首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >The Design And The Development Of A Hyperspectral And Multispectral Airborne Mapping System
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The Design And The Development Of A Hyperspectral And Multispectral Airborne Mapping System

机译:高光谱和多光谱机载测绘系统的设计与开发

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摘要

Flexible and cost-effective tools for rapid image acquisition and natural resource mapping are needed by land managers. This paper describes the hardware and software architecture of a low-cost system that can be deployed on a light aircraft for rapid data acquisition. The Hyperspectral and Multispectral Cameras for Airborne Mapping (HAMCAM) was designed and developed in the Geospatial Laboratory for Environmental Dynamics at the University of Idaho as a student-learning tool, and to enhance the existing curriculum currently offered. The system integrates a hyperspectral sensor with four multispectral cameras, an lnertial Navigation System (INS), a Wide Area Augmentation System (WAAS)-capable Global Positioning System (GPS), a data acquisition computer, and custom software for running the sensors in a variety of different modes. The outputs include very high resolution imagery obtained in four adjustable visible and near-infrared bands from the multispectral imager. The hyperspectral sensor acquires 240 spectral bands along 2.7 nm intervals within the 445-900 nm range. The INS provides aircraft pitch, roll and yaw information for rapid geo-registration of the imagery. This paper will discuss the challenges associated with the development of the system and the integration of components and software for implementation of this system for natural resource management applications. In addition, sample imagery acquired by the sensor will be presented.
机译:土地管理人员需要灵活,经济高效的工具来快速获取图像和绘制自然资源。本文介绍了一种低成本系统的硬件和软件架构,该系统可以部署在轻型飞机上以快速获取数据。机载制图用高光谱和多光谱相机(HAMCAM)是爱达荷大学环境动力学地理空间实验室的设计和开发,作为学生的学习工具,旨在增强当前提供的现有课程。该系统将高光谱传感器与四个多光谱相机,一个导航导航系统(INS),具有广域增强系统(WAAS)的全球定位系统(GPS),一个数据采集计算机以及用于在传感器中运行传感器的定制软件集成在一起。各种不同的模式。输出包括从多光谱成像仪在四个可调的可见和近红外波段中获得的高分辨率图像。高光谱传感器在445-900 nm范围内沿2.7 nm间隔获取240个光谱带。 INS提供飞机的俯仰,横滚和偏航信息,以快速对图像进行地理定位。本文将讨论与系统开发以及组件和软件集成相关的挑战,以实现针对自然资源管理应用程序的该系统。此外,还将展示传感器获取的样本图像。

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