首页> 外文会议>International symposium on multispectral image processing and pattern recognition;MIPPR 2009 >Dual-wavelength technology used in anti-interfere for long range and short distance detection
【24h】

Dual-wavelength technology used in anti-interfere for long range and short distance detection

机译:双波长技术用于抗干扰,可进行长距离和短距离检测

获取原文

摘要

Technology of interference becomes more advancing. Adopting fog and aerosols is the best way to interfere optical detection. Due to the fog and aerosols, target recognition becomes difficult under this environment. In the present paper a method is given to solve this problem in a simple way.A dual-wavelength technology used in anti-interfere for long range and short distance detection is introduced in this paper, which can discriminate the backscattering reflection of fog and aerosols. In the present work the scattering character of the special fog and aerosols environment is calculated using the Rayleigh scattering method and Mie scattering method. The scattering characters in different environment are analyses using two wavelengths, i.e. one wavelength lies in ultraviolet wave band, the other in near infrared wave band. The results indicated that the ratio of proportion-discrimination is usually greater than 2, and deeper the strength of the fog and aerosols, the greater the ratio.This method also validated by experiment. In the present study, three kinds of wavelength such as 405niru 670nm and808nm are adopted. The intensity data collected shows that the ratio is greater than 3.The performance and working principle of the system and its components are analyzed in details. Based on the fullsystem, the dual-wavelength technology can be well applied. The result of the experiments also proves that thetechnology is efficient, especially in the heavy fog and aerosols environment.The dual wavelength method can be used for long range and short distance detection.
机译:干扰技术变得越来越先进。采用雾气和气溶胶是干扰光学检测的最佳方法。由于雾和气溶胶,在这种环境下目标识别变得困难。在本文中,给出了一种以简单方式解决该问题的方法。 本文介绍了一种用于长距离和短距离检测的抗干扰双波长技术,该技术可以区分雾和气溶胶的反向散射反射。在本工作中,使用瑞利散射法和米氏散射法计算了特殊雾气环境的散射特性。使用两种波长来分析不同环境中的散射特性,即一个波长位于紫外波段,另一波长位于近红外波段。结果表明,比例鉴别的比率通常大于2,并且雾和气溶胶的强度越深,比率越大。 该方法也通过实验验证。在本研究中,三种波长例如405niru 670nm和 采用808nm。收集的强度数据显示该比率大于3。 详细分析了系统及其组成部分的性能和工作原理。基于全 系统中,双波长技术可以很好地应用。实验结果也证明了 技术是高效的,特别是在大雾和气溶胶的环境中。 双波长方法可用于远距离和短距离检测。

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