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Sub-Nyquist Sampling OFDM Radar With a Time-Frequency Phase-Coded Waveform

Author(s)
Kang, SeonghyeonHan, KawonHong, Songcheol
Issued Date
2024-11
DOI
10.1109/TVT.2024.3419899
URI
https://scholarworks.unist.ac.kr/handle/201301/88988
Citation
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, v.73, no.11, pp.16517 - 16530
Abstract
This paper presents a time-frequency phase-coded sub-Nyquist sampling orthogonal frequency division multiplexing (PC-SNS-OFDM) radar system to reduce the analog-to-digital converter (ADC) sampling rate without any additional hardware or signal processing. The proposed radar divides the transmitted OFDM signal into multiple sub-bands along the frequency axis and provides orthogonality to these sub-bands by multiplying phase codes in both the time and frequency domains. Although the sampling rate is reduced by the factor of the number of sub-bands, the sub-bands above the sampling rate are folded into the lowest one due to aliasing. In the process of restoring the signals in folded sub-bands to those in full signal bands, the proposed PC-SNS-OFDM radar effectively eliminates symbol-mismatch noise while introducing trade-offs in the range and Doppler ambiguities. The utilization of phase codes in both the frequency and time domains provides flexible control of the range and Doppler ambiguities. It also improves the signal-to-noise ratio (SNR) of detected targets compared to an earlier sub-Nyquist sampling OFDM radar system. This is validated with simulations and experiments under various sub-Nyquist sampling rates.
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
ISSN
0018-9545
Keyword (Author)
OFDMDoppler radarBandwidthSymbolsSignal resolutionDoppler effectBasebandAnalog-to-digital converter (ADC) sampling rateautomotive radarhigh-resolution radarOFDM radarphase-coded OFDMsub-Nyquist sampling
Keyword
MIMO RADARRESOLUTIONRANGEDESIGNSYSTEM

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