default search action
Shanxiang Lyu
Person information
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j28]Shanxiang Lyu, Ling Liu, Cong Ling, Junzuo Lai, Hao Chen:
Lattice codes for lattice-based PKE. Des. Codes Cryptogr. 92(4): 917-939 (2024) - [j27]Junren Qin, Shanxiang Lyu, Jiarui Deng, Xingyuan Liang, Shijun Xiang, Hao Chen:
A Lattice-Based Embedding Method for Reversible Audio Watermarking. IEEE Trans. Dependable Secur. Comput. 21(4): 2619-2630 (2024) - [j26]Junlong Mao, Huiyi Tang, Shanxiang Lyu, Zhengchun Zhou, Xiaochun Cao:
Content-Aware Quantization Index Modulation: Leveraging Data Statistics for Enhanced Image Watermarking. IEEE Trans. Inf. Forensics Secur. 19: 1935-1947 (2024) - [j25]Fan Yang, Hao Cheng, Shanxiang Lyu, Jinming Wen, Hao Chen:
Lattice-Aided Extraction of Spread-Spectrum Hidden Data. IEEE Trans. Inf. Forensics Secur. 19: 5684-5695 (2024) - [j24]Hao Chen, Longjiang Qu, Chengju Li, Shanxiang Lyu, Liqing Xu, Mingshuo Zhou:
Generalized Singleton Type Upper Bounds. IEEE Trans. Inf. Theory 70(5): 3298-3308 (2024) - [j23]Zheng Wang, Le Liang, Shanxiang Lyu, Yili Xia, Yongming Huang, Derrick Wing Kwan Ng:
Efficient Statistical Linear Precoding for Downlink Massive MIMO Systems. IEEE Trans. Wirel. Commun. 23(10): 14805-14818 (2024) - [c13]Ling Liu, Shanxiang Lyu, Cong Ling, Baoming Bai:
On the Equivalence Between Probabilistic Shaping and Geometric Shaping: A Polar Lattice Perspective. ISIT 2024: 2174-2179 - [i22]Guangfeng Yan, Shanxiang Lyu, Hanxu Hou, Zhiyong Zheng, Linqi Song:
Towards Quantum-Safe Federated Learning via Homomorphic Encryption: Learning with Gradients. CoRR abs/2402.01154 (2024) - [i21]Ling Liu, Shanxiang Lyu, Cong Ling, Baoming Bai:
On the quantization goodness of polar lattices. CoRR abs/2405.04051 (2024) - [i20]Zhiying Li, Zhi Liu, Dongjie Liu, Shengda Zhuo, Guanggang Geng, Jian Weng, Shanxiang Lyu, Xiaobo Jin:
Unveiling the Achilles' Heel: Backdoor Watermarking Forgery Attack in Public Dataset Protection. CoRR abs/2411.15450 (2024) - [i19]Shanxiang Lyu, Ling Liu, Cong Ling:
Learning with Quantization, Polar Quantizer, and Secure Source Coding. IACR Cryptol. ePrint Arch. 2024: 714 (2024) - 2023
- [j22]Fagang Li, Hao Chen, Huimin Lao, Shanxiang Lyu:
New upper bounds and constructions of multi-erasure locally recoverable codes. Cryptogr. Commun. 15(3): 513-528 (2023) - [j21]Fagang Li, Hao Chen, Shanxiang Lyu:
A characterization of optimal locally repairable codes. Discret. Math. 346(7): 113465 (2023) - [j20]Hongliang He, Shanxiang Lyu, Bingwen Feng:
Secure Transmission Over Multiple Access Wiretap Channel by Cross-Time Interference Injection. IEEE Trans. Commun. 71(1): 370-380 (2023) - [j19]Huimin Lao, Hao Chen, Fagang Li, Shanxiang Lyu:
New Constant Dimension Subspace Codes From the Mixed Dimension Construction. IEEE Trans. Inf. Theory 69(7): 4333-4344 (2023) - [c12]Huiyi Tang, Junlong Mao, Tengjian Liu, Shanxiang Lyu:
Content-Aware Quantization Index Modulation for Physical Layer Steganography. GLOBECOM 2023: 5360-5365 - [c11]Shanxiang Lyu:
Optimized Dithering for Quantization Index Modulation. ICASSP 2023: 1-5 - [c10]Nina Cai, Wuqiang Shen, Fan Yang, Hao Cheng, Huiyi Tang, Yihua Feng, Jun Song, Shanxiang Lyu:
Chaos-Based Construction of LWEs in Lattice-Based Cryptosystems. ICPCSEE (1) 2023: 338-349 - [i18]Junren Qin, Fan Yang, Jiarui Deng, Shanxiang Lyu:
Reversible Deep Neural Network Watermarking: Matching the Floating-point Weights. CoRR abs/2305.17879 (2023) - [i17]Fan Yang, Shanxiang Lyu, Hao Cheng, Jinming Wen, Hao Chen:
Lattice-Aided Extraction of Spread-Spectrum Hidden Data. CoRR abs/2305.19855 (2023) - [i16]Junlong Mao, Huiyi Tang, Shanxiang Lyu, Zhengchun Zhou, Xiaochun Cao:
Content-Aware Quantization Index Modulation: Leveraging Data Statistics for Enhanced Image Watermarking. CoRR abs/2306.15896 (2023) - [i15]Junlong Mao, Huiyi Tang, Yi Zhang, Fengxia Liu, Zhiyong Zheng, Shanxiang Lyu:
FedReverse: Multiparty Reversible Deep Neural Network Watermarking. CoRR abs/2312.05738 (2023) - 2022
- [j18]Jiabo Wang, Ling Liu, Shanxiang Lyu, Zheng Wang, Mengfan Zheng, Fuchun Lin, Zhao Chen, Liuguo Yin, Xiaofu Wu, Cong Ling:
Quantum-safe cryptography: crossroads of coding theory and cryptography. Sci. China Inf. Sci. 65(1) (2022) - [j17]Shanxiang Lyu, Zheng Wang, Cong Ling, Hao Chen:
Better Lattice Quantizers Constructed From Complex Integers. IEEE Trans. Commun. 70(12): 7932-7940 (2022) - [j16]Zheng Wang, Shanxiang Lyu, Ling Liu, Yili Xia:
Learning-Aided Markov Chain Monte Carlo Scheme for Spectrum Sensing in Cognitive Radio. IEEE Trans. Veh. Technol. 71(10): 11301-11305 (2022) - [j15]Zheng Wang, Robert M. Gower, Cheng Zhang, Shanxiang Lyu, Yili Xia, Yongming Huang:
A Statistical Linear Precoding Scheme Based on Random Iterative Method for Massive MIMO Systems. IEEE Trans. Wirel. Commun. 21(12): 10115-10129 (2022) - [c9]Fan Yang, Hao Cheng, Shanxiang Lyu:
Extracting Spread-Spectrum Hidden Data Based on Better Lattice Decoding. ICDF2C 2022: 169-182 - [c8]Shu Yu, Junren Qin, Jiarui Deng, Shanxiang Lyu, Fagang Li:
Data Hiding in the Division Domain: Simultaneously Achieving Robustness to Scaling and Additive Attacks. ICPCSEE (2) 2022: 47-58 - [i14]Shanxiang Lyu, Cong Ling, Hao Chen:
Better Lattice Quantizers Constructed from Complex Integers. CoRR abs/2204.01105 (2022) - [i13]Shanxiang Lyu, Ling Liu, Junzuo Lai, Cong Ling, Hao Chen:
Lattice Codes for Lattice-Based PKE. CoRR abs/2208.13325 (2022) - [i12]Junren Qin, Shanxiang Lyu, Jiarui Deng, Xingyuan Liang, Shijun Xiang, Hao Chen:
A Lattice-Based Embedding Method for Reversible Audio Watermarking. CoRR abs/2209.07066 (2022) - [i11]Shanxiang Lyu, