Jingwei Xu

5.8k total citations · 2 hit papers
238 papers, 4.5k citations indexed

About

Jingwei Xu is a scholar working on Aerospace Engineering, Signal Processing and Biomedical Engineering. According to data from OpenAlex, Jingwei Xu has authored 238 papers receiving a total of 4.5k indexed citations (citations by other indexed papers that have themselves been cited), including 187 papers in Aerospace Engineering, 92 papers in Signal Processing and 35 papers in Biomedical Engineering. Recurrent topics in Jingwei Xu's work include Radar Systems and Signal Processing (160 papers), Advanced SAR Imaging Techniques (138 papers) and Direction-of-Arrival Estimation Techniques (90 papers). Jingwei Xu is often cited by papers focused on Radar Systems and Signal Processing (160 papers), Advanced SAR Imaging Techniques (138 papers) and Direction-of-Arrival Estimation Techniques (90 papers). Jingwei Xu collaborates with scholars based in China, United States and Hong Kong. Jingwei Xu's co-authors include Guisheng Liao, Shengqi Zhu, Hing Cheung So, Yuhong Zhang, Lan Lan, Lei Huang, Yongjun Liu, Yanhong Xu, Zhiwei Yang and Xiaowei Shi and has published in prestigious journals such as SHILAP Revista de lepidopterología, The Science of The Total Environment and IEEE Transactions on Geoscience and Remote Sensing.

In The Last Decade

Jingwei Xu

208 papers receiving 4.4k citations

Hit Papers

Joint Range and Angle Estimation Using MIMO Radar With Fr... 2015 2026 2018 2022 2015 2020 100 200 300

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Jingwei Xu China 34 3.8k 1.5k 765 672 312 238 4.5k
Zishu He China 29 3.0k 0.8× 1.1k 0.7× 977 1.3× 322 0.5× 284 0.9× 313 3.6k
Zijing Zhang China 28 1.7k 0.4× 750 0.5× 414 0.5× 396 0.6× 207 0.7× 137 2.3k
Aboulnasr Hassanien United States 30 3.4k 0.9× 1.4k 1.0× 1.4k 1.8× 404 0.6× 196 0.6× 78 4.1k
J.R. Guerci United States 27 3.0k 0.8× 1.5k 1.0× 480 0.6× 305 0.5× 398 1.3× 96 3.5k
Fabiola Colone Italy 29 3.1k 0.8× 471 0.3× 1.2k 1.5× 1.0k 1.6× 291 0.9× 173 3.8k
Xianxiang Yu China 28 2.2k 0.6× 550 0.4× 608 0.8× 241 0.4× 239 0.8× 156 2.5k
Yongliang Wang China 25 2.2k 0.6× 906 0.6× 213 0.3× 387 0.6× 386 1.2× 211 2.5k
S.U. Pillai United States 21 1.7k 0.4× 1.9k 1.3× 781 1.0× 299 0.4× 216 0.7× 79 3.4k
Yujie Gu United States 26 1.6k 0.4× 2.5k 1.7× 945 1.2× 200 0.3× 144 0.5× 77 3.5k
Junpeng Shi China 26 1.5k 0.4× 1.3k 0.9× 532 0.7× 142 0.2× 165 0.5× 118 2.1k

Countries citing papers authored by Jingwei Xu

Since Specialization
Citations

This map shows the geographic impact of Jingwei Xu's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Jingwei Xu with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Jingwei Xu more than expected).

Fields of papers citing papers by Jingwei Xu

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Jingwei Xu. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Jingwei Xu. The network helps show where Jingwei Xu may publish in the future.

