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首页> 外文期刊>Journal of Applied Remote Sensing >Detection of maneuvering target with motion compensation errors based on alpha log-determinant divergence and symmetrized alpha log-determinant divergence
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Detection of maneuvering target with motion compensation errors based on alpha log-determinant divergence and symmetrized alpha log-determinant divergence

机译:基于α木语法分歧的运动补偿误差和对称α对数决定性发散的运动补偿误差检测

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摘要

Long-term coherent integration is an effective method for target detection. However, the inevitable motion compensation errors and complex background clutter seriously limit the detection performance of a cell-averaging constant false alarm rate (CFAR) detector. A generalized CFAR detector on the Riemannian manifold of Hermitian positive-definite matrix is proposed. Based on the alpha log-determinant divergence (alpha-LDD) and symmetrized alpha-LDD, the mean matrix of the reference cells is first estimated. Then the dissimilarity between the covariance matrix of the cell under test and the mean matrix is measured to determine the presence of a target. Numerical experiments show that the proposed detectors have better detection performance than other representative methods when detecting a target with motion compensation errors in complex background. (C) 2020 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:长期相干集成是目标检测的有效方法。 然而,不可避免的运动补偿误差和复杂的背景杂波严重限制了细胞平均常量误报率(CFAR)检测器的检测性能。 提出了在麦克尔尼人正面矩阵的riemannian歧管上的广义CFAR检测器。 基于α对象分歧(α-LDD)和对称α-LDD,首先估计参考电池的平均矩阵。 然后测量测试细胞的协方差与平均基质的协方差与平均基质之间的异化以确定目标的存在。 数值实验表明,所提出的检测器具有比在复杂背景中的运动补偿误差检测目标时的其他代表方法的检测性能更好。 (c)2020光学仪表工程师协会(SPIE)

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