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Fast converging adaptive detection of Doppler-shifted, range-distributed targets

机译:多普勒频移,距离分布目标的快速收敛自适应检测

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A generalized likelihood ratio test (GLRT) for the adaptive detection of a target or targets that are Doppler-shifted and distributed in range is derived. The unknown parameters associated with the hypothesis test are the complex amplitudes in range of the desired target and the unknown covariance matrix of the additive interference, which is assumed to be characterized as complex zero-mean correlated Gaussian random variables. The target's or targets' complex amplitudes are assumed to be distributed across the entire input data block (sensor /spl times/ range). The unknown covariance matrix is constrained to have the reasonable form of the identity matrix (the internal noise contribution) plus an unknown positive semidefinite (psdh) matrix (the external interference contribution). It is shown via simulation for a variety of interference scenarios that the new detector has the characteristic of having a bounded constant false alarm rate (CFAR), i.e., for our problem, the probability of false alarm P/sub F/ for a given detection threshold is bounded by the P/sub F/ that results when no external interference is present. It is also shown via simulation that the new detector converges relatively fast with respect to the number of sample vectors K necessary in order to achieve a given probability of detection P/sub D/.
机译:得出用于自适应检测多普勒频移和范围分布的一个或多个目标的广义似然比检验(GLRT)。与假设检验相关的未知参数是所需目标范围内的复振幅和累加干扰的未知协方差矩阵,假定将其表征为复零均值相关高斯随机变量。假设目标或目标的复振幅分布在整个输入数据块中(传感器/ spl次/范围)。未知协方差矩阵被约束为具有单位矩阵的合理形式(内部噪声贡献)加上未知正半定(psdh)矩阵(外部干扰贡献)。通过针对各种干扰情况的仿真显示,新检测器的特征在于具有一定的恒定误报率(CFAR),即对于我们的问题,对于给定的检测,误报的概率为P / sub F /阈值由P / sub F /限制,当不存在外部干扰时产生。通过仿真还表明,新检测器相对于为了达到给定的检测概率P / sub D /而必需的样本矢量K的数量相对较快地收敛。

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