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Journal Article

Citation

Lin JJ, Li YP, Hsu WC, Lee TS. Springerplus 2016; 5: 42.

Affiliation

Department of Electrical and Computer Engineering, National Chiao Tung University, 300 Hsinchu City, Taiwan.

Copyright

(Copyright © 2016, Holtzbrinck Springer Nature Publishing Group)

DOI

10.1186/s40064-015-1583-5

PMID

26811804

PMCID

PMC4717130

Abstract

For a typical FMCW automotive radar system, a new design of baseband signal processing architecture and algorithms is proposed to overcome the ghost targets and overlapping problems in the multi-target detection scenario. To satisfy the short measurement time constraint without increasing the RF front-end loading, a three-segment waveform with different slopes is utilized. By introducing a new pairing mechanism and a spatial filter design algorithm, the proposed detection architecture not only provides high accuracy and reliability, but also requires low pairing time and computational loading. This proposed baseband signal processing architecture and algorithms balance the performance and complexity, and are suitable to be implemented in a real automotive radar system. Field measurement results demonstrate that the proposed automotive radar signal processing system can perform well in a realistic application scenario.


Language: en

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