Company Filing History:
Years Active: 2016-2017
Title: Kannan Shashank Shah: Innovator in Unauthorized Activity Detection and eCommerce Authentication
Introduction
Kannan Shashank Shah is a notable inventor based in San Diego, CA. He has made significant contributions to the fields of unauthorized activity detection and eCommerce authentication. With a total of 5 patents to his name, Shah's work focuses on enhancing security measures in digital environments.
Latest Patents
One of his latest patents involves systems and methods for identifying and detecting unauthorized user activity. This innovation aims to decrease the rate of false positives by analyzing users' past activity data. The disclosed systems and techniques allow for individual classifications and authorization decisions based on a user's activity across multiple services.
Another significant patent by Shah pertains to controlling eCommerce authentication. This method involves receiving an eCommerce authentication request from a merchant node, which includes cardholder information. A risk score is generated by comparing this information to that of requests from various merchant nodes. The authentication request is then selectively provided to an authentication node based on the calculated risk score.
Career Highlights
Throughout his career, Kannan Shashank Shah has worked with prominent companies such as CA Technologies and SAS Institute Inc. His experience in these organizations has contributed to his expertise in developing innovative security solutions.
Collaborations
Shah has collaborated with notable professionals in his field, including Paul Charles Dulany and Revathi Subramanian. These partnerships have likely enriched his work and expanded the impact of his inventions.
Conclusion
Kannan Shashank Shah is a distinguished inventor whose work in unauthorized activity detection and eCommerce authentication has made a significant impact on digital security. His innovative patents and collaborations reflect his commitment to advancing technology in these critical areas.