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Positioning with OFDM signals for the next- generation GNSS

机译:下一代GNSS的OFDM信号定位

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Instead of spread spectrum signals used for positioning in current global navigation satellite systems (GNSS), this paper presents a novel positioning method using OFDM signals for the next-generation GNSS. In contrast to the existing positioning methods with OFDM signals based on timing synchronization or super resolution algorithms, the proposed scheme uses the property of the OFDM signal itself in the frequency domain with respect to transmission delay, resulting in the accurate time of arrival (TOA) estimation. Computer simulations verify that the positioning accuracy of the proposed algorithm with bearable complexity can reach the Cramer-Rao lower bound (CRLB) in the range of medium to high signal-to-noise ratio (SNR). The accuracy achievable is in the order of centimeters, higher than that of the state-ofthe- art positioning methods using OFDM signals in the literature.
机译:代替用于当前全球导航卫星系统(GNSS)定位的扩频信号,本文提出了一种将OFDM信号用于下一代GNSS的新颖定位方法。与现有的基于定时同步或超分辨率算法的OFDM信号定位方法相比,该方案利用了OFDM信号本身在频域中的传输延迟特性,从而获得了准确的到达时间(TOA)估计。计算机仿真证明,该算法的定位精度具有可承受的复杂度,可以在中高信噪比(SNR)范围内达到Cramer-Rao下界(CRLB)。可获得的精度为厘米量级,高于文献中使用OFDM信号的最新定位方法的精度。

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