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首页> 外文期刊>Sensors Journal, IEEE >Beyond the Stop-and-Go Assumption in Pulse-Doppler Radar Sensors
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Beyond the Stop-and-Go Assumption in Pulse-Doppler Radar Sensors

机译:超越脉冲多普勒雷达传感器的“走走停停”假设

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摘要

Coherent radars have multiple applications; among them, they can obtain images of targets. Unfortunately, the image quality can be seriously compromised for highly maneuvering targets, since the commonly adopted stop-and-go assumption is no longer valid for them. An approximated conventional explicit model for the signal delay, being proportional to the time-dependent target range, is usually employed to evaluate the violation of the stop-and-go simplification in these scenarios. Nevertheless, even this model can lead to radar-based measurement inaccuracies for extreme situations; for example, those involving very fast relative dynamics between the platform and target or for radars exploiting long-time-pulse waveforms. In this paper, an implicit function is proposed as the exact model for the radar echo time delay. Solutions for the conventional and exact models in the case of first- and second-order range polynomials are provided, and pertinent comparisons between them are accomplished. The main conclusion of this paper is that the conventional model is generally a good approximation to the exact solutions, but there may be extreme cases for which it does not give insight into the real appearing effects. Thus, the application of the exact model for the derivation of the radar round-trip delay could enable the conception of advanced radar-sensor algorithms, which improve the image quality for highly maneuvering targets. Simulated results of 1-D range profiles for a linear frequency-modulated continuous-wave radar example are also presented for verification of the expounded analytical equations.
机译:相干雷达有多种应用。其中,他们可以获得目标的图像。不幸的是,对于高度机动的目标,图像质量可能会受到严重损害,因为通常采用的“走走停停”假设对其不再有效。通常采用近似的,与时间相关的目标范围成比例的信号延迟常规显式模型来评估在这些情况下违反停停简化的情况。然而,即使在极端情况下,该模型也可能导致基于雷达的测量不准确。例如,那些涉及平台与目标之间非常快速的相对动力学的运动,或涉及利用长时间脉冲波形的雷达的运动。本文提出了一种隐式函数作为雷达回波时间延迟的精确模型。提供了针对一阶和二阶范围多项式的常规模型和精确模型的解,并且完成了它们之间的相关比较。本文的主要结论是,常规模型通常是精确解的良好近似,但是在某些极端情况下,它无法深入了解实际出现的效果。因此,将精确模型应用于雷达往返延迟的推导可以实现高级雷达传感器算法的概念,从而提高高机动目标的图像质量。还给出了线性调频连续波雷达示例的一维距离剖面的模拟结果,以验证所阐述的解析方程。

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