Company Filing History:
Years Active: 2007-2014
Title: Innovations by Mary Chion in Wireless Communication
Introduction
Mary Chion is a prominent inventor based in Belle Mead, NJ (US), known for her significant contributions to wireless communication technologies. With a total of 16 patents to her name, she has developed innovative techniques that enhance the efficiency and effectiveness of wireless communication systems.
Latest Patents
Among her latest patents is a technique for providing efficient transmit diversity and bandwidth segmentation in a wireless communication system. This invention focuses on wireless communication techniques for cellular deployment, allowing transmitters in each cell to have partially overlapped transmission patterns between adjacent transmitters. The implementations of these techniques can provide transmit diversity with intentional partial beam pattern overlays, improving cell sectorization and frequency reuse while reducing intra-cell and inter-cell interference. Various modulation schemes, including FDMA, TDMA, and OFDMA, can be utilized in these systems. Another notable patent is related to subcarrier cluster-based power control in wireless communications. This invention involves devices, systems, and techniques to monitor signal fading based on a cluster of subcarriers at a receiver, providing feedback to a transmitter in wireless communication systems such as OFDM and OFDMA.
Career Highlights
Mary Chion has worked with notable companies in the field, including ZTE (USA) Inc. and ZTEIT USA, Inc. Her work has significantly impacted the development of advanced wireless communication technologies.
Collaborations
Throughout her career, Mary has collaborated with talented individuals such as Yonggang Fang and Sean Cai, contributing to the advancement of her innovative projects.
Conclusion
Mary Chion's contributions to wireless communication through her patents and collaborations highlight her role as a leading inventor in the field. Her work continues to influence the development of efficient communication systems.