Jian-Ming Jin

Jian-Ming Jin

University of Illinois at Urbana-Champaign

H-index: 67

North America-United States

About Jian-Ming Jin

Jian-Ming Jin, With an exceptional h-index of 67 and a recent h-index of 28 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of Computational Electromagnetics.

His recent articles reflect a diverse array of research interests and contributions to the field:

A Hybrid Electromagnetic Optimization Method Based on Physics-Informed Machine Learning

Systems and methods for generating an optimized acoustic wave (aw) resonator using the finite element tearing and interconnecting (feti) method

Physics-Informed Machine Learning for Hybrid Optimization of Microwave and RF Devices

Efficient 3D Finite Element Modeling of Periodic XBAR Resonators

Guest editorial machine learning in antenna design, modeling, and measurements

Physics-embedded machine learning for efficient modeling of high-frequency circuits

Electromagnetic-thermal modeling of nonlinear magnetic materials

Efficient Broadband Modeling of Microwave Devices with Machine Learning and Analytical Extension of Eigenvalues

Jian-Ming Jin Information

University

Position

Professor of Electrical and Computer Engineering

Citations(all)

28073

Citations(since 2020)

6163

Cited By

24764

hIndex(all)

67

hIndex(since 2020)

28

i10Index(all)

248

i10Index(since 2020)

116

Email

University Profile Page

University of Illinois at Urbana-Champaign

Google Scholar

View Google Scholar Profile

Jian-Ming Jin Skills & Research Interests

Computational Electromagnetics

Top articles of Jian-Ming Jin

Title

Journal

Author(s)

Publication Date

A Hybrid Electromagnetic Optimization Method Based on Physics-Informed Machine Learning

IEEE Journal on Multiscale and Multiphysics Computational Techniques

Yanan Liu

Hongliang Li

Jian-Ming Jin

2024/4/5

Systems and methods for generating an optimized acoustic wave (aw) resonator using the finite element tearing and interconnecting (feti) method

2024/4/25

Physics-Informed Machine Learning for Hybrid Optimization of Microwave and RF Devices

Yanan Liu

Jian-Ming Jin

2023/10/9

Efficient 3D Finite Element Modeling of Periodic XBAR Resonators

IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control

Hongliang Li

Julius Koskela

Jackson W Massey

Balam Willemsen

Jian-Ming Jin

2023/5/17

Guest editorial machine learning in antenna design, modeling, and measurements

IEEE Transactions on Antennas and Propagation

Francesco Andriulli

Pai-Yen Chen

Danilo Erricolo

Jian-Ming Jin

2022/7/27

Physics-embedded machine learning for efficient modeling of high-frequency circuits

Yanan Liu

Hongliang Li

Jian-Ming Jin

2022/7/10

Electromagnetic-thermal modeling of nonlinear magnetic materials

IEEE Journal on Multiscale and Multiphysics Computational Techniques

Hongliang Li

Philip T Krein

Jian-Ming Jin

2022/12/16

Efficient Broadband Modeling of Microwave Devices with Machine Learning and Analytical Extension of Eigenvalues

Yanan Liu

Hongliang Li

Jian-Ming Jin

2022/9/5

Heterogeneous transfer‐learning‐enabled diverse metasurface design

Advanced Optical Materials

Jie Zhang

Chao Qian

Zhixiang Fan

Jieting Chen

Erping Li

...

2022/9

Quasi‐static numerical modeling of miniature RF circuits based on lumped equivalent circuits

International Journal of Numerical Modelling: Electronic Networks, Devices and Fields

Hongliang Li

Jian‐Ming Jin

Doug Jachowski

Richard Silver

Robert Hammond

2021/1

Accelerated numerical modeling of RF circuits using network characteristic mode analysis

International Journal of Numerical Modelling: Electronic Networks, Devices and Fields

Hongliang Li

Jian‐Ming Jin

Amir Hajiaboli

Douglas R Jachowski

2021/11

Demonstration of Spider‐Eyes‐Like Intelligent Antennas for Dynamically Perceiving Incoming Waves

Advanced Intelligent Systems

Zhedong Wang

Chao Qian

Tong Cai

Longwei Tian

Zhixiang Fan

...

2021/9

Second-order analytic extension of eigenvalues for fast frequency sweep analysis of RF circuits

IEEE Transactions on Microwave Theory and Techniques

Hongliang Li

Jian-Ming Jin

Douglas R Jachowski

Robert B Hammond

2021/2/15

Fast frequency sweep analysis of passive miniature RF circuits based on analytic extension of eigenvalues

IEEE Transactions on Microwave Theory and Techniques

Hongliang Li

Jian-Ming Jin

Douglas R Jachowski

Robert B Hammond

2020/10/28

Electrical–thermal cosimulation of coaxial TSVs with temperature-dependent MOS effect using equivalent circuit models

IEEE Transactions on Electromagnetic Compatibility

Qiu Min

Er-Ping Li

Jian-Ming Jin

Wenchao Chen

2020/3/2

Efficient large‐scale scattering analysis of objects in a stratified medium

International Journal of Numerical Modelling: Electronic Networks, Devices and Fields

Kedi Zhang

Lynford L Goddard

Jian‐Ming Jin

2020/3

An enhanced transient solver with dynamic p‐adaptation and multirate time integration for electromagnetic and multiphysics simulations

International Journal of Numerical Modelling: Electronic Networks, Devices and Fields

Su Yan

Jian‐Ming Jin

2019/6/6

See List of Professors in Jian-Ming Jin University(University of Illinois at Urbana-Champaign)

Co-Authors

H-index: 78
John L. Volakis

John L. Volakis

Florida International University

H-index: 63
Richard L. Magin

Richard L. Magin

University of Illinois at Chicago

H-index: 42
Jiming Song

Jiming Song

Iowa State University

H-index: 36
Hakan Bagci

Hakan Bagci

King Abdullah University of Science and Technology

H-index: 8
Jian Guan

Jian Guan

University of Illinois at Urbana-Champaign

academic-engine