This inventor holds 1 USPTO granted patent. Top assignee: Southeast University. Active years: 2024.
Company Filing History:
Years Active: 2024
Title: Peize Zhang: Innovator in Multipath Parameter Estimation
Introduction
Peize Zhang is a notable inventor based in Suzhou, China. He has made significant contributions to the field of signal processing, particularly in the estimation of dense multipath parameters. His innovative approach has implications for various applications in telecommunications and wireless communications.
Latest Patents
Peize Zhang holds a patent titled "Method for estimating dense multipath parameters by means of multipolarized broadband extended array responses." This patent discloses a method that involves transmitting multiple different signal sequences via a multipolarized antenna array. The method processes received data in multiple snapshots according to known transmitted signals to obtain channel responses of multipolarized antenna components across all frequency points in a frequency band. The process extends the obtained channel response matrices into a large two-dimensional channel response matrix. It also involves acquiring delay parameters regarding multipath propagation and estimating two-dimensional departure and arrival angles. The method further estimates parameters such as cross-polarization ratios, initial phases, and amplitudes of the sub-paths.
Career Highlights
Peize Zhang is affiliated with Southeast University, where he continues to advance his research and development in signal processing technologies. His work has garnered attention for its innovative methodologies and practical applications in enhancing communication systems.
Collaborations
Peize Zhang collaborates with Bensheng Yang, contributing to the advancement of their shared research interests in the field of multipath parameter estimation.
Conclusion
Peize Zhang's contributions to the field of signal processing through his innovative patent demonstrate his expertise and commitment to advancing technology. His work continues to influence the development of more efficient communication systems.
