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Renwang Li
dblp:21/10148
· DBLP profile ↗
8ranked-venue papers
4as first author
7since 2021 · last 2024
0000-0002-4499-4647ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 7 · 4 first-author · 7 since 2021Human-computer interaction and ubiquitous computing · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | IRS Aided Millimeter-Wave Sensing and Communication: Beam Scanning, Beam Splitting, and Performance AnalysisabstractIntegrated sensing and communication (ISAC) has attracted growing interests for enabling the future 6G wireless networks, due to its capability of sharing spectrum and hardware resources between communication and sensing systems. However, existing works on ISAC usually need to modify the communication protocol to cater for the new sensing performance requirement, which may be difficult to implement in practice. In this paper, we study a semi-passive intelligent reflecting surface (IRS) aided millimeter-wave (mmWave) ISAC system by exploiting the established beam scanning operation for simultaneous mmWave communications and sensing. First, we propose a two-phase ISAC protocol, consisting of beam scanning and data transmission. Specifically, in the beam scanning phase, the semi-passive IRS finds the optimal beam for reflecting signals from the base station to a communication user via its passive elements and, meanwhile, directly estimates the angle of a nearby target based on echo signals from the target using its active sensing elements. In the data transmission phase, the sensing accuracy is further improved by leveraging the data signals via possible IRS beam splitting. Next, we derive the achievable rate of the communication user as well as the Cramér-Rao bound and the approximate mean square error of the target angle estimation. Finally, extensive simulation results are provided to verify our analysis as well as the effectiveness of the proposed scheme. Renwang Li, Xiaodan Shao, Shu Sun 0001, Meixia Tao, Rui Zhang 0006 |
IEEE Trans. Wirel. Commun. | 1 |
| 2023 | Hybrid Spherical- and Planar-Wave Channel Modeling and Estimation for Terahertz Integrated UM-MIMO and IRS SystemsabstractIntegrated ultra-massive multiple-input multiple-output (UM-MIMO) and intelligent reflecting surface (IRS) systems are promising for 6G and beyond Terahertz (0.1-10 THz) communications, to effectively bypass the barriers of limited coverage and line-of-sight blockage. However, excessive dimensions of UM-MIMO and IRS enlarge the near-field region, while strong THz channel sparsity in the far-field is detrimental to spatial multiplexing. Moreover, channel estimation (CE) requires recovering the large-scale channel from severely compressed observations due to limited RF-chains. To tackle these challenges, a hybrid spherical- and planar-wave channel model (HSPM) is introduced for the cascaded channel of the integrated system. The spatial multiplexing gains under near-field and far-field regions are analyzed, which are found to be limited by the segmented channel with a lower rank. Furthermore, a compressive sensing-based CE framework is developed, including a sparse channel representation method, a separate-side estimation (SSE) and a dictionary-shrinkage estimation (DSE) algorithms. Numerical results verify the effectiveness of the HSPM, the capacity of which is only$5\times 10^{-4}$bits/s/Hz deviated from that obtained by the ground-truth spherical-wave-model, with 256 elements. While the SSE achieves improved accuracy for CE than benchmark algorithms, the DSE is more attractive in noisy environments, with 1 dB lower normalized-mean-square error than SSE. Renwang Li, Chong Han 0001, Shu Sun 0001, Meixia Tao |
IEEE Trans. Wirel. Commun. | 2 |
| 2023 | Ergodic Achievable Rate Analysis and Optimization of RIS-Assisted Millimeter-Wave MIMO Communication SystemsabstractReconfigurable intelligent surfaces (RISs) have emerged as a prospective technology for next-generation wireless networks due to their potential in coverage and capacity enhancement. Previous works on achievable rate analysis of RIS-assisted communication systems have mainly focused on the rich-scattering environment where Rayleigh and Rician channel models can be applied. This work studies the ergodic achievable rate of RIS-assisted multiple-input multiple-output communication systems in the millimeter-wave band with limited scattering under the Saleh-Valenzuela channel model. Firstly, we derive an upper bound of the ergodic achievable rate by means of majorization theory and Jensen’s inequality. The upper bound shows that the ergodic achievable rate increases logarithmically with the number of antennas at the base station (BS) and user, the number of the reflection units at the RIS, and the eigenvalues of the steering matrices associated with the BS, user and RIS. Then, we aim to maximize the ergodic achievable rate by jointly optimizing the transmit covariance matrix at the BS and the reflection coefficients at the RIS. Specifically, the transmit covariance matrix is optimized by the water-filling algorithm and the reflection coefficients are optimized using the Riemannian conjugate gradient algorithm. Simulation results validate the effectiveness of the proposed optimization algorithms. Renwang Li, Shu Sun 0001, Chong Han 0001, Meixia Tao |
IEEE Trans. Wirel. Commun. | 1 |
| 2023 | Ergodic Achievable Rate Maximization of RIS-Assisted Millimeter-Wave MIMO-OFDM Communication SystemsabstractReconfigurable intelligent surface (RIS) has attracted extensive attention in recent years. However, most research focuses on the scenario of the narrowband and/or instantaneous channel state information (CSI), while wide bandwidth with the use of millimeter-wave (mmWave) (including sub-Terahertz) spectrum is a major trend in next-generation wireless communications, and statistical CSI is more practical to obtain in realistic systems. Thus, we consider the ergodic achievable rate of RIS-assisted mmWave multiple-input multiple-output orthogonal frequency division multiplexing communication systems. The widely used Saleh-Valenzuela channel model is adopted to characterize the mmWave channels and only the statistical CSI is available. We first derive the approximations of the ergodic achievable rate by means of the majorization theory and Jensen’s inequality. Then, an alternating optimization based algorithm is proposed to maximize the ergodic achievable rate by jointly designing the transmit covariance matrix at the base station and the reflection coefficients at the RIS. Specifically, the design of the transmit covariance matrix is transformed into a power allocation problem and solved by spatial-frequency water-filling. The reflection coefficients are optimized by the Riemannian conjugate gradient algorithm. Simulation results corroborate the effectiveness of the proposed algorithms. Renwang Li, Shu Sun 0001, Meixia Tao |
IEEE Trans. Wirel. Commun. | 1 |
| 2022 | Hybrid Spherical- and Planar-Wave Channel Modeling and Spatial Multiplexing Analysis for Terahertz Integrated UM-MIMO and IRS SystemsabstractTerahertz (0.1-10 THz) communications are envisioned as a key technology for 6G ultra-high-speed wireless systems, by offering an ultra-broad bandwidth. Integrated ultramassive multiple-input multiple-output (UM-MIMO) and intelligent reflecting surface (IRS) systems are promising for THz communications, to effectively bypass the barrier of limited coverage and line-of-sight blockage. Two challenges arise. First, the huge dimension of the antenna array in UM-MIMO and IRS in contrast with the sub-millimeter wavelength enlarge the nearfield region. Second, strong channel sparsity in THz channels could be detrimental to spatial multiplexing gain and thereby capacity. In this work, a hybrid spherical- and planar-wave channel model (HSPM) is developed for the cascaded channel of the THz integrated UM-MIMO and IRS system. Furthermore, the spatial multiplexing gain under near-field and far-field cases are analyzed, which is proved to be limited by the segment of the cascaded channel with a lower rank, and can be improved based on the widely-space architecture design of UM-MIMO and IRS. Performance evaluation reveals that the proposed HSPM can accurately capture the propagation features of the THz integrated UM-MIMO and IRS system. Numerically, when the array size is 256, the capacity based on the HSPM is only 3 × 10−4bits/s/Hz less than that obtained by the ground-truth spherical-wave model. Renwang Li, Chong Han 0001, Meixia Tao |
ICC | 2 |
| 2022 | Joint Design of Hybrid Beamforming and Reflection Coefficients in RIS-Aided mmWave MIMO SystemsabstractThis paper considers a reconfigurable intelligent surface (RIS)-aided millimeter wave (mmWave) downlink communication system where hybrid analog-digital beamforming is employed at the base station (BS). We formulate a power minimization problem by jointly optimizing hybrid beamforming at the BS and the response matrix at the RIS, under the signal-to-interference-plus-noise ratio (SINR) constraints at all users. The problem is highly challenging to solve due to the non-convex SINR constraints as well as the unit-modulus phase shift constraints for both the RIS reflection coefficients and the analog beamformer. A two-layer penalty-based algorithm is proposed to decouple variables in SINR constraints, and manifold optimization is adopted to handle the non-convex unit-modulus constraints. We also propose a low-complexity sequential optimization method, which optimizes the RIS reflection coefficients, the analog beamformer, and the digital beamformer sequentially without iteration. Furthermore, the relationship between the power minimization problem and the max-min fairness (MMF) problem is discussed. Simulation results show that the proposed penalty-based algorithm outperforms the state-of-the-art semidefinite relaxation (SDR)-based algorithm. Results also demonstrate that the RIS plays an important role in the power reduction. Renwang Li, Bei Guo, Meixia Tao, Ya-Feng Liu, Wei Yu 0001 |
IEEE Trans. Commun. | 1 |
| 2021 | Joint Design of Hybrid Beamforming and Phase Shifts in RIS-Aided mmWave Communication SystemsabstractThis paper considers a reconfigurable intelligent surface (RIS)-aided millimeter wave (mmWave) downlink communication system where hybrid analog-digital beamforming is employed at the base station (BS). We formulate a power minimization problem by jointly optimizing hybrid beamforming at the BS and the response matrix at the RIS, under signal-to-interference-plus-noise ratio (SINR) constraints. The problem is highly challenging due to the non-convex SINR constraints as well as the non-convex unit-modulus constraints for both the phase shifts at the RIS and the analog beamforming at the BS. A penalty-based algorithm in conjunction with the manifold optimization technique is proposed to handle the problem, followed by an individual optimization method with much lower complexity. Simulation results show that the proposed algorithm outperforms the state-of-art algorithm. Results also show that the joint optimization of RIS response matrix and BS hybrid beamforming is much superior to individual optimization. Bei Guo, Renwang Li, Meixia Tao |
WCNC | 2 |
| 2012 | Application of BP neural network to sale forecast for H companyabstractThe aim of the work presented in this article is to make sales forecasting as accurate as possible through the use of BP artificial neural network. Firstly, this article introduces the basic principles of BP artificial neural network, and constructs a sales forecasting model based on the theory of BP artificial neural network. Then, with the help of MATLAB, we obtained the predicted sales data using this model, and compared it with the actual sales data, the results showed a highly degree of consistency. BP neural network is a precise program can get satisfactory results in sales forecasting. Renwang Li, Zhaohui Shang, Xiulan Chen, Canlin Mo |
CSCWD | 2 |