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Distortion-invariant ID tags for object identification

机译:用于对象识别的不变形ID标签

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Active and passive optical identification (ID) tags and readers for remote identification and verification of objects are described. We focus our attention on the design of passive ID tags to achieve distortion-invariant authentication of the information included in the optical tag. A passive ID tag will consist of an optical phase code which can be placed in a visible part of an object for remote detection. We aim to authenticate the object even if the reader captures a distorted version of the code due to in-plane rotations. Distortion-invariance is achieved by both multiplexing the information included in the ID tag and the topology of the tag. For security purposes, double-phase encryption has already been shown as an appropriate technique to encode information. By using double-phase encryption, a signature is hidden in a phase-encoded ID tag not visible by visual inspection. Once the ID tag is captured by the reader and is decrypted, a correlation-based processor verifies the decoded information with a previously stored reference signal. The proposed system may have broad applications in transportation, homeland security, and inventory control.
机译:描述了主动和被动光学识别(ID)标签以及用于远程识别和验证对象的读取器。我们将注意力集中在无源ID标签的设计上,以实现对光学标签中包含的信息进行不变形的身份验证。无源ID标签将包含一个光学相位代码,可以将其放置在物体的可见部分中以进行远程检测。即使阅读器由于平面内旋转而捕获了变形的代码版本,我们也希望对对象进行身份验证。通过多路复用ID标签中包含的信息和标签的拓扑结构,可以实现失真不变性。为了安全起见,已经示出了双阶段加密作为编码信息的适当技术。通过使用双阶段加密,签名被隐藏在通过目视检查不可见的经过相位编码的ID标签中。一旦读取器捕获到ID标签并对其进行解密,基于相关性的处理器就会使用先前存储的参考信号验证解码后的信息。拟议的系统可能在运输,国土安全和库存控制中具有广泛的应用。

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