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A ML-Based Framework for Joint TOA/AOA Estimation of UWB Pulses in Dense Multipath Environments

机译:密集多径环境中基于ML的UWB脉冲TOA / AOA联合估计框架

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摘要

We present a joint estimator of the time of arrival (TOA) and angle of arrival (AOA) for impulse radio ultrawideband (UWB) systems in which an antenna array is employed at the receiver. The proposed method consists of two steps: 1) preliminary estimation of the TOA and the average power delay profile (APDP) using energy-based threshold crossing and log-domain least-squares fitting, respectively; and 2) joint TOA refinement and AOA estimation by local 2-D maximization of a log-likelihood function (LLF) that employs the preliminary estimates from the first step. The derivation of the LLF relies on an original formulation in which the superposition of images from secondary paths is modeled as a Gaussian random process, whose second-order statistical properties are characterized by a wideband space–time correlation function. In addition to the APDP, this function incorporates a special gating mechanism to represent the onset of the secondary paths, thereby leading to a novel form of the LLF. Closed-form expressions for the Cramer–Rao bound on the variance of the TOA and AOA estimators are also derived, which formally take into account pulse overlap through this gating mechanism. In simulation experiments based on multipath UWB channel models featuring both diffuse and directional image fields, our approach exhibits superior performance to that of a competing scheme from the recent literature.
机译:我们为脉冲无线电超宽带(UWB)系统提出了到达时间(TOA)和到达角(AOA)的联合估计器,在接收器中采用了天线阵列。所提出的方法包括两个步骤:1)分别使用基于能量的阈值穿越和对数域最小二乘拟合分别对TOA和平均功率延迟曲线(APDP)进行初步估计; 2)通过对数似然函数(LLF)进行局部2-D最大化来联合进行TOA改进和AOA估计,该函数采用了第一步的初步估计。 LLF的推导依赖于原始公式,其中来自次级路径的图像叠加被建模为高斯随机过程,其二阶统计特性以宽带时空相关函数为特征。除APDP之外,此功能还结合了特殊的选通机制来代表辅助路径的出现,从而带来了LLF的新颖形式。还推导了基于TOA和AOA估计量方差的Cramer-Rao界的闭式表达式,该表达式正式考虑了通过这种门控机制的脉冲重叠。在基于同时具有漫反射和定向像场的多径UWB信道模型的仿真实验中,我们的方法表现出比最近文献中的竞争方案更高的性能。

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