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Joint estimation of time of arrival and channel power delay profile for pulse-based UWB systems

机译:基于脉冲的UWB系统的到达时间和信道功率延迟曲线的联合估计

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Sub-Nyquist maximum likelihood (ML)-based time of arrival (TOA) estimation methods for ultra-wideband (UWB) signals normally assume a priori knowledge of the UWB channel in the form of the average power delay profile (APDP). In practice however, and despite its importance, the APDP is not always available. To address this issue, we develop in this paper a joint estimator of TOA and APDP. Knowing that the APDP of a UWB channel usually consists of several clusters, each with specific exponential decay rate, a parametric APDP model of this type is employed. The parameters of this model are estimated via a least-squares fitting approach; then the estimated APDP is used to form a likelihood function and obtain a ML estimator of the TOA. Simulations show that the TOA estimated jointly in this way achieves a good accuracy in practical scenarios. The proposed APDP estimate can also help to boost the performance of previously reported TOA estimators that assume a priori APDP knowledge, although the proposed ML scheme generally offers superior performance.
机译:用于超宽带(UWB)信号的基于次奈奎斯特最大似然(ML)的到达时间(TOA)估计方法通常以平均功率延迟曲线(APDP)的形式假定UWB信道具有先验知识。然而在实践中,尽管很重要,但APDP并非总是可用。为了解决这个问题,我们在本文中开发了TOA和APDP的联合估算器。知道UWB信道的APDP通常由几个群集组成,每个群集都有特定的指数衰减率,因此可以使用这种类型的参数APDP模型。该模型的参数通过最小二乘拟合法估算;然后,将估计的APDP用于形成似然函数并获得TOA的ML估计量。仿真表明,以这种方式联合估算的TOA在实际情况下达到了良好的准确性。尽管建议的ML方案通常提供优越的性能,但建议的APDP估计值也可以帮助提高先前报告的假定先验APDP知识的TOA估计器的性能。

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