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FPGA Design of an Automatic Target Generation Process for Hyperspectral Image Analysis

机译:用于高光谱图像分析的自动目标生成过程的FPGA设计

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Onboard processing of remotely sensed hyper spectral data is a highly desirable goal in many applications. For this purpose, compact reconfigurable hardware modules such as field programmable gate arrays (FPGAs) are widely used. In this paper, we develop a new implementation of an automatic target generation process (ATGP) for hyper spectral images. Our implementation is based on a design methodology that starts from a high-level description in Matlab (or alternative C/C++) and obtains a register transfer level (RTL) description that can be ported to FPGAs. In order to validate our new implementation, we develop a quantitative and comparative study using two different FPGA architectures: Xilinx Virtex-5 and Altera Stratix-III Altera. Experimental results have been obtained in the context of a real application focused on the detection of mineral components over the Cup rite mining district (Nevada), using hyper spectral data collected by NASA's Airborne Visible Infra-Red Imaging Spectrometer (AVIRIS). Our experimental results indicate that the proposed implementation can achieve peak frequency designs above 200MHz in the considered FPGAs, in addition to satisfactory results in terms of target detection accuracy and parallel performance. This represents a step forward towards the design of real-time onboard implementations of hyper spectral image analysis algorithms.
机译:在许多应用中,机载处理遥感高光谱数据是非常需要的目标。为此,广泛使用了紧凑的可重新配置硬件模块,例如现场可编程门阵列(FPGA)。在本文中,我们为高光谱图像开发了一种自动目标生成过程(ATGP)的​​新实现。我们的实现基于一种设计方法,该设计方法从Matlab(或替代C / C ++)的高级描述开始,并获得可移植到FPGA的寄存器传输级别(RTL)描述。为了验证我们的新实现,我们使用两种不同的FPGA架构进行了定量和比较研究:Xilinx Virtex-5和Altera Stratix-III Altera。在一项实际应用的背景下,使用NASA机载可见红外成像光谱仪(AVIRIS)收集的高光谱数据,重点研究了铜矿开采区(内华达州)上的矿物成分,从而获得了实验结果。我们的实验结果表明,除了在目标检测精度和并行性能方面令人满意的结果之外,所提出的实现还可以在考虑的FPGA中实现200MHz以上的峰值频率设计。这代表着朝着高光谱图像分析算法的实时机载实现设计迈出了一步。

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