首页> 外文会议>Progress in Electromagnetics Research Symposium - Fall >Optical encoding system using sparse pinhole arrays for optical information processing
【24h】

Optical encoding system using sparse pinhole arrays for optical information processing

机译:使用稀疏针孔阵列进行光学信息处理的光学编码系统

获取原文

摘要

Optical security has attracted much attention nowadays, and relevant research has been widely conducted. Although optical encoding and decoding technique can be useful for securing information, its security is still a major concern in practical applications and more effort should be made to enhance system security. Recently, optical information authentication method has been developed and can be considered as a promising strategy to further enhance system security. The optical information authentication approaches are usually established based on optical encoding setups, and decoded images can be effectively verified without plaintext disclosure. It has also been found that high flexibility can be achieved in the optical information authentication system, and various optical imaging setups, such as phase retrieval, digital holography and computer-generated hologram, can be designed and applied in practice. To some extent, a new research perspective has been opened up for optical information security due to the development of optical information authentication strategy. It is expected that more optical information authentication systems can be established in the future. In this paper, one optical information processing method, i.e., for optical image authentication, is presented based on phase-truncated encoding system using sparse pinhole arrays. During optical encoding, phase-truncated strategy is employed, and sparse pinhole arrays are applied in spatial frequency domain and CCD plane, respectively. Since plaintext cannot be clearly observed during the decryption even using correct security keys, optical authentication method is further applied to verify the decrypted image. High security is achieved, and an effective security layer can be established for phase-truncated optical encoding system.
机译:如今,光学安全已引起了广泛关注,相关研究已得到广泛开展。尽管光学编码和解码技术对于保护信息安全很有用,但其安全性仍然是实际应用中的主要问题,应加大工作量以增强系统安全性。近来,光学信息认证方法已经被开发并且可以被认为是进一步增强系统安全性的有前途的策略。通常基于光学编码设置来建立光学信息认证方法,并且可以在没有明文公开的情况下有效地验证解码图像。还已经发现,在光学信息认证系统中可以实现高度的灵活性,并且可以在实践中设计和应用各种光学成像装置,例如相位检索,数字全息和计算机生成的全息图。在一定程度上,由于光信息认证策略的发展,为光信息安全开辟了新的研究视角。期望将来可以建立更多的光学信息认证系统。在本文中,提出了一种基于使用稀疏针孔阵列的相位截断编码系统的光学信息处理方法,即用于光学图像认证的方法。在光学编码过程中,采用了截断策略,并在空间频域和CCD平面上分别应用了稀疏的针孔阵列。由于即使在使用正确的安全密钥的情况下,在解密过程中也无法清楚地观察到明文,因此进一步采用了光学认证方法来验证解密后的图像。实现了高安全性,并且可以为相位截断的光学编码系统建立有效的安全层。

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