Transmit waveform and receive filter design for multiple‐input multiple‐output radar with one‐bit digital‐to‐analogue converters
In this paper, we investigate the joint design of transmit waveform and receive filter for colocated Multiple‐Input Multiple‐Output radar equipped with one‐bit digital‐to‐analogue converters (DACs). The problem is formulated as maximising the output signal‐to‐interference‐plus‐noise ratio in the pre...
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          | Published in | IET signal processing Vol. 16; no. 7; pp. 873 - 881 | 
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| Main Authors | , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
            John Wiley & Sons, Inc
    
        01.09.2022
     Wiley  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 1751-9675 1751-9683 1751-9683  | 
| DOI | 10.1049/sil2.12144 | 
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| Summary: | In this paper, we investigate the joint design of transmit waveform and receive filter for colocated Multiple‐Input Multiple‐Output radar equipped with one‐bit digital‐to‐analogue converters (DACs). The problem is formulated as maximising the output signal‐to‐interference‐plus‐noise ratio in the presence of signal‐dependent interferences, subject to a discrete constraint imposed by the waveform quantised with one‐bit DACs. To cope with the challenging non‐convex problem, an alternating maximisation framework is developed to optimise the transmit waveform and receive filter vectors in an iterative manner. More specifically, for a given transmit waveform vector, the analytical expression of the receive filter vector is first derived. Then, by fixing the receive filter, a biconvex relaxation method is employed to tackle the non‐convex problem with respect to the transmit waveform vector. The performance of the proposed approach is demonstrated by numerical simulations in different circumstances. | 
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| ISSN: | 1751-9675 1751-9683 1751-9683  | 
| DOI: | 10.1049/sil2.12144 |