EDBT 2026 Demo / reviewers in the wild / expert
Chaoying Huang
dblp:235/5424
· DBLP profile ↗
3ranked-venue papers
1as first author
3since 2021 · last 2026
0009-0007-7630-0359ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 3 · 1 first-author · 3 since 2021
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Computer networks
3 papers |
Physical-layer communications · 81% Wireless networking · 16% Network optimization and economics · 3% |
Topics — the 10 heaviest of 11, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Physical-layer communications
reconfigurable intelligent surface |
2.6 | 3 | 2026 | Dual-IRS Aided Near-/Hybrid-Field SWIPT: Passive Beamforming and Independent Antenna Power Splitting Design · IEEE Trans. Commun. 2026 Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive Elements · IEEE Trans. Commun. 2025 Robust Analysis of Full-Duplex Two-Way Space Shift Keying With RIS Systems · IEEE Trans. Commun. 2024 |
Physical-layer communications › beamforming
passive beamforming |
1.0 | 1 | 2026 | Dual-IRS Aided Near-/Hybrid-Field SWIPT: Passive Beamforming and Independent Antenna Power Splitting Design · IEEE Trans. Commun. 2026 |
Wireless networking
simultaneous wireless information and power transfer |
1.0 | 1 | 2026 | Dual-IRS Aided Near-/Hybrid-Field SWIPT: Passive Beamforming and Independent Antenna Power Splitting Design · IEEE Trans. Commun. 2026 |
Physical-layer communications
beamforming |
0.9 | 1 | 2025 | Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive Elements · IEEE Trans. Commun. 2025 |
Physical-layer communications › reconfigurable intelligent surface
hybrid active-passive RIS |
0.9 | 1 | 2025 | Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive Elements · IEEE Trans. Commun. 2025 |
Physical-layer communications › error probability analysis
bit error rate analysis |
0.8 | 1 | 2024 | Robust Analysis of Full-Duplex Two-Way Space Shift Keying With RIS Systems · IEEE Trans. Commun. 2024 |
Physical-layer communications › modulation
index modulation |
0.8 | 1 | 2024 | Robust Analysis of Full-Duplex Two-Way Space Shift Keying With RIS Systems · IEEE Trans. Commun. 2024 |
Physical-layer communications › MIMO › spatial modulation
space shift keying |
0.8 | 1 | 2024 | Robust Analysis of Full-Duplex Two-Way Space Shift Keying With RIS Systems · IEEE Trans. Commun. 2024 |
Wireless networking › network capacity
capacity scaling |
0.3 | 1 | 2025 | Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive Elements · IEEE Trans. Commun. 2025 |
Network optimization and economics › resource allocation › network utility maximization
rate maximization |
0.3 | 1 | 2025 | Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive Elements · IEEE Trans. Commun. 2025 |
Methods — techniques the papers use, named apart from their topics
lagrange duality · 1.0difference of convex programming · 1.0alternating optimization · 1.0placement optimization · 0.9line-of-sight channel model · 0.9monte carlo simulation · 0.8maximum likelihood detection · 0.8gaussian-chebyshev quadrature · 0.8
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Dual-IRS Aided Near-/Hybrid-Field SWIPT: Passive Beamforming and Independent Antenna Power Splitting DesignabstractThis paper proposes a novel dual-intelligent reflecting surface (IRS) aided interference-limited simultaneous wireless information and power transfer (SWIPT) system with independent power splitting (PS), where each receiving antenna applies different PS factors to offer an advantageous trade-off between the useful information and harvested energy.We separately establish the near- and hybrid-field channel models for IRS-reflected links to evaluate the performance gain more precisely and practically. Specifically, we formulate an optimization problem of maximizing the harvested power by jointly optimizing dual-IRS phase shifts, independent PS ratio, and receive beamforming vector in both near- and hybrid-field cases. In the near-field case, the alternating optimization algorithm is proposed to solve the non-convex problem by applying the Lagrange duality method and the difference-of-convex (DC) programming. In the hybrid-field case, we first present an interesting result that the AP-IRS-user channel gains are invariant to the phase shifts of dual-IRS, which allows the optimization problem to be transformed into a convex one. Then, we derive the asymptotic performance of the combined channel gains in closed-form and analyze the characteristics of the dual-IRS. Numerical results validate our analysis and indicate the performance gains of the proposed scheme that dual-IRS-aided SWIPT with independent PS over other benchmark schemes. Chaoying Huang, Wen Chen 0001, Qingqing Wu 0001, Xusheng Zhu, Ying Wang 0002, Jinhong Yuan |
