VLDB 2026 Research / reviewers in the wild / expert
Yuanming Tian
dblp:298/9571
· DBLP profile ↗
7ranked-venue papers
2as first author
7since 2021 · last 2026
—ORCID · conflict
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 5 · 1 first-author · 5 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Receiver Selection and Transmit Beamforming for Multi-Static Integrated Sensing and CommunicationsabstractNext-generation wireless networks are expected to develop a novel paradigm of integrated sensing and communications (ISAC) to enable both the high-accuracy sensing and high-speed communications. However, conventional mono-static ISAC systems, which simultaneously transmit and receive at the same equipment, may suffer from severe self-interference, and thus significantly degrade the system performance. To address this issue, this paper studies a multi-static ISAC system for cooperative target localization and communications, where the transmitter transmits ISAC signal to multiple receivers (REs) deployed at different positions. We derive the closed-form of weighted sum Cramér-Rao bound (CRB) on the joint estimations of both the transmission delay and Doppler shift for cooperative target localization, and the weighted sum CRB minimization problem is formulated by considering the cooperative cost and communication rate requirements for the REs. To solve this problem, we first decouple it into two subproblems for RE selection and transmit beamforming, respectively. Then, a minimax linkage-based method is proposed to solve the RE selection subproblem, and a successive convex approximation algorithm is adopted to deal with the transmit beamforming subproblem with non-convex constraints. Finally, numerical results validate our analysis and reveal that our proposed multi-static ISAC scheme achieves better ISAC performance than the conventional mono-static ones with ideal SI cancellation when the number of cooperative REs is large. Dan Wang 0009, Yuanming Tian, Chuan Huang 0001, Hao Chen 0013, Xiaodong Xu 0001, Ping Zhang 0003 |
IEEE Trans. Commun. | 2 |
| 2025 | Design and Performance of Resonant Beam Communications - Part I: Quasi-Static ScenarioabstractThis two-part paper studies a point-to-point resonant beam communication (RBCom) system, where two separately deployed retroreflectors are adopted to generate the resonant beam between the transmitter and the receiver, and analyzes the transmission rate of the considered system under both the quasi-static and mobile scenarios. Part I of this paper focuses on the quasi-static scenario where the locations of the transmitter and the receiver are relatively fixed. Specifically, we propose a new information-bearing scheme which adopts a synchronization-based amplitude modulation method to mitigate the echo interference caused by the reflected resonant beam. With this scheme, we show that the quasi-static RBCom channel is equivalent to a Markov channel and can be further simplified as an amplitude-constrained additive white Gaussian noise channel. Moreover, we develop an algorithm that jointly employs the bisection and exhaustive search to maximize its capacity upper and lower bounds. Finally, numerical results validate our analysis. Part II of this paper discusses the performance of the RBCom system under the mobile scenario. Dongxu Li 0001, Yuanming Tian, Chuan Huang 0001, Qingwen Liu 0001, Shengli Zhou 0001 |
IEEE Trans. Mob. Comput. | 2 |
| 2024 | Transmit Beamforming and User Selection for Multi-Static Integrated Sensing and CommunicationsabstractThis paper studies a multi-static integrated sensing and communications (ISAC) system for multi-user downlink communications and cooperative target sensing, where the base station transmits ISAC signal and the users deployed at different positions receive it. We analyze the joint estimation of transmission delay and Doppler shift of cooperative users for target sensing, and derive the corresponding Cramér-Rao bound (CRB) in closed form. Then, a CRB minimization problem is formulated by considering the cooperative cost and communication rate requirements among these users. To solve this problem, we propose a minimax linkage-based cooperative method for user selection, and then design an approximation non-convex transforming algorithm for transmit beamforming. Finally, simulation results validate our analysis and reveal significant performance improvement of our proposed methods over the state-of-the-art benchmarks. Dan Wang 0009, Yuanming Tian, Chuan Huang 0001, Hao Chen 0013, Xiaodong Xu 0001 |
PIMRC | 2 |
