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Dynamic Simulation Based Localization for Mobile Sensor Networks

机译:基于动态仿真的移动传感器网络定位

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摘要

In mobile wireless sensor networks, sensors can move randomly or keep static temporarily. Mobility makes the sensor networks better acquire information, but also makes accurate localization more difficult since the network environment changes continually. In this paper, an energy-efficient dynamic simulation based localization (DSL) algorithm is introduced that uses range measurement information to restrict sample region and establishes a dynamic filtering mechanism to improve the localization performance and efficiency. Analytical and simulation results are provided to study the localization cost and location accuracy in different mobility models and various environmental settings. The results indicate that our algorithm outperforms the best known simulation based localization schemes under a wide range of conditions, with localization accuracy improved by an average of 24% and computation cost reduced significantly for a similar high localization accuracy.
机译:在移动无线传感器网络中,传感器可以随机移动或暂时保持静止。移动性使传感器网络更好地获取信息,但由于网络环境不断变化,因此使精确定位更加困难。本文介绍了一种基于能量效率的基于动态仿真的定位算法(DSL),该算法利用距离测量信息来限制样本区域,并建立了动态​​滤波机制来提高定位性能和效率。提供了分析和模拟结果,以研究不同机动性模型和各种环境设置下的定位成本和位置准确性。结果表明,在相似的高定位精度下,我们的算法在广泛的条件下均优于最著名的基于仿真的定位方案,定位精度平均提高了24%,计算成本显着降低。

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