Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference

In recent years, target detection has drawn increasing attention in the field of radar signal processing. In this paper, we address the problem of coherent integration for detecting high-speed maneuvering targets, involving range migration (RM), quadratic RM (QRM), and Doppler frequency migration (D...

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Main Authors: Ke Jin, Tao Lai, Yubing Wang, Gongquan Li, Yongjun Zhao
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Electronics
Subjects:
Online Access:http://www.mdpi.com/2079-9292/8/3/287
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spelling doaj-80db82d9107c48f08e3e0040d1222cc92020-11-24T22:01:57ZengMDPI AGElectronics2079-92922019-03-018328710.3390/electronics8030287electronics8030287Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase DifferenceKe Jin0Tao Lai1Yubing Wang2Gongquan Li3Yongjun Zhao4National Digital Switching System Engineering and Technological Research Center, Zhengzhou 450000, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou 450000, ChinaAir Traffic Control and Navigation College, Air Force Engineering University, Xi’an 710000, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou 450000, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou 450000, ChinaIn recent years, target detection has drawn increasing attention in the field of radar signal processing. In this paper, we address the problem of coherent integration for detecting high-speed maneuvering targets, involving range migration (RM), quadratic RM (QRM), and Doppler frequency migration (DFM) within the coherent processing interval. We propose a novel coherent integration algorithm based on the frequency-domain second-order phase difference (FD-SoPD) approach. First, we use the FD-SoPD operation to reduce the signal from three to two dimensions and simultaneously eliminate the effects of QRM and DFM, which leads to signal-to-noise ratio improvement in the velocity-acceleration domain. Next, we estimate the target motion parameters from the peak position without the need for a search procedure. We show that this algorithm can be easily implemented by using complex multiplications combined with fast Fourier transform (FFT) and inverse FFT (IFFT) operations. We perform comparisons with several representative algorithms and show that the proposed technique can be used to achieve a good trade-off between computational complexity and detection performance. We present both simulated and experimental data to demonstrate the effectiveness of the proposed method.http://www.mdpi.com/2079-9292/8/3/287maneuvering target detectioncoherent integrationmotion parameter estimationsecond-order phase difference (SoPD)time-frequency analysis
collection DOAJ
language English
format Article
sources DOAJ
author Ke Jin
Tao Lai
Yubing Wang
Gongquan Li
Yongjun Zhao
spellingShingle Ke Jin
Tao Lai
Yubing Wang
Gongquan Li
Yongjun Zhao
Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
Electronics
maneuvering target detection
coherent integration
motion parameter estimation
second-order phase difference (SoPD)
time-frequency analysis
author_facet Ke Jin
Tao Lai
Yubing Wang
Gongquan Li
Yongjun Zhao
author_sort Ke Jin
title Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
title_short Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
title_full Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
title_fullStr Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
title_full_unstemmed Coherent Integration for Radar High-Speed Maneuvering Target Based on Frequency-Domain Second-Order Phase Difference
title_sort coherent integration for radar high-speed maneuvering target based on frequency-domain second-order phase difference
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2019-03-01
description In recent years, target detection has drawn increasing attention in the field of radar signal processing. In this paper, we address the problem of coherent integration for detecting high-speed maneuvering targets, involving range migration (RM), quadratic RM (QRM), and Doppler frequency migration (DFM) within the coherent processing interval. We propose a novel coherent integration algorithm based on the frequency-domain second-order phase difference (FD-SoPD) approach. First, we use the FD-SoPD operation to reduce the signal from three to two dimensions and simultaneously eliminate the effects of QRM and DFM, which leads to signal-to-noise ratio improvement in the velocity-acceleration domain. Next, we estimate the target motion parameters from the peak position without the need for a search procedure. We show that this algorithm can be easily implemented by using complex multiplications combined with fast Fourier transform (FFT) and inverse FFT (IFFT) operations. We perform comparisons with several representative algorithms and show that the proposed technique can be used to achieve a good trade-off between computational complexity and detection performance. We present both simulated and experimental data to demonstrate the effectiveness of the proposed method.
topic maneuvering target detection
coherent integration
motion parameter estimation
second-order phase difference (SoPD)
time-frequency analysis
url http://www.mdpi.com/2079-9292/8/3/287
work_keys_str_mv AT kejin coherentintegrationforradarhighspeedmaneuveringtargetbasedonfrequencydomainsecondorderphasedifference
AT taolai coherentintegrationforradarhighspeedmaneuveringtargetbasedonfrequencydomainsecondorderphasedifference
AT yubingwang coherentintegrationforradarhighspeedmaneuveringtargetbasedonfrequencydomainsecondorderphasedifference
AT gongquanli coherentintegrationforradarhighspeedmaneuveringtargetbasedonfrequencydomainsecondorderphasedifference
AT yongjunzhao coherentintegrationforradarhighspeedmaneuveringtargetbasedonfrequencydomainsecondorderphasedifference
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