首页> 外文会议>Annual International Meeting of the American Society of Agricultural and Biological Engineers >Band Selection of Hyperspectral Images for detecting Blueberry Fruit with Different Growth Stages
【24h】

Band Selection of Hyperspectral Images for detecting Blueberry Fruit with Different Growth Stages

机译:用不同生长阶段检测蓝莓果的高光谱图像的频段选择

获取原文

摘要

Hyperspectral imagery deals with large volumes of data due to hundreds of spectral bands used in the images. Although hyperspectral images with higher spectral resolution usually carry more information, the processing of the images requires a significant amount of memory and is usually very slow. In addition, hyperspectral images contain considerable amount of redundant information, which does not help or even hinder the algorithm in making the correct decision. Band selection is an approach to bothreduce the dimensionality of hyperspectral images and save calculation time for further applications, such as detection of blueberry fruit with different maturity stages. Hyperspectral images of blueberry fruit were taken in a commercial blueberry field.Mature fruit, intermediate fruit, young fruit and background were the four classes to be studied. A supervised band selection method was proposed using Kullback-Leibler divergence (KLD). Wider bands were made by combining 20 hyperspectral bands so thatthe selected bands could be used in a blueberry yield mapping system using a lower-cost multispectral camera. Based on the analysis, six combined bands were selected:543.1 - 572.6 nm, 627.4 - 658.8 nm, 663.6- 695.2 nm, 725.4 - 757.4 nm, 773.5 - 805.6 nmand 838 - 870.5 nm. The test result showed that the proposed band selection method worked well for the task of blueberry growth stages detection.
机译:由于图像中使用的数百个光谱带,高光谱图像处理大量数据。尽管具有较高光谱分辨率的高光谱图像通常携带更多信息,但是图像的处理需要大量的存储器并且通常非常慢。此外,Hyperspectral图像包含相当大量的冗余信息,这对制定正确的决定不有所帮助或甚至阻碍算法。频带选择是一种方法,可以介绍高光谱图像的维度,并节省进一步应用的计算时间,例如用不同成熟阶段检测蓝莓果实。蓝莓果实的高光谱图像采用商用蓝莓田间。果实,中间水果,幼果和背景是要研究的四个课程。提出了一种使用Kullback-Leibler发散(KLD)的监督带选择方法。通过组合20个高光谱频带来制造更宽的频带,使得所选频带可以使用使用低成本多光谱相机的蓝莓产量映射系统。基于分析,选择了六个组合带:543.1-572.6 nm,627.4 - 658.8 nm,663.6-695.2 nm,725.4 - 757.4 nm,773.5 - 805.6 nmand 838 - 870.5 nm。试验结果表明,建议的带选择方法适用于蓝莓生长阶段检测的任务。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号