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A real continuously moving target simulation system design without time delay error

机译:真正的连续运动目标仿真系统设计,无时延误差

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The time delay of echo generated by the moving target simulator based on digital delay technique is discrete. So there are range and phase errors between the simulated target and real target, and the simulated target will move discontinuously due to the discrete time delay. In order to solve this problem and generate a continuously moving target, this paper uses signal processing technique to adjust the range and phase errors between the two targets. By adjusting the range gate, the time delay error is reduced to be smaller than sampling interval. According to the relationship between range and phase, the left error within one range bin can be removed equivalently by phase compensation. The simulation results show that by adjusting the range gate, the time delay errors are greatly reduced, and the left errors can be removed by phase compensation. In other words, a real continuously moving target is generated and the problem is solved.
机译:由移动目标模拟器基于数字延迟技术生成的回声的时间延迟是离散的。因此,模拟目标与实际目标之间存在范围和相位误差,并且由于离散的时间延迟,模拟目标将不连续地移动。为了解决这个问题并生成一个连续运动的目标,本文使用信号处理技术来调整两个目标之间的距离和相位误差。通过调整范围门,可以将时间延迟误差减小到小于采样间隔。根据范围和相位之间的关系,可以通过相位补偿等效地消除一个范围仓内的左误差。仿真结果表明,通过调节测距门,可以大大减少时延误差,并且可以通过相位补偿消除剩余误差。换句话说,产生了真正的连续运动目标并解决了问题。

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