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A Signal Separation Method for Physical Wireless Parameter Conversion Sensor Networks Using K-Shortest Path

机译:基于K最短路径的物理无线参数转换传感器网络的信号分离方法

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Addressing low delay and high traffic performance is a technique necessary for wireless sensor networks (WSN). Although physical wireless parameter conversion sensor networks (PhyC-SN) achieve simultaneous information gathering from multiple sensors, separating the gathered mixed sensing results becomes a difficult problem. The proposed method utilizes an approach used in multi target tracking (MTT) in order to separate the mixed data points into a set of sequential ones. Particularly, we regard the data separation problem as path planning problems. In short, we consider paths by connecting data points observed at the adjacent time, and find a set of continuous paths consisting of data points of the same sensor. Following the problem, the same number of paths as sensors are obtained, so all sensing results can be correctly discriminated and labeled over all times in WSN. Therefore, we focus on a k-shortest pass method of MTT. In this paper, we show the accuracy of signal separation through simulation experiments and evaluate it in terms of the precision rate quantitatively.
机译:解决低延迟和高流量性能是无线传感器网络(WSN)必需的技术。尽管物理无线参数转换传感器网络(PhyC-SN)可以同时从多个传感器收集信息,但是分离收集的混合传感结果却成为一个难题。所提出的方法利用了多目标跟踪(MTT)中使用的一种方法,以便将混合数据点分离为一组顺序的数据点。特别地,我们将数据分离问题视为路径规划问题。简而言之,我们通过连接在相邻时间观察到的数据点来考虑路径,并找到一组由同一传感器的数据点组成的连续路径。解决该问题之后,可以获得与传感器相同数量的路径,因此可以在WSN的所有时间内正确地区分并标记所有传感结果。因此,我们专注于MTT的k最短通过方法。在本文中,我们通过仿真实验展示了信号分离的准确性,并从准确率的角度对其进行了定量评估。

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