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Parameter estimation of moving target based on linearly constrained space-time adaptive monopulse technique

机译:基于线性约束时空自适应单脉冲技术的运动目标参数估计

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Technique of space-time adaptive processing (STAP), which is usually employed by airborne radar to reject the ground clutter and jamming and at the same time, detect the ground moving targets, can not estimate the spatial-temporal parameters of the corresponding targets. Monopulse technique, as a mature method for parameter estimation can be used on airborne radar, however, the estimation performance of this method is dramatically effected by the ground clutter and jamming components present, even when these components falls into the mainbeam interval. By combining the STAP technique with the monopulse technique, a new method for estimating the spatial-temporal parameters of moving targets is proposed and referred as to LC-STAM in this paper. Additionally, the proposed method utilizes the beam null, monopulse slope, and decoupling constraints to remove the worse influence on the beam shape from the mainbeam clutter, maintain the characteristic of the monopulse ratio, and increase the veracity of parameter estimation. Simulation results illustrated that the LC-STAM method possesses the excellent estimation performance of the spatail-temporal parameters by comparing with the other similar methods.
机译:机载雷达通常采用时空自适应处理(STAP)技术来抑制地面杂波和干扰,同时检测地面移动目标,无法估计相应目标的时空参数。作为一种成熟的参数估计方法,单脉冲技术可以在机载雷达上使用,但是,这种方法的估计性能会受到地面杂波和干扰分量的显着影响,即使这些分量落入主波束间隔内也是如此。通过将STAP技术与单脉冲技术相结合,提出了一种估计运动目标时空参数的新方法,并将其称为LC-STAM。另外,所提出的方法利用光束零位,单脉冲斜率和去耦约束来消除来自主光束杂波的对光束形状的更坏影响,保持单脉冲比的特性,并增加参数估计的准确性。仿真结果表明,与其他类似方法相比,LC-STAM方法具有很好的时空参数估计性能。

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