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Target Detection Using Orthogonal Polyphase MIMO Radar Waveform against Compound Gaussian Clutter

机译:使用正交多相MIMO雷达波形对复合高斯杂波的目标检测

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This paper mainly deals with the target detection using orthogonal Polyphase Multiple Input Multiple Output (MIMO) radar waveforms against compound-Gaussian clutter with an unknown covariance matrix. The design of orthogonal code sets with correlation properties can effectively improve the radar performance by transmitting orthogonal waveforms optimized by Particle Swarm Optimization Algorithm (PSO). The space-time coding MIMO radar model has adopted, and developed to compound-Gaussian case. The GLRT is developed by assuming known covariance matrix, and then, a suitable estimate based on secondary data is inserted into the detector to make fully adaptive. The simulation results show that the orthogonal waveform and the GLRT used in MIMO radar Model can provide a good performance in spikier clutter.
机译:本文主要处理使用正交多相多输入多输出(MIMO)雷达波形与未知协方差矩阵的复合高斯杂波的目标检测。具有相关性能的正交码集的设计可以通过通过粒子群优化算法(PSO)优化的正交波形来有效地提高雷达性能。采用了时空编码MIMO雷达模型,并开发给复合高斯案例。通过假设已知的协方差矩阵来开发GLRT,然后基于次级数据的合适估计被插入检测器中以完全自适应。模拟结果表明,MIMO雷达模型中使用的正交波形和GLRT可以在尖峰杂乱中提供良好的性能。

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