CA-CFAR Performance in K-Distributed Sea Clutter With Fully Correlated Texture

被引:11
|
作者
Medeiros, Diego Silva [1 ]
Almeida Garcia, Fernando Dario [2 ]
Machado, Renato [1 ]
Santos Filho, Jose Candido S. [2 ]
Saotome, Osamu [3 ]
机构
[1] Aeronaut Inst Technol, Dept Telecommun, BR-12228900 Sao Jose Dos Campos, Brazil
[2] Univ Estadual Campinas, Sch Elect & Comp Engn, Dept Commun, Wireless Technol Lab, BR-13083852 Campinas, Brazil
[3] Aeronaut Inst Technol, Dept Appl Elect, BR-12228900 Sao Jose Dos Campos, Brazil
基金
巴西圣保罗研究基金会;
关键词
Clutter; Detectors; Radar; Speckle; Radar clutter; Radar detection; Shape; Cell-averaging constant false-alarm rate (CA-CFAR); K-distributed clutter; probability of detection; probability of false alarm; sea clutter; COMPOUND-GAUSSIAN CLUTTER; RADAR DETECTION PREDICTION; VECTOR SUBSPACE DETECTION; TARGETS; MODEL;
D O I
10.1109/LGRS.2023.3238169
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Sea clutter has been a long-standing issue in old and modern radars. Under this context, the K-distribution has emerged as a promising clutter model to accurately mimic sea signal variations in a large variety of radar systems. To guarantee an adequate radar performance in the presence of sea clutter, the family of constant false-alarm rate (CFAR) detectors has been commonly used. In particular, due to its adequate balance between performance and implementation, the cell-averaging CFAR (CA-CFAR) detector has been considered an attractive detection mechanism to enhance radar performance over various clutter environments. In this work, we assess radar performance considering a CA-CFAR detector operating over K-distributed sea clutter with fully correlated texture. More precisely, we derive novel closed-form expressions for the probability of detection (P-D) and the probability of false alarm ( P-FA) that can be readily evaluated using any mathematical software. Monte-Carlo (MC) simulations corroborate our analytical findings.
引用
收藏
页数:5
相关论文
共 50 条
  • [21] The Effect of K-Distributed Clutter on Trackability
    Schoenecker, Steven
    Willett, Peter
    Bar-Shalom, Yaakov
    IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2016, 64 (02) : 475 - 484
  • [22] MIMO RADAR PERFORMANCE ANALYSIS UNDER K-DISTRIBUTED CLUTTER
    Zhang, Xin
    El Korso, Mohammed Nabil
    Pesavento, Marius
    2014 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING (ICASSP), 2014,
  • [23] Adaptive Coherent Detection for Maritime Radar Range-Spread Targets in Correlated Heavy-Tailed Sea Clutter With Lognormal Texture
    Xue, Jian
    Fan, Zhen
    Xu, Shuwen
    IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2024, 21 : 1 - 5
  • [24] Distributed Active Sonar Detection in Dependent K-Distributed Clutter
    Abraham, Douglas A.
    IEEE JOURNAL OF OCEANIC ENGINEERING, 2009, 34 (03) : 343 - 357
  • [25] A Novel Reconstruction Method of K-Distributed Sea Clutter with Spatial-Temporal Correlation
    Ding, Mingyue
    Li, Yachao
    Quan, Yinghui
    Guo, Liang
    Xing, Mengdao
    SENSORS, 2020, 20 (08)
  • [26] Introducing excision switching-CFAR in K distributed sea clutter
    Erfanian, Saeed
    Vakili, Vahid Tabataba
    SIGNAL PROCESSING, 2009, 89 (06) : 1023 - 1031
  • [27] Adaptive CFAR Detectors for Mismatched Signal in Compound Gaussian Sea Clutter With Inverse Gaussian Texture
    Wang, Zhihang
    He, Zishu
    He, Qin
    Li, Jun
    IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2022, 19
  • [28] Fluctuating Target Detection in Fluctuating K-Distributed Clutter
    Abramovich, Yuri I.
    Besson, Olivier
    IEEE SIGNAL PROCESSING LETTERS, 2015, 22 (10) : 1791 - 1795
  • [29] Performance analysis of radar detection for correlated gamma fluctuating targets in K distributed sea clutter
    Yang, Yong
    Xiao, Shun-ping
    Wang, Xue-song
    Zhang, Wen-ming
    Li, Yong-zhen
    DIGITAL SIGNAL PROCESSING, 2018, 79 : 136 - 141
  • [30] Performance prediction for a coherent X-band radar in a maritime environment with K-distributed sea clutter
    McDonald, A. M.
    de Wind, H. J.
    Cilliers, J. E.
    Herselman, P.
    2010 IEEE RADAR CONFERENCE, 2010, : 1208 - 1213