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Mobile transmitter AOA estimation under multipath conditions using an MLE based superresolution algorithm and comparison with weighted spectrum methods

机译:使用基于MLE的超分辨率算法在多径条件下进行移动发射机AOA估计并与加权频谱方法进行比较

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Several techniques have been proposed and discussed for mobile handset location. These include the use of the Global Position System (GPS), time difference of arrival (TDOA), time of arrival (TOA) and angle of arrival (AOA). Each of these systems and techniques has various advantages and disadvantages. However, the aim of this paper is to demonstrate the advantage of using maximum likelihood (ML) based superresolution direction finding (SRDF) techniques for AOA estimation over weighted spectrum type approaches in the presence of multipath propagation in the cellular environment. This shows that ML based techniques are more suitable than weighted spectrum type approaches for handset location systems that use AOA information. Direction finding (DF) of a radio signal involves estimating a signal's AOA at a receiver. The DF techniques considered in this paper operate on the covariance matrix formed from the complex samples recorded at an array of antennas. All the techniques are SRDF algorithms, implying that they have the ability to resolve signals impinging on the array when their angular separation is less than the natural beamwidth of the antenna array.
机译:已经提出并讨论了几种用于手机定位的技术。这些包括使用全球定位系统(GPS),到达时间差(TDOA),到达时间(TOA)和到达角度(AOA)。这些系统和技术中的每一个都有各种优点和缺点。但是,本文的目的是证明在蜂窝环境中存在多径传播的情况下,使用基于最大似然(ML)的超分辨率方向查找(SRDF)技术进行AOA估计的方法优于加权频谱类型方法。这表明基于ML的技术比加权频谱类型的方法更适合使用AOA信息的手机定位系统。无线电信号的方向寻找(DF)涉及在接收机处估计信号的AOA。本文考虑的DF技术在由天线阵列记录的复杂样本形成的协方差矩阵上运行。所有这些技术都是SRDF算法,这意味着当它们的角度间隔小于天线阵列的自然波束宽度时,它们就有能力解析撞击在阵列上的信号。

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