VLDB 2026 Research / reviewers in the wild / expert
Yue Ma 0010
dblp:08/6794-10
· DBLP profile ↗
5ranked-venue papers
4as first author
5since 2021 · last 2026
0000-0002-7857-3269ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 4 · 3 first-author · 4 since 2021Artificial intelligence and machine learning · 1 · 1 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Distributed Split Single-Sideband Time-Modulated Arrays for Secure CommunicationsabstractIn recent years, physical layer security (PLS) techniques have been paid considerable attention due to its high-security level and strong compatibility. However, the request of the superior legitimate channel is the Achilles’ Heel of PLS. A significant challenge exists in ensuring information confidentiality when the eavesdropper locates at user’s direction in the multi-antenna system. To overcome this limitation, we propose a novel framework to achieve secure communication via distributed split single sideband (SSB) time modulated array (TMA). By strategically dividing the I/Q paths of the transmitted signals into geographically separated subarrays, we establish the non-aliasing zone to achieve error-free communication for legitimate user (LU), while the eavesdropper positioned in the aliasing zone receives irrecoverably disturbed waveform. To assess performance, we adopt the encoder-decoder-based deep neural network to optimize the time-switching sequence, ensuring the subarrays’ spatial radiation areas overlap exclusively at the LU. A specialized loss function is formulated to enhance the interference-to-signal ratio by increasing the −1stto the +1stharmonic power ratio in non-LU regions. Furthermore, the joint optimization improves security by focusing energy on the LU while generating interference in non-LU areas. The bit error rate (BER) is used as the metric, and the simulation results validate the effectiveness of the proposed method, ensuring reliable transmission and increasing Eve’s BER to approximately 0.5, thereby compromising her ability to intercept the communication. Yue Ma 0010, Ruiqian Ma, Zhi Lin 0001, Chen Miao, Ruoyu Zhang 0001, Weijun Long, Wen Wu 0005, Jiangzhou Wang |
IEEE Internet Things J. | 1 |
| 2025 | Improving Age of Information for Covert Communication With Time-Modulated ArraysabstractPhased array (PA) has received considerable attention as a representative multiantenna technique due to its inherent advantages of superior directionality, spatial multiplexing capabilities, and robust anti-jamming characteristics. However, PA suffers from relatively high hardware complexity and power consumption. As a low-complexity array technology with excellent beamforming capability, time modulated array (TMA) has attracted much attention in recent years. In this article, we exploit a TMA for enhancing the Age of Information (AoI) of covert communication. Specifically, we first propose the transmitter structures and the corresponding beamforming methods for the TMA scheme and the PA scheme as a benchmark. Subsequently, the closed-form expressions of the Kullback-Leibler (KL) divergence is derived to serve as the quantitative measure of communication covertness under both schemes, based on which the average covert AoI (CAoI) is derived to jointly characterize the covertness and timeliness performance. Then, to minimize the average CAoI, the optimization problems of the block-length and beamforming parameters for both the TMA and PA schemes are formulated and solved. Finally, the numerical results are provided to show that the proposed TMA scheme surpasses the PA scheme in terms of both the convergence rate and the average CAoI. Yue Ma 0010, Ruiqian Ma, Zhi Lin 0001, Ruoyu Zhang 0001, Yueming Cai, Wen Wu 0005, Jiangzhou Wang |
IEEE Internet Things J. | 1 |
| 2025 | Adaptive connected hybrid beamforming for energy efficiency maximization in multi-user millimeter wave systems
Ruoyu Zhang 0001, Chen Miao, Yue Ma 0010, Wen Wu 0005 |
Wirel. Networks | 4 |
| 2025 | Enhanced dual lane detection in automotive radar systems using harmonic coordinated beamforming of time-modulated arrays
Yue Ma 0010, Weijun Long, Chen Miao, Qiaoyu Chen, Jin-Dong Zhang, Yingrui Yu, Wen Wu 0005 |
Wirel. Networks | 1 |
| 2022 | Underdetermined DOA estimation exploiting the higher-order cumulants of harmonic steering vector with time-modulated arraysabstractAbstract Time‐modulated arrays (TMAs) have been widely studied owing to their convenient control mode and simple structure. Although direction‐of‐arrival (DOA) estimation based on TMA has garnered considerable attention, underdetermined DOA estimation in TMA is yet to be studied. In this study, a novel method is proposed for underdetermined DOA estimation based on the higher‐order cumulants of harmonic signal in a TMA. The periodic modulation of radio‐frequency switches leads to a TMA generating harmonics in space. Cumulants of harmonic statistics can be used for DOA estimation, and with higher‐order harmonics cumulants, underdetermined DOA estimation can be realised with a TMA using the multiple signal classification method, and the degree of freedom can be improved further. Another advantage of the proposed method is its simple structure, which only requires one receiver with several filters. Numerical simulations show that the proposed method can achieve good resolution and precision performance. Yue Ma 0010, Chen Miao, Wen Wu 0005 |
IET Signal Process. | 1 |