EDBT 2026 Demo / reviewers in the wild / expert
Mengfan Zheng
dblp:154/6740
· DBLP profile ↗
8ranked-venue papers
5as first author
4since 2021 · last 2026
0000-0001-9330-6479ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 4 · 2 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 1 first-author · 1 since 2021Theory of computation · 1 · 1 first-author
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 · 71% Cellular and mobile networks · 21% Wireless networking · 8% | |
| Theoretical computer science
3 papers |
Coding theory · 54% Information theory · 46% | |
| Network and information security
2 papers |
Cryptographic primitives and cryptanalysis · 100% |
Topics — the 26 heaviest of 26, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Cellular and mobile networks
6g |
1.0 | 1 | 2026 | WirelessGPT: A Generative Foundation Model for Multi-Task Integrated Sensing and Communication · IEEE J. Sel. Areas Commun. 2026 |
Physical-layer communications
channel estimation |
1.0 | 1 | 2026 | WirelessGPT: A Generative Foundation Model for Multi-Task Integrated Sensing and Communication · IEEE J. Sel. Areas Commun. 2026 |
Physical-layer communications › channel estimation
channel prediction |
1.0 | 1 | 2026 | WirelessGPT: A Generative Foundation Model for Multi-Task Integrated Sensing and Communication · IEEE J. Sel. Areas Commun. 2026 |
Cellular and mobile networks
integrated sensing and communication |
1.0 | 1 | 2026 | WirelessGPT: A Generative Foundation Model for Multi-Task Integrated Sensing and Communication · IEEE J. Sel. Areas Commun. 2026 |
Information theory › network information theory
interference channel |
0.7 | 2 | 2019 | Polar Coding Strategies for the Interference Channel With Partial-Joint Decoding · IEEE Trans. Inf. Theory 2019 Polar Coding for the Cognitive Interference Channel With Confidential Messages · IEEE J. Sel. Areas Commun. 2018 |
Coding theory › channel coding
polar codes |
0.7 | 2 | 2019 | Polar Coding Strategies for the Interference Channel With Partial-Joint Decoding · IEEE Trans. Inf. Theory 2019 Polar Coding for the Cognitive Interference Channel With Confidential Messages · IEEE J. Sel. Areas Commun. 2018 |
Physical-layer communications
channel coding |
0.6 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Physical-layer communications › signal processing for communications
compressive sensing |
0.6 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Physical-layer communications › channel coding › decoding algorithms › iterative decoding
LDPC decoding |
0.6 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Physical-layer communications › multiple access › random multiple access
massive random access |
0.6 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Wireless networking › random access
unsourced random access |
0.6 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Cryptographic primitives and cryptanalysis
post-quantum cryptography |
0.6 | 1 | 2022 | Quantum-safe cryptography: crossroads of coding theory and cryptography · Sci. China Inf. Sci. 2022 |
Coding theory
code-based cryptography |
0.6 | 1 | 2022 | Quantum-safe cryptography: crossroads of coding theory and cryptography · Sci. China Inf. Sci. 2022 |
Physical-layer communications › physical layer security
covert communication |
0.5 | 1 | 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh Fading · IEEE Trans. Commun. 2021 |
Physical-layer communications › physical layer security › covert communication
covert rate |
0.5 | 1 | 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh Fading · IEEE Trans. Commun. 2021 |
Physical-layer communications
fading channels |
0.5 | 1 | 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh Fading · IEEE Trans. Commun. 2021 |
Physical-layer communications › fading channels
rayleigh fading |
0.5 | 1 | 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh Fading · IEEE Trans. Commun. 2021 |
Information theory › network information theory › interference channel
han-kobayashi scheme |
0.4 | 1 | 2019 | Polar Coding Strategies for the Interference Channel With Partial-Joint Decoding · IEEE Trans. Inf. Theory 2019 |
Coding theory › channel coding
superposition coding |
0.4 | 1 | 2019 | Polar Coding Strategies for the Interference Channel With Partial-Joint Decoding · IEEE Trans. Inf. Theory 2019 |
Wireless networking
collision resolution |
0.2 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Physical-layer communications › interference cancellation
successive interference cancellation |
0.2 | 1 | 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random Access · IEEE J. Sel. Areas Commun. 2022 |
Information theory
information-theoretic security |
0.2 | 1 | 2022 | Quantum-safe cryptography: crossroads of coding theory and cryptography · Sci. China Inf. Sci. 2022 |
Information theory › information-theoretic security
wiretap channel |
0.2 | 1 | 2022 | Quantum-safe cryptography: crossroads of coding theory and cryptography · Sci. China Inf. Sci. 2022 |
Physical-layer communications
full-duplex communication |
0.1 | 1 | 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh Fading · IEEE Trans. Commun. 2021 |
Cryptographic primitives and cryptanalysis
information-theoretic security |
0.1 | 1 | 2018 | Polar Coding for the Cognitive Interference Channel With Confidential Messages · IEEE J. Sel. Areas Commun. 2018 |
Cryptographic primitives and cryptanalysis › information-theoretic security › secrecy constraints
strong secrecy |
0.1 | 1 | 2018 | Polar Coding for the Cognitive Interference Channel With Confidential Messages · IEEE J. Sel. Areas Commun. 2018 |
Methods — techniques the papers use, named apart from their topics
lattice-based cryptography · 1.1code-based cryptography · 1.1polar coding · 1.0triple-axis attention · 1.0self-supervised pre-training · 1.0multi-scale patch embedding · 1.0masked channel token prediction · 1.0generative foundation model · 1.0adapter fine-tuning · 1.0successive interference cancellation · 0.6energy detection · 0.6compressed sensing · 0.6belief propagation · 0.6heterogeneous superposition coding · 0.4
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | WirelessGPT: A Generative Foundation Model for Multi-Task Integrated Sensing and CommunicationabstractThis paper presents WirelessGPT, a generative foundation model designed for multi-task learning in integrated sensing and communication (ISAC) systems. Built upon large-scale heterogeneous wireless datasets including Traciverse, Sensiverse, and DeepMIMO, WirelessGPT learns universal spatio-temporal-frequency representations through self-supervised pretraining with masked channel token prediction. The proposed architecture introduces a multi-scale patch embedding module to capture both local and global channel features, and a triple-axis attention encoder to jointly model temporal, spatial, and frequency-domain dependencies. After pretraining, the model can be efficiently fine-tuned via lightweight adapters for diverse downstream tasks such as channel estimation, channel prediction, human activity recognition, environment reconstruction, and object tracking. Experimental results show that WirelessGPT achieves superior accuracy and generalization under limited labeled data and dynamic ISAC conditions, outperforming traditional and task-specific models in low-SNR and high-mobility scenarios while maintaining efficient inference suitable for edge deployment. By unifying communication and sensing functionalities within a single generative backbone, WirelessGPT establishes a scalable paradigm for AI-native 6G systems, enabling shared representations that support heterogeneous wireless tasks. Tingting Yang 0001, Ping Zhang 0003, Mengfan Zheng, Yuxuan Shi 0001, Liwen Jing 0001, Jianbo Huang, Nan Li 0011 |
IEEE J. Sel. Areas Commun. | 3 |
| 2022 | Quantum-safe cryptography: crossroads of coding theory and cryptographyabstractAbstract We present an overview of quantum-safe cryptography (QSC) with a focus on post-quantum cryptography (PQC) and information-theoretic security. From a cryptographic point of view, lattice and code-based schemes are among the most promising PQC solutions. Both approaches are based on the hardness of decoding problems of linear codes with different metrics. From an information-theoretic point of view, lattices and linear codes can be constructed to achieve certain secrecy quantities for wiretap channels as is intrinsically classical- and quantum-safe. Historically, coding theory and cryptography are intimately connected since Shannon’s pioneering studies but have somehow diverged later. QSC offers an opportunity to rebuild the synergy of the two areas, hopefully leading to further development beyond the NIST PQC standardization process. In this paper, we provide a survey of lattice and code designs that are believed to be quantum-safe in the area of cryptography or coding theory. The interplay and similarities between the two areas are discussed. We also conclude our understandings and prospects of future research after NIST PQC standardisation. Ling Liu 0003, Shanxiang Lyu, Zheng Wang 0013, Mengfan Zheng, Fuchun Lin, Zhao Chen 0002, Liuguo Yin, Xiaofu Wu, Cong Ling 0001 |
Sci. China Inf. Sci. | 5 |
| 2022 | Joint Device Detection, Channel Estimation, and Data Decoding With Collision Resolution for MIMO Massive Unsourced Random AccessabstractIn this paper, we investigate a joint device activity detection (DAD), channel estimation (CE), and data decoding (DD) algorithm for multiple-input multiple-output (MIMO) massive unsourced random access (URA). Different from the state-of-the-art slotted transmission scheme, the data in the proposed framework is split into only two parts. A portion of the data is coded by compressed sensing (CS) and the rest is low-density-parity-check (LDPC) coded. In addition to being part of the data, information bits in the CS phase also undertake the task of interleaving pattern design and CE. The principle of interleave-division multiple access (IDMA) is exploited to reduce the interference among devices in the LDPC phase. Based on the belief propagation (BP) algorithm, a low-complexity iterative message passing (MP) algorithm is utilized to decode the data embedded in these two phases separately. Moreover, combined with successive interference cancellation (SIC), the proposed joint DAD-CE-DD algorithm is performed to further improve performance by utilizing the belief of each other. Additionally, based on the energy detection (ED) and sliding window protocol (SWP), we develop a collision resolution protocol to handle the codeword collision, a common issue in the URA system. In addition to the complexity reduction, the proposed algorithm exhibits a substantial performance enhancement compared to the state-of-the-art in terms of efficiency and accuracy. Tianya Li, Yongpeng Wu 0001, Mengfan Zheng, Wenjun Zhang 0001, Chengwen Xing, Jianping An, Xiang-Gen Xia 0001, Chengshan Xiao |
IEEE J. Sel. Areas Commun. | 3 |
| 2021 | Covert Communications With a Full-Duplex Receiver in Non-Coherent Rayleigh FadingabstractIn a majority of research on covert communications, knowledge about channel state information (CSI) of main channel and/or warden channel is assumed to be known or partially known. However, a covert user may not afford to perform channel estimation in practice, and acquiring the warden's CSI is even impossible. In this paper, we investigate covert communications over non-coherent Rayleigh fading channels, in both i.i.d. fast fading and slow fading cases. We observe that the purpose of covert communication in many scenarios is to hide the existence of the sender, not the receiver. Therefore, we allow the receiver to work in full-duplex mode such that it can emit artificial noise (AN) while receiving signals simultaneously. We analyse the achievable covert rates with fixed and varying AN power and show that in both fast and slow fading cases, it is possible to achieve a positive covert rate. For the slow fading case, we further extend the proposed strategy to a multi-user scenario, in which multiple other users share the same spectral resource and cause interference at the warden. Extensive simulations are performed to verify the correctness of our analysis, which provide new insights on the AN design problem in non-coherent channels. Mengfan Zheng, Alexander Hamilton, Cong Ling 0001 |
IEEE Trans. Commun. | 1 |
| 2020 | Polar Coding and Sparse Spreading for Massive Unsourced Random AccessabstractIn this paper, we propose a new polar coding scheme for the unsourced, uncoordinated Gaussian random access channel. Our scheme is based on sparse spreading, treat interference as noise and successive interference cancellation (SIC). On the transmitters side, each user randomly picks a code-length and a transmit power from multiple choices according to some probability distribution to encode its message, and an interleaver to spread its encoded codeword bits across the entire transmission block. The encoding configuration of each user is transmitted by compressive sensing, similar to some previous works. On the receiver side, after recovering the encoding configurations of all users, it applies single-user polar decoding and SIC to recover the message list. Numerical results show that our scheme outperforms all previous schemes for active user number Ka≥ 250, and provides competitive performance for Ka≤ 225. Moreover, our scheme has much lower complexity compared to other schemes as we only use single-user polar coding. Mengfan Zheng, Yongpeng Wu 0001, Wenjun Zhang 0001 |
VTC Fall | 1 |
| 2019 | On the Polarization of Rényi EntropyabstractExisting polarization theories have mostly been concerned with Shannon's information measures, such as Shannon entropy and mutual information, and some related measures such as the Bhattacharyya parameter. In this work, we extend polarization theories to a more general information measure, namely, the Rényi entropy. Our study shows that under conditional Rényi entropies of different orders, the same synthetic sub-channel may exhibit opposite extremal states. This result reveals more insights into the polarization phenomenon on the micro scale (probability pairs) rather than on the average scale (entropy, mutual information, etc.). Mengfan Zheng, Ling Liu 0003, Cong Ling 0001 |
ISIT | 1 |
| 2019 | Polar Coding Strategies for the Interference Channel With Partial-Joint DecodingabstractExisting polar coding schemes for the two-user interference channel follow the original idea of Han and Kobayashi, in which component messages are encoded independently and then mapped by some deterministic functions (i.e., homogeneous superposition coding). In this paper, we propose a new polar coding scheme for the interference channel based on the heterogeneous superposition coding approach of Chong, Motani, and Garg. We prove that fully joint decoding (the receivers simultaneously decode both senders' common messages and the intended sender's private message) in the Han-Kobayashi strategy can be simplified to two types of partial-joint decoding, which are friendly to polar coding with practical decoding algorithms. The proposed coding scheme requires less auxiliary random variables and no deterministic functions and can be efficiently constructed. Furthermore, we extend this result to interference networks and show that partial-joint decoding is a general method for designing heterogeneous superposition polar coding schemes in interference networks. Mengfan Zheng, Cong Ling 0001, Wen Chen 0001, Meixia Tao |
IEEE Trans. Inf. Theory | 1 |
| 2018 | Polar Coding for the Cognitive Interference Channel With Confidential MessagesabstractIn this paper, we propose a low-complexity, secrecy capacity achieving polar coding scheme for the cognitive interference channel with confidential messages (CICC) under the strong secrecy criterion. Existing polar coding schemes for interference channels rely on the use of polar codes for the multiple access channel, the code construction problem of which can be complicated. We show that the whole secrecy capacity region of the CICC can be achieved by simple point-to-point polar codes due to the cognitivity, and our proposed scheme requires the minimum rate of randomness at the encoder. Mengfan Zheng, Wen Chen 0001, Cong Ling 0001 |
IEEE J. Sel. Areas Commun. | 1 |