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A Simplified Technique for Distance and Velocity Measurements of Multiple Moving Objects Using a Linear Frequency Modulated Signal

机译:一种使用线性调频信号测量多个运动物体的距离和速度的简化技术

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摘要

In this paper, we propose a simplified algorithm for the unbiased estimation of range and the radial velocity of moving objects observed by a sensor with a frequency-modulated continuous wave signal. Linear frequency modulated signals and their different modifications are widely used in various microwave sensors for short- to medium-range measurements in automotive, safety, industrial, and other applications. Since the range (distance) to a detected object is measured as a beat frequency at the homodyne receiver output, the Doppler shift results in a biased measurement of the range. This phenomenon has been well known for a long time. The situation becomes more uncertain with an increase in the number of objects within the radar’s field of view. There are many proposed techniques to solve this problem with one main technique adding a number of equations according to the number of detected objects in the hope of finding a single solution. We propose a simplifed system of those equations excluding all uncertainties from the hypothesis tree at the beginning of the procedure. When the performance of the signal processing hardware is limited, the simplicity of the algorithm increases in importance. The proposed technique is simple enough to be used on an embedded microprocessor. We performed an experiment involving a real microwave sensor to confirm a validity of the proposed algorithm.
机译:在本文中,我们提出了一种简化的算法,用于对带有调频连续波信号的传感器观测到的运动物体的距离和径向速度进行无偏估计。线性调频信号及其不同的修改已广泛用于各种微波传感器中,用于汽车,安全,工业和其他应用中的中短距离测量。由于到被检测物体的距离(距离)是作为零差接收器输出处的拍频测量的,因此多普勒频移会导致距离的测量偏差。这种现象早已众所周知。随着雷达视场内物体数量的增加,情况变得更加不确定。为了解决这一问题,提出了许多技术,其中一项主要技术是根据检测到的物体的数量添加多个方程,以期找到一个解决方案。我们提出了一个简化的方程式系统,在程序开始时排除了假设树中的所有不确定因素。当信号处理硬件的性能受到限制时,算法的简便性就变得越来越重要。所提出的技术非常简单,可以在嵌入式微处理器上使用。我们进行了涉及真实微波传感器的实验,以确认所提出算法的有效性。

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