False alarm and detection probability for NLOS detection in LTE environments

C. Gentner, I. Groh, S. Sand, A. Dammann
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引用次数: 2

Abstract

This paper presents a novel analytical derivation of the false alarm probability (FAP) and detection probability (DP) for non-line-of-sight (NLOS) detection based on LTE signals. Position estimation in indoor or urban area with cellular wireless communication systems is getting more and more important. However, especially in these environments NLOS propagation causes positioning errors in the order of hundreds of meters. Thus, detection and mitigation of NLOS signals is a critical task. In this paper, we derive the FAP and DP on power-scaled detectors based on LTE multipath signals. The derivation considers frequency-selective fading channels taking sub-sample multipath interference, channel dynamics and initial frequency offsets into account. The results show a simple way to calculate the DP versus FAP. Simulation results verify the analytical probabilities for the WINNER II C2 channel model. Additionally, the simulations show the improved FAP of an antenna array at the receiver.
LTE环境下NLOS检测的虚警与检测概率
提出了一种新的基于LTE信号的非视距(NLOS)检测虚警概率(FAP)和检测概率(DP)的解析推导方法。利用蜂窝式无线通信系统进行室内或城市区域的位置估计变得越来越重要。然而,特别是在这些环境中,NLOS传播会导致数百米量级的定位误差。因此,检测和缓解NLOS信号是一项关键任务。本文给出了基于LTE多径信号的功率级检测器的FAP和DP。推导考虑了频率选择性衰落信道,考虑了子样本多径干扰、信道动态和初始频率偏移。结果显示了一种简单的计算DP与FAP的方法。仿真结果验证了WINNER II C2信道模型的分析概率。此外,仿真结果还显示了改进后的接收机天线阵列的FAP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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