Electronics Optics & Control, Volume. 27, Issue 7, 1(2020)
A Coherent Integration Algorithm of SKT-BFT Based on Velocity Compensation
[2] [2] ZHANG S, ZHANG W, WANG Y.Multiple targets detection in terms of keystone transform at the low SNR level[C]//IEEE International Conference on Information and Automation, 2008:1-4.
[3] [3] ZHANG J C, SU T, ZHENG J B, et al.Novel fast coherent detection algorithm for radar maneuvering target with jerk motion[J].IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2017, 10(5): 1792-1803.
[4] [4] LI X L, KONG L J, CUI G L, et al.Detection and RM correction approach for maneuvering target with complex motions[J].IET Signal Processing, 2017, 11(4):378-386.
[5] [5] KONG L J, LI X L, CUI G L, et al.Coherent integration algorithm for a maneuvering target with high-order range migration[J].IEEE Transactions on Signal Processing, 2015, 63(17):4474-4486.
[6] [6] HUANG P H, LIAO G, YANG Z, et al.Approach for space-based radar maneuvering target detection and high-order motion parameter estimation[J].IET Radar, Sonar and Navigation, 2015, 9(6):732-741.
[7] [7] TAO R, ZHANG N, WANG Y.Analysing and compensating the effects of range and Doppler frequency migrations in li-near frequency modulation pulse compression radar[J].IET Radar, Sonar and Navigation, 2011, 5(1):12-22.
[8] [8] LI X L, CUI G L, YI W, et al.Coherent integration for maneuvering target detection based on Radon-Lvs distribution[J].IEEE Signal Processing Letters, 2015, 22(9):1467-1471.
[9] [9] TIAN J, CUI W, SHEN Q, et al.High-speed maneuvering target detection approach based on joint RFT and keystone transform[J].Science China Information Sciences, 2013, 56(6):1-13.
[10] [10] CHEN X L, GUAN J, HUANG Y, et al.Radon-linear canonical ambiguity function-based detection and estimation method for marine target with micro motion[J].IEEE Transactions Geoscience and Remote Sensing, 2015, 53(4):2224-2240.
[11] [11] SU J H, XING M D, WANG G Y, et al.High-speed multi-target detection with narrowband radar[J].IET Radar, Sonar and Navigation, 2010, 4(4):595-603.
[12] [12] LI X L, CUI G L, YI W, et al.Maneuvering target detection based on keystone transform and Lvs distribution[J].IET Radar, Sonar and Navigation, 2016, 10(7):1234-1242.
[13] [13] SUN Z, LI X, YI W, et al.Detection of weak maneuvering target based on keystone transform and matched filtering process[J].Signal Processing, 2017, 140:127-138.
[14] [14] TIAN J, CUI W, XIA X G, et al.Parameter estimation of ground moving targets based on SKT-DLVT processing[J].IEEE Transactions on Computational Imaging, 2016, 2(1):13-26.
[18] [18] RAO X, TAO H, SU J, et al.Detection of constant radial acceleration weak target via IAR-FRFT[J].IEEE Tran-sactions on Aerospace and Electronic Systems, 2015, 51(4): 3242-3253.
[19] [19] ZHANG J C, SU T, LI Y Y, et al.Radar high-speed maneuvering target detection based on joint second-order keystone transform and modified integrated cubic phase function[J].Journal of Applied Remote Sensing, 2016, 10(3):1-17.
[21] [21] ZHENG J, SU T, ZHU W, et al.ISAR imaging of targets with complex motions based on the keystone time-chirp rate distribution[J].IEEE Geoscience and Remote Sensing Letters, 2014, 11(7):1275-1279.
[22] [22] YUAN S, WU T, MAO M, et al.Application research of keystone transform in weak high-speed target detection in low-PRF narrowband chirp radar[C]//IEEE 9th International Conference on Signal Processing, 2008:2452-2456.
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XIN Tingting, WANG Guohong, LI Lin, ZHANG Liang. A Coherent Integration Algorithm of SKT-BFT Based on Velocity Compensation[J]. Electronics Optics & Control, 2020, 27(7): 1
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Received: Jul. 9, 2019
Accepted: --
Published Online: Jan. 19, 2021
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