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Time Difference of Arrival estimation using super resolution algorithms to minimize Distance Measurement Error for indoor positioning systems

机译:使用超分辨率算法估算到达时间差以最小化室内定位系统的距离测量误差

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This paper presents the utilization of super resolution algorithms for the indoor positioning applications in order to estimate Time difference of Arrival (TDOA) and distances using OFDM transceiver. Optimal reduction in Distance Measurement Error (DME) is achieved. We have utilized OFDM/SC-DFE signal structure presented in our previous works. Three super resolution algorithms i.e. Estimation of Signal Parameters via Rotational Invariance Technique (ESPRIT), Root-Multiple Signal Classification (RootMUSIC) and Matrix Pencil (MP) are being compared for DME estimation. We have applied Minimum Descriptive Length (MDL) criteria to these algorithms, that provides optimize estimate of the length of actual CIR by eliminating the noise component from the dispersive CIR. Our scheme is based on two different antennas used to transmit the pre-half-zero-carriers and post-half-zero-carriers OFDM symbols respectively, mapped to multiple carriers using Wireless Local Area Network (WLAN) system and received by a single to be positioned object. An analysis of DME estimation is presented for varying Signal to Noise Ratio (SNR). DME reduction approaching to zero is achieved by the MP algorithm using our scheme.
机译:本文介绍了超分辨率算法在室内定位应用中的应用,以便使用OFDM收发器估算到达时间差(TDOA)和距离。实现了距离测量误差(DME)的最佳减少。我们已经利用了先前工作中介绍的OFDM / SC-DFE信号结构。比较了三种超分辨率算法,即通过旋转不变技术(ESPRIT)估计信号参数,多次根信号分类(RootMUSIC)和矩阵铅笔(MP)进行DME估计。我们对这些算法应用了最小描述长度(MDL)标准,该标准通过消除色散CIR中的噪声分量来提供对实际CIR长度的优化估计。我们的方案基于两个分别用于发送前半零载波和后半零载波OFDM符号的天线,这些天线使用无线局域网(WLAN)系统映射到多个载波,并由单个天线接收。被定位的对象。提出了针对变化的信噪比(SNR)的DME估计分析。使用我们的方案,通过MP算法可将DME降低到接近零。

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