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Ranging Accuracy in Dynamic Spectrum Access Networks

机译:动态频谱接入网的测距精度

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摘要

Theoretical analysis of time-of-arrival (TOA)-based high-precision ranging algorithm for the dynamic spectrum access networks (DSANs) is performed. The asymptotic frequency-domain Cramer-Rao bound (CRB) of the ranging algorithm that takes the frequency-dependent feature (FDF) and phase of multipath components (MPCs) into account is derived through Whittle formula. The effects of FDF-MPCs and related parameters such as absolute bandwidth and operating center frequency on the ranging accuracy are investigated. The results show that the impacts of the FDF-MPCs on the ranging accuracy can be significant and it is recommended utilizing as large absolute bandwidth as possible at low operating center frequencies to obtain high-precision distance information of the users in the DSANs
机译:对动态频谱接入网(DSAN)的基于到达时间(TOA)的高精度测距算法进行了理论分析。通过惠特尔公式推导了测距算法的渐近频域Cramer-Rao界(CRB),它考虑了频率相关特征(FDF)和多径分量(MPC)的相位。研究了FDF-MPC及其相关参数(如绝对带宽和工作中心频率)对测距精度的影响。结果表明,FDF-MPC对测距精度的影响可能很大,建议在较低的操作中心频率下使用尽可能大的绝对带宽,以获取DSAN中用户的高精度距离信息

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