方法中,在每次仿真迭代中测量的总干扰中加入一个偏差校正常数。该常数的值是通过随机几何分析得出的。实验证明,该方法可以将计算复杂度降低几个数量级,同时得到更精确的仿真结果。仿真结果也证明了这种改进的精度。作为一个例子,我们证明了只有100个发射机的偏差校正模拟足以估计总干扰,精度为1%。
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