Co-authorship network of co-authors of Jingwei Xu

This figure shows the co-authorship network connecting the top 25 collaborators of Jingwei Xu. A scholar is included among the top collaborators of Jingwei Xu based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Jingwei Xu. Jingwei Xu is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Zhu, Shengqi, et al.. (2025). Analysis of interference suppression performance in MR-FDA-MIMO radar. Signal Processing. 230. 109873–109873. 1 indexed citations
2.
Zhu, Shengqi, et al.. (2025). Range-Angle Estimation Using FDA-MIMO Radar With Inter-Pulse Coding Modulation. IEEE Transactions on Vehicular Technology. 74(8). 12089–12102.
3.
Zhu, Shengqi, et al.. (2025). Range Ambiguity Mitigation and Range-Angle Estimation With EPC-FDA-MIMO Radar. IEEE Transactions on Aerospace and Electronic Systems. 61(3). 6280–6294.
4.
Xu, Jingwei, et al.. (2025). Multidimensional Resource Management Optimization Strategy for High-Resolution Multitarget Tracking. IEEE Transactions on Aerospace and Electronic Systems. 61(6). 15492–15507.
5.
Lan, Lan, et al.. (2025). Waveform Design for Moving Target Detection With FDA-MIMO Radar Exploiting Correlation and Doppler Tolerance Properties. IEEE Transactions on Vehicular Technology. 74(8). 11978–11992.
6.
Xu, Jingwei, et al.. (2024). Legal Ethics and Professional Responsibility in the Legal Profession. SHILAP Revista de lepidopterología. 190. 2006–2006. 2 indexed citations
7.
Liu, K., Guisheng Liao, Shengqi Zhu, et al.. (2024). Ground Moving Target Detection With Adaptive Data Reconstruction and Improved Pseudo-Skeleton Decomposition. IEEE Transactions on Geoscience and Remote Sensing. 62. 1–14.
8.
Zhang, Yiqun, et al.. (2024). Mainlobe deceptive jammer suppression based on quadratic pulse coding in FDA-MIMO radar. IET conference proceedings.. 2023(47). 333–337.
9.
Zhu, Shengqi, et al.. (2024). Fast Repeater Deception Jamming Suppression With DFI-FDA-MIMO Radar. IEEE Transactions on Aerospace and Electronic Systems. 60(4). 4271–4284. 5 indexed citations
10.
Zhu, Shengqi, et al.. (2024). Interference Suppression With MR-FDA-MIMO Radar Using Virtual Samples Based Beamforming. IEEE Transactions on Aerospace and Electronic Systems. 60(4). 5211–5225. 10 indexed citations
11.
Gao, Weifeng, et al.. (2023). BiOM: A framework for multimodal multiobjective optimization. Information Sciences. 653. 119750–119750. 7 indexed citations
12.
Zhu, Shengqi, et al.. (2023). Frequency Increment Design Method of MR-FDA-MIMO Radar for Interference Suppression. Remote Sensing. 15(16). 4070–4070. 3 indexed citations
13.
Hao, Ming, et al.. (2023). The effect of thinning intensity on the soil carbon pool mediated by soil microbial communities and necromass carbon in coastal zone protected forests. The Science of The Total Environment. 881. 163492–163492. 20 indexed citations
14.
Lan, Lan, Guisheng Liao, Jingwei Xu, et al.. (2022). Waveform Design and Signal Processing Method of a Multifunctional Integrated System Based on a Frequency Diverse Array. SHILAP Revista de lepidopterología. 1 indexed citations
15.
Xu, Jingwei, Lan Lan, Shengqi Zhu, et al.. (2021). System Design and Signal Processing for Frequency Diverse Array Radar. Journal of Beijing Institute of Technology. 30(1). 1–19. 3 indexed citations
16.
Xu, Jingwei, et al.. (2018). A Range-ambiguous Clutter Suppression Method for MIMO Bistatic Airborne Radar. SHILAP Revista de lepidopterología. 2 indexed citations
17.
Xu, Jingwei, et al.. (2016). High resolution imaging algorithm and performance analysis for ROSAR based on cardano's formula. 38(11). 2517. 1 indexed citations
18.
Liao, Guisheng, et al.. (2016). Modeling and characteristics analysis of space-time clutter for ultralong baseline bistatic airborne radar. 38(10). 2266. 1 indexed citations
19.
Xu, Jingwei, et al.. (2015). Effects of Reentry Plasma Sheath on Mutual-Coupling Property of Array Antenna. International Journal of Antennas and Propagation. 2015. 1–9. 13 indexed citations
20.
Xu, Jingwei. (2006). Fuzzy PID control through optimization: A new method for PID control. Northern Clinics of Istanbul. 6(3). 284–292.

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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