| 2024 | Backscatter Communication System for Integrated Sensing and CommunicationsabstractThis paper studies a multi-user backscatter communication (BackCom) system for integrated sensing and communications (ISAC), where the ISAC transmitter sends excitation signals to power multiple passive backscatter devices (BD), and the ISAC receiver performs joint sensing (localization) and communication tasks based on the backscattered signals from all BDs. Specifically, the localization performance is characterized by the Cramér-Rao bound (CRB) on the transmission delay and direction of arrival (DoA) of the backscattered signals, whose closed-form expression is obtained by deriving the corresponding Fisher information matrix (FIM), and the communication performance is characterized by the sum transmission rate of all BDs. Then, a CRB minimization problem is formulated by considering the communication rate constraint, and is shown to be non-convex in general. To solve this problem, we propose an approach that combines fractional programming (FP) and Schur complement techniques to transform the original problem into an equivalent convex form. Finally, numerical results reveal the trade-off between the localization and communication performances. Yuanming Tian, Dan Wang 0009, Chuan Huang 0001, Wei Zhang 0001 |
PIMRC | 1 |
| 2024 | Design and Performance of Resonant Beam Communications - Part II: Mobile ScenarioabstractThis two-part paper focuses on the system design and performance analysis for a point-to-point resonant beam communication (RBCom) system under both the quasi-static and mobile scenarios. Part I of this paper proposes a synchronization-based information transmission scheme and derives the capacity upper and lower bounds for the quasi-static channel case. In Part II, we address the mobile scenario, where the receiver is in relative motion to the transmitter, and derive a mobile RBCom channel model that jointly considers the Doppler effect, channel variation, and echo interference. With the obtained channel model, we prove that the channel gain of the mobile RBCom decreases as the number of transmitted frames increases, and thus show that the considered mobile RBCom terminates after the transmitter sends a certain number of frames without frequency compensation. By deriving an upper bound on the number of successfully transmitted frames, we formulate the throughput maximization problem for the considered mobile RBCom system, and solve it via a sequential parametric convex approximation (SPCA) method. Finally, simulation results validate the analysis of our proposed method in some typical scenarios. Dongxu Li 0001, Yuanming Tian, Chuan Huang 0001, Qingwen Liu 0001, Shengli Zhou 0001 |
IEEE Trans. Mob. Comput. | 2 |
| 2024 | Performance Trade-Off of Integrated Sensing and Communications for Multi-User Backscatter SystemsabstractThis paper studies the performance trade-off in a multi-user backscatter communication (BackCom) system for integrated sensing and communications (ISAC), where the multi-antenna ISAC transmitter sends excitation signals to power multiple single-antenna passive backscatter devices (BD), and the multi-antenna ISAC receiver performs joint sensing (localization) and communication tasks based on the backscattered signals from all BDs. Specifically, the localization performance is measured by the Cramér-Rao bound (CRB) on the transmission delay and direction of arrival (DoA) of the backscattered signals, whose closed-form expression is obtained by deriving the corresponding Fisher information matrix (FIM), and the communication performance is characterized by the sum transmission rate of all BDs. Then, to characterize the trade-off between the localization and communication performances, the CRB minimization problem with the communication rate constraint is formulated, and is shown to be non-convex in general. By exploiting the hidden convexity, we propose an approach that combines fractional programming (FP) and Schur complement techniques to transform the original problem into an equivalent convex form. Finally, numerical results reveal the trade-off between the CRB and sum transmission rate achieved by our proposed method. Yuanming Tian, Dan Wang 0009, Chuan Huang 0001, Wei Zhang 0001 |
IEEE Trans. Wirel. Commun. | 1 |
| 2021 | Capacity Analysis of Mobile Resonant Beam CommunicationsabstractResonant beam communication (RBCom) is a promising technology to satisfy the need for high data rate mobile communication. In this paper, we present the system model of kilometer-level RBCom by analyzing the resonant beam in one complete reflection round. Then, we derive the channel capacity for the scenario that the receiver moves in a fixed direction at a constant velocity. Numerical and simulation results reveal that the channel capacity decreases dramatically after a certain duration due to the cumulative doppler shift. Dongxu Li 0001, Yuanming Tian, Chuan Huang 0001 |
ICC | 2 |