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On-Board, Real-Time Preprocessing System for Optical Remote-Sensing Imagery

机译:用于光学遥感图像的板载,实时预处理系统

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摘要

With the development of remote-sensing technology, optical remote-sensing imagery processing has played an important role in many application fields, such as geological exploration and natural disaster prevention. However, relative radiation correction and geometric correction are key steps in preprocessing because raw image data without preprocessing will cause poor performance during application. Traditionally, remote-sensing data are downlinked to the ground station, preprocessed, and distributed to users. This process generates long delays, which is a major bottleneck in real-time applications for remote-sensing data. Therefore, on-board, real-time image preprocessing is greatly desired. In this paper, a real-time processing architecture for on-board imagery preprocessing is proposed. First, a hierarchical optimization and mapping method is proposed to realize the preprocessing algorithm in a hardware structure, which can effectively reduce the computation burden of on-board processing. Second, a co-processing system using a field-programmable gate array (FPGA) and a digital signal processor (DSP; altogether, FPGA-DSP) based on optimization is designed to realize real-time preprocessing. The experimental results demonstrate the potential application of our system to an on-board processor, for which resources and power consumption are limited.
机译:随着遥感技术的发展,光学遥感图像处理在许多应用领域起着重要作用,例如地质勘探和自然防灾。然而,相对辐射校正和几何校正是预处理中的关键步骤,因为未经预处理的未经预处理的原始图像数据将导致应用期间的性能差。传统上,遥感数据被拒绝到地面站,预处理,并分发给用户。该过程产生长延迟,这是远程传感数据的实时应用中的主要瓶颈。因此,在板上,实时图像预处理非常需要。在本文中,提出了一种用于车载图像预处理的实时处理架构。首先,提出了一种分层优化和映射方法来实现硬件结构中的预处理算法,可以有效地降低板载处理的计算负担。其次,使用现场可编程门阵列(FPGA)和基于优化的数字信号处理器(DSP;完全,FPGA-DSP)的协同处理系统旨在实现实时预处理。实验结果表明,我们的系统对板载处理器的潜在应用,资源和功耗有限。

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