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New computing method of weighted coefficients for tracking a maneuvering target using PDAF in the presence of clutter

机译:在杂波存在下使用PDAF跟踪机动目标的加权系数的新计算方法

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摘要

To avoid or reduce the influence of unpredictable motion mode on data association, a new computing method of weighted coefficients of measurements for PDAF is presented in which it is assumed that the current turn rate of a maneuvering target changes within a limited range and its turn may be in arbitrary direction during data association. Thus, the predicted center for computing the weighted coefficients is a curved surface in 3-D space, which differs from the predicted center for setting up a validation gate, namely, a point in 3-D space. The distance between a measurement and the curved surface is used to compute its weighted coefficient. To reduce the computational complexity of weighted coefficients, the formulas for computing the maneuvering direction angle and turn rate corresponding to a measurement are presented. Simulation results show the proposed method reduces the percentage of lost tracks and improves the state estimation accuracy in tracking a maneuvering target using PDAF in the presence of clutter.
机译:为了避免或减少不可预测的运动模式对数据关联的影响,提出了一种新的PDAF测量加权系数的计算方法,其中假设机动目标的当前转弯速率在有限范围内变化,并且其转弯可能在数据关联期间处于任意方向。因此,用于计算加权系数的预测中心是3-D空间中的曲面,该曲面不同于用于建立验证门的预测中心,即3-D空间中的点。测量值与曲面之间的距离用于计算其加权系数。为了减少加权系数的计算复杂性,提出了用于计算与测量对应的操纵方向角和转弯速率的公式。仿真结果表明,所提出的方法减少了轨迹丢失的百分比,提高了在有杂波的情况下使用PDAF跟踪机动目标的状态估计精度。

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