This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: University of Electronic Science and Technology of China. Active years: 2022.
Company Filing History:
Years Active: 2022
Title: Anke Zhao: Innovator in Key Distribution Technology
Introduction
Anke Zhao is a prominent inventor based in Chengdu, China. She has made significant contributions to the field of key distribution methods, particularly through her innovative patent that utilizes synchronized broadband physical random sources. Her work is essential in enhancing secure communication systems.
Latest Patents
Anke Zhao holds a patent titled "Key distribution method and system based on synchronized broadband physical random sources." This patent describes a method that involves generating an optical signal using a driving semiconductor laser. The optical signal is then passed through a phase modulator driven by a random signal, which is subsequently divided into two identical paths. These paths are injected into slave semiconductor lasers at both communication parties, Alice and Bob, to generate initial synchronized signals. The process continues with phase-modulating optical signals generated by continuous-wave light sources, leading to the creation of high-speed synchronized keys through a post-processing method.
Career Highlights
Anke Zhao is affiliated with the University of Electronic Science and Technology of China, where she continues to advance her research in secure communication technologies. Her work has garnered attention for its potential applications in various fields, including cybersecurity and telecommunications.
Collaborations
Anke has collaborated with notable colleagues such as Ning Jiang and Kun Qiu, contributing to the advancement of her research and the development of innovative solutions in her field.
Conclusion
Anke Zhao's contributions to key distribution technology highlight her role as a leading inventor in the field. Her innovative approaches are paving the way for more secure communication systems, making her a significant figure in contemporary research.