Qui X. Lieu

About Qui X. Lieu

Qui X. Lieu, With an exceptional h-index of 23 and a recent h-index of 21 (since 2020), a distinguished researcher at Ho Chi Minh City University of Technology, specializes in the field of Computational Engineering, Civil Engineering.

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

Tối ưu hệ giằng của khung thép phi tuyến xét liên kết nửa cứng dùng thuật toán tìm kiếm cộng sinh tiến hóa

A novel model order reduction-based two-stage damage detection paradigm for trusses using time–history acceleration

Modified nonlocal couple stress isogeometric approach for bending and free vibration analysis of functionally graded nanoplates

A deep neural network-assisted metamodel for damage detection of trusses using incomplete time-series acceleration

A novel multistage damage detection method for trusses using time-history data based on model order reduction and deep neural network

A novel deep unsupervised learning-based framework for optimization of truss structures

Structural Damage Detection Using Reduced Free Vibration Data and Deep Learning

Collapse Analysis of Inelastic Nonlinear Steel Frames with Bracing System Using Advanced Analysis Method

Qui X. Lieu Information

University

Position

Faculty of Civil Engineering -VNU

Citations(all)

1706

Citations(since 2020)

1517

Cited By

693

hIndex(all)

23

hIndex(since 2020)

21

i10Index(all)

34

i10Index(since 2020)

34

Email

University Profile Page

Google Scholar

Qui X. Lieu Skills & Research Interests

Computational Engineering

Civil Engineering

Top articles of Qui X. Lieu

Tối ưu hệ giằng của khung thép phi tuyến xét liên kết nửa cứng dùng thuật toán tìm kiếm cộng sinh tiến hóa

Tạp chí Khoa học Công nghệ Xây dựng (TCKHCNXD)-ĐHXDHN

2024/2/26

A novel model order reduction-based two-stage damage detection paradigm for trusses using time–history acceleration

Advances in Engineering Software

2023/2/1

Modified nonlocal couple stress isogeometric approach for bending and free vibration analysis of functionally graded nanoplates

Engineering with Computers

2023/2

A deep neural network-assisted metamodel for damage detection of trusses using incomplete time-series acceleration

Expert Systems with Applications

2023/12/15

A novel multistage damage detection method for trusses using time-history data based on model order reduction and deep neural network

Mechanical Systems and Signal Processing

2023/10/1

A novel deep unsupervised learning-based framework for optimization of truss structures

Engineering with Computers

2023/8

Structural Damage Detection Using Reduced Free Vibration Data and Deep Learning

2023/7/19

Collapse Analysis of Inelastic Nonlinear Steel Frames with Bracing System Using Advanced Analysis Method

2023/7/19

Detection of Plastic Hinges in Inelastic Nonlinear Steel Frames Using Deep Learning

2023/7/19

Topology, Size and Shape Optimization of Trusses Under Dynamic Behavior Using Evolutionary Symbiotic Organisms Search

2023/7/19

Damage identification of trusses using limited modal features and ensemble learning

Journal of Science and Technology in Civil Engineering (JSTCE)-HUCE

2023/6/26

A novel data-driven analysis for sequentially formulated plastic hinges of steel frames

Computers & Structures

2023/6/1

A novel robust stress-based multimaterial topology optimization model for structural stability framework using refined adaptive continuation method

Engineering with Computers

2023/5/12

A robust dynamic unified multi-material topology optimization method for functionally graded structures

Structural and Multidisciplinary Optimization

2023/4

Topology optimization using super-resolution image reconstruction methods

Advances in Engineering Software

2023/3/1

Chẩn đoán hư hỏng kết cấu dàn chịu nhiệt độ và tải trọng động dùng tối ưu hóa ngược và học sâu

Tạp chí Khoa học Công nghệ Xây dựng (TCKHCNXD)-ĐHXDHN

2023/2/28

A novel topology framework for simultaneous topology, size and shape optimization of trusses under static, free vibration and transient behavior

Engineering with Computers

2022/12

A single step optimization method for topology, size and shape of trusses using hybrid differential evolution and symbiotic organisms search

Computers & Structures

2022/10/1

Bending and free vibration analyses of multi-directional functionally graded plates in thermal environment: A three-dimensional Isogeometric Analysis approach

Composite Structures

2022/9/1

A robust unsupervised neural network framework for geometrically nonlinear analysis of inelastic truss structures

Applied Mathematical Modelling

2022/7/1

See List of Professors in Qui X. Lieu University(Ho Chi Minh City University of Technology)

Co-Authors

academic-engine