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Modeling Received Signal Strength measurements for cellular network based positioning

机译:为基于蜂窝网络的定位建模接收信号强度测量

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This paper introduces a novel approach to model Received Signal Strength (RSS) measurements in cellular networks for user positioning needs. The RSS measurements are simulated by constructing a synthetic statistical cellular network, based on empirical data collected from a real life network. These statistics include conventional path loss model parameters, shadowing phenomenon including spatial correlation, and probabilities describing how many cell identities are measured at a time. The performance of user terminal positioning in the synthetic model is compared with real life measurement scenario by using a fingerprinting based K-nearest neighbor algorithm. It is shown that the obtained position error distributions match well with each other. The main advantage of the introduced network design is the possibility to study the performance of various position algorithms without requiring extensive measurement campaigns. In particular the model is useful in dimensioning different radio environment scenarios and support in preplanning of measurement campaigns. In addition, repeating the modeling process with different random values, it is possible to study uncommon occurrences in the system which would be difficult to reveal with limited real life measurement sets.
机译:本文介绍了一种新颖的方法来建模蜂窝网络中满足用户定位需求的接收信号强度(RSS)测量。基于从现实生活网络中收集的经验数据,通过构建合成的统计蜂窝网络来模拟RSS测量。这些统计信息包括常规路径损耗模型参数,包括空间相关性在内的阴影现象以及描述一次测量多少个小区标识的概率。通过使用基于指纹的K近邻算法,将合成模型中用户终端定位的性能与现实生活中的测量场景进行了比较。结果表明,所获得的位置误差分布相互匹配。引入的网络设计的主要优点是可以研究各种位置算法的性能,而无需进行大量的测量工作。该模型尤其可用于确定不同的无线电环境场景的尺寸,并在测量活动的预先计划中提供支持。另外,用不同的随机值重复建模过程,有可能研究系统中罕见的情况,而这些情况很难用有限的实际测量值来揭示。

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