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Modeling Infrared Signal Reflections to Characterize Indoor Multipath Propagation

机译:建模红外信号反射以表征室内多径传播

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摘要

In this paper, we propose a model to characterize Infrared (IR) signal reflections on any kind of surface material, together with a simplified procedure to compute the model parameters. The model works within the framework of Local Positioning Systems (LPS) based on IR signals (IR-LPS) to evaluate the behavior of transmitted signal Multipaths (MP), which are the main cause of error in IR-LPS, and makes several contributions to mitigation methods. Current methods are based on physics, optics, geometry and empirical methods, but these do not meet our requirements because of the need to apply several different restrictions and employ complex tools. We propose a simplified model based on only two reflection components, together with a method for determining the model parameters based on 12 empirical measurements that are easily performed in the real environment where the IR-LPS is being applied. Our experimental results show that the model provides a comprehensive solution to the real behavior of IR MP, yielding small errors when comparing real and modeled data (the mean error ranges from 1% to 4% depending on the environment surface materials). Other state-of-the-art methods yielded mean errors ranging from 15% to 40% in test measurements.
机译:在本文中,我们提出了一个模型来表征任何种类的表面材料上的红外(IR)信号反射,并提供了一种简化的过程来计算模型参数。该模型在基于IR信号(IR-LPS)的本地定位系统(LPS)框架内工作,以评估传输信号多径(MP)的行为,这是IR-LPS出错的主要原因,并做出了一些贡献缓解方法。当前的方法基于物理,光学,几何和经验方法,但是由于需要应用多个不同的限制并使用复杂的工具,因此这些方法无法满足我们的要求。我们提出了一个仅基于两个反射分量的简化模型,以及一种基于12个经验测量来确定模型参数的方法,该方法在应用IR-LPS的实际环境中很容易执行。我们的实验结果表明,该模型为IR MP的真实行为提供了全面的解决方案,在比较真实数据和建模数据时会产生小的误差(平均误差范围为1%到4%,具体取决于环境表面材料)。其他最新方法在测试测量中产生的平均误差范围为15%至40%。

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