Flores-Tapia Daniel, Thomas Gabriel, Pistorius Stephen
Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, MB, Canada.
IEEE Trans Image Process. 2008 Oct;17(10):1908-25. doi: 10.1109/TIP.2008.2002307.
In recent years, the use of radar technology has been proposed in a wide range of subsurface imaging applications. Traditionally, linear scan trajectories are used to acquire data in most subsurface radar applications. However, novel applications, such as breast microwave imaging and wood inspection, require the use of nonlinear scan trajectories in order to adjust to the geometry of the scanned area. This paper proposes a novel reconstruction algorithm for subsurface radar data acquired along cylindrical scan trajectories. The spectrum of the collected data is processed in order to locate the spatial origin of the target reflections and remove the spreading of the target reflections which results from the different signal travel times along the scan trajectory. The proposed algorithm was successfully tested using experimental data collected from phantoms that mimic high contrast subsurface radar scenarios, yielding promising results. Practical considerations such as spatial resolution and sampling constraints are discussed and illustrated as well.
近年来,雷达技术已被提议用于广泛的地下成像应用中。传统上,在大多数地下雷达应用中,线性扫描轨迹用于采集数据。然而,诸如乳腺微波成像和木材检测等新型应用需要使用非线性扫描轨迹,以便适应扫描区域的几何形状。本文提出了一种针对沿圆柱扫描轨迹采集的地下雷达数据的新型重建算法。对采集到的数据频谱进行处理,以定位目标反射的空间原点,并消除由于信号沿扫描轨迹传播时间不同而导致的目标反射扩展。使用从模拟高对比度地下雷达场景的模型中收集的实验数据对所提出的算法进行了成功测试,取得了有希望的结果。还讨论并说明了诸如空间分辨率和采样约束等实际考虑因素。