亞洲知識產權資訊網為知識產權業界提供一個一站式網上交易平台,協助業界發掘知識產權貿易商機,並與環球知識產權業界建立聯繫。無論你是知識產權擁有者正在出售您的知識產權,或是製造商需要購買技術以提高操作效能,又或是知識產權配套服務供應商,你將會從本網站發掘到有用的知識產權貿易資訊。

Polarization mode dispersion-based physical layer key generation for optical fiber link security

技術優勢
Highly random: Encryption is achieved through the polarization mode dispersion (PMD) of a given optical fiber which is highly random (>98%) and therefore impossible to predict. Simple, inexpensive: As the encryption method relies on a physical layer inherent within the PPOL system, it offers a low-cost easily-implemented solution.
技術應用
For the encryption of point-to-point optical links
詳細技術說明
Recent advancements in the accessibility and bandwidth of optical networks have lead to the rise of optical fiber-based communications, called point-to-point optical links (PPOLs), which are used in applications ranging from ethernet systems to telecommunications and military correspondence. Like any other method of communication, optical fibers are vulnerable to a number of security threats including eavesdropping, message interception, and attacks on the network infrastructure. Though there are a number of methods that can be used to encrypt optical communications, these methods are typically impractical, complicated, time-consuming, and/or computationally demanding. Currently, there is no universal simple, efficient, and safe method for encrypting optical communications. Researchers at UCI have sought to overcome these issues by creating a novel method for PPOL encryption. The encryption here is generated from the dispersion of the polarization modes sustained within an optical fiber as this dispersion is entirely random, unique to the fiber of interest, and impossible for an outsider to predict or determine. This method will be particularly useful for resource-limited applications, where reduced cost and low-power solutions are desired.
*Abstract

Researchers at UCI have developed a novel method for encrypting optical communications, which is simpler, less expensive, and less computationally-demanding than standard solutions.

*Principal Investigation

Name: Ozdal Boyraz

Department:


Name: Mohammad Faruque

Department:


Name: Anthony Lopez

Department:


Name: Imam Zaman

Department:

其他

State Of Development

Currently in the development stage. PMD-based encryption has been verified; researchers are now working to optimize the key generation algorithm.


Tech ID/UC Case

29412/2018-533-0


Related Cases

2018-533-0

國家/地區
美國

欲了解更多信息,請點擊 這裡
移動設備