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A new localization and Accuracy Analyzer for Wireless Sensor Networks using defective observations

机译:一种新的使用缺陷观测结果的无线传感器网络定位和精度分析器

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The development of energy aware and precise localization algorithms is a challenging task in the development of Wireless Sensor Networks (WSN). The achievable precision of the algorithms strongly depends on the accuracy of the measured observations (e.g. time of signal flight or received signal strength). In reality, observations are highly defective due to multiple effects (e.g. signal propagation). The geometrical conditions within the network can also affect the precision. It is therefore important to take the real characteristics of the observations into account as early as possible. This paper presents a new simulation tool to test geometrical conditions, different localization algorithms and measurements in WSNs either in the planing phase or after the localization process. Furthermore this tool enables the detection of outliers, to make accuracy statements and to analyze the determined position.
机译:节能和精确定位算法的开发是无线传感器网络(WSN)开发中的一项艰巨任务。该算法可达到的精度在很大程度上取决于测得观测值的精度(例如信号飞行时间或接收信号强度)。实际上,由于多种效应(例如信号传播),观察结果是高度有缺陷的。网络中的几何条件也会影响精度。因此,重要的是要尽早考虑到观测的真实特征。本文提出了一种新的仿真工具,可以在规划阶段或定位过程之后测试WSN中的几何条件,不同的定位算法和测量。此外,该工具还可以检测异常值,做出准确性声明并分析确定的位置。

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