IEEE Trans. Commun. | 1 |
| 2025 | Joint Size and Placement Optimization for IRS-Aided Communications With Active and Passive ElementsabstractDifferent types of intelligent reflecting surfaces (IRS) are exploited for assisting wireless communications. The joint use of passive IRS (PIRS) and active IRS (AIRS) emerges as a promising solution owing to their complementary advantages. They can be integrated into a single hybrid active-passive IRS (HIRS) or deployed in a distributed manner, which poses challenges in determining the IRS element allocation and placement for rate maximization. In this paper, we investigate the capacity of an IRS-aided wireless communication system with both active and passive elements. Specifically, we consider three deployment schemes: 1) base station (BS)$\rightarrow $HIRS$\rightarrow $user (BHU); 2) BS$\rightarrow $AIRS$\rightarrow $PIRS$\rightarrow $user (BAPU); 3) BS$\rightarrow $PIRS$\rightarrow $AIRS$\rightarrow $user (BPAU). Under the line-of-sight channel model, we formulate a rate maximization problem via a joint optimization of the IRS element allocation and placement. We first derive the optimized number of active and passive elements for BHU, BAPU, and BPAU schemes, respectively. Then, low-complexity HIRS/AIRS placement strategies are provided. To obtain more insights, we characterize the system capacity scaling orders for the three schemes with respect to the large total number of IRS elements, amplification power budget, and BS transmit power. Finally, simulation results are presented to validate our theoretical findings and show the performance difference among the BHU, BAPU, and BPAU schemes with the proposed joint design under various system setups. Qiaoyan Peng, Qingqing Wu 0001, Wen Chen 0001, Chaoying Huang, Beixiong Zheng, Shaodan Ma, Mengnan Jian, Yijian Chen, Jun Yang 0058 |
IEEE Trans. Commun. | 4 |
| 2024 | Robust Analysis of Full-Duplex Two-Way Space Shift Keying With RIS SystemsabstractReconfigurable intelligent surface (RIS)-assisted index modulation system schemes are considered to be a promising technology for sixth-generation (6G) wireless communication systems, which can enhance various system capabilities such as coverage and reliability. However, obtaining perfect channel state information (CSI) is challenging due to the lack of a radio frequency chain in RIS. In this paper, we investigate the RIS-assisted full-duplex (FD) two-way space shift keying (SSK) system under imperfect CSI, where the signal emissions are augmented by deploying RISs in the vicinity of two FD users. The maximum likelihood detector is utilized to recover the transmit antenna index. With this in mind, we derive closed-form average bit error probability (ABEP) expression based on the Gaussian-Chebyshev quadrature (GCQ) method, and provide the upper bound and asymptotic ABEP expressions in the presence of channel estimation errors. To gain more insights, we also derive the outage probability and provide the throughput of the proposed scheme with imperfect CSI. The correctness of the analytical derivation results is confirmed via Monte Carlo simulations. It is demonstrated that increasing the number of elements of RIS can significantly improve the ABEP performance of the FD system over the half-duplex (HD) system. Furthermore, in the high SNR region, the ABEP performance of the FD system is better than that of the HD system. Xusheng Zhu, Wen Chen 0001, Qingqing Wu 0001, Wen Fang 0001, Chaoying Huang, Jun Li 0004 |
IEEE Trans. Commun. | 5 |