Zhiqiang Wei

About Zhiqiang Wei

Zhiqiang Wei, With an exceptional h-index of 33 and a recent h-index of 32 (since 2020), a distinguished researcher at Friedrich-Alexander-Universität Erlangen-Nürnberg, specializes in the field of OTFS, NOMA, Resource Allocation Design.

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

Optimal Ber Minimum Precoder Design for OTFS-Based ISAC Systems

Fundamentals of Delay-Doppler Communications: Practical Implementation and Extensions to OTFS

Toward 6G MultiCell orthogonal time frequency space Systems: Interference Coordination and Cooperative Communications

Integrated Sensing, Navigation, and Communication for Secure UAV Networks with a Mobile Eavesdropper

On the pulse shaping for delay-Doppler communications

Sensing-enhanced secure communication: Joint time allocation and beamforming design

Direction-of-arrival estimation for constant modulus signals using a structured matrix recovery technique

Source Localization for Constant Modulus Signals Using a Structured Matrix Recovery Technique (SMART)

Zhiqiang Wei Information

University

Position

___

Citations(all)

4163

Citations(since 2020)

3945

Cited By

996

hIndex(all)

33

hIndex(since 2020)

32

i10Index(all)

51

i10Index(since 2020)

51

Email

University Profile Page

Google Scholar

Zhiqiang Wei Skills & Research Interests

OTFS

NOMA

Resource Allocation Design

Top articles of Zhiqiang Wei

Optimal Ber Minimum Precoder Design for OTFS-Based ISAC Systems

2024/4/14

Fundamentals of Delay-Doppler Communications: Practical Implementation and Extensions to OTFS

arXiv preprint arXiv:2403.14192

2024/3/21

Toward 6G MultiCell orthogonal time frequency space Systems: Interference Coordination and Cooperative Communications

IEEE Vehicular Technology Magazine

2024/1/9

Integrated Sensing, Navigation, and Communication for Secure UAV Networks with a Mobile Eavesdropper

IEEE Transactions on Wireless Communications

2023/12/5

On the pulse shaping for delay-Doppler communications

2023/12/4

Sensing-enhanced secure communication: Joint time allocation and beamforming design

2023/8/24

Direction-of-arrival estimation for constant modulus signals using a structured matrix recovery technique

IEEE Transactions on Wireless Communications

2023/8/22

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Source Localization for Constant Modulus Signals Using a Structured Matrix Recovery Technique (SMART)

2023/7/2

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

New delay Doppler communication paradigm in 6G era: A survey of orthogonal time frequency space (OTFS)

China Communications

2023/6/14

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Haijun Zhang
Haijun Zhang

H-Index: 37

Rate-Distortion Tradeoff of Bistatic Integrated Sensing and Communication

arXiv preprint arXiv:2306.06648

2023/6/11

New reweighted atomic norm minimization approach for line spectral estimation

Signal Processing

2023/5/1

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Near Optimal Hybrid Digital-Analog Beamforming for Point-to-Point MIMO-OTFS Transmissions

2023/3/26

SDR System Design and Implementation on Delay-Doppler Communications and Sensing

2023/3/26

Fan Liu
Fan Liu

H-Index: 4

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Genetic Algorithm for Sparse Optimization of Mills Cross Array Used in Underwater Acoustic Imaging

Journal of Marine Science and Engineering

2022/2

Hu Yang
Hu Yang

H-Index: 13

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Faster-than-Nyquist Asynchronous NOMA Outperforms Synchronous NOMA

IEEE Journal on Selected Areas in Communications

2022/1/14

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Baoming Bai
Baoming Bai

H-Index: 15

Scalable Predictive Beamforming for IRS-Assisted Multi-User Communications: A Deep Learning Approach

arXiv preprint arXiv:2211.12644

2022/11/23

Orthogonal time frequency space modulation—Part III: ISAC and potential applications

IEEE Communications Letters

2022/9/26

Orthogonal time frequency space modulation—Part I: Fundamentals and challenges ahead

IEEE Communications Letters

2022/9/26

Trajectory Design and Resource Allocation for UAV-Enabled Data Collection in Wireless Sensor Networks with 3D Blockages

2022/7/6

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Chang Liu
Chang Liu

H-Index: 7

Resource allocation and 3D trajectory design for power-efficient IRS-assisted UAV-NOMA communications

IEEE Transactions on Wireless Communications

2022/6/22

Zhiqiang Wei
Zhiqiang Wei

H-Index: 16

Chang Liu
Chang Liu

H-Index: 7

See List of Professors in Zhiqiang Wei University(Friedrich-Alexander-Universität Erlangen-Nürnberg)

Co-Authors

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