This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Carleton University directory, so their courses and email address may be missing. Find their university profile.
Research
Latest papers
A Time Delay Neural Network Based Technique for Nonlinear Microwave Device Modeling.
Micromachines · 2020
Novel Decomposition Technique on Rational-Based Neuro-Transfer Function for Modeling of Microwave Components.
Micromachines · 2020 · senior author
Latest funding
- $118,000
Advanced Machine Learning Based Modeling and Optimization Technologies for Design of High Frequency Electronic Components and Packages
NSERC · 2023 · Principal investigator
- $104,000
Knowledge-based approach to electromagnetic parametric modeling and optimization of high-speed electronic packages
NSERC · 2018 · Principal investigator
- $25,000
Scalable Models for Microwave Antennas Using Neural Networks and Space Mapping**
NSERC · 2018 · Principal investigator
2 publications.
A Time Delay Neural Network Based Technique for Nonlinear Microwave Device Modeling.
Liu W, Zhu L, Feng F, Zhang W, Zhang QJ, Lin Q, Liu G
Novel Decomposition Technique on Rational-Based Neuro-Transfer Function for Modeling of Microwave Components.
Zhao Z, Feng F, Zhang J, Zhang W, Jin J, Ma J, Zhang QJ
Advanced Machine Learning Based Modeling and Optimization Technologies for Design of High Frequency Electronic Components and Packages
Principal investigators: Zhang, Qi-jun
Keywords: modeling; optimization; microwave and millimeter-wave; electromagnetics; microwave device modeling; neural networks; machine learning; artificial intelligence; semiconductor devices; microwave filters
Knowledge-based approach to electromagnetic parametric modeling and optimization of high-speed electronic packages
Principal investigators: Zhang, Qijun
Scalable Models for Microwave Antennas Using Neural Networks and Space Mapping**
Principal investigators: Zhang, Qijun
Advanced Statistical Modeling and Optimization Technologies for Yield-Driven Design of High-Frequency Electronic Circuits
Principal investigators: Zhang, Qi-jun
Cognition-Driven Modeling and Optimization Technology for Multi-Disciplinary Design of High-Frequency Components and Communication Subsystems
Principal investigators: Zhang, QiJun
Advanced modeling and optimization methodologies for design of high-frequency electronic components and subsystems
Principal investigators: Zhang, QiJun
Knowlegde=Based modeling and Optimization Technology Towards Multi-Discilinary Design of High-Frequency Components and Communication Subsystems
Principal investigators: Zhang, QiJun
Computation platforms for modeling and optimization of high-frequency/high-speed components and systems in communication networks
Principal investigators: Zhang, QiJun
High-performance design algorithms and methodologies for mixed-domain high-speed circuits and systems
Principal investigators: Nakhla, Michel
Neuro-space mapping modeling technologies and engines for design of high-frequency components and communication subsystems
Principal investigators: Zhang, QiJun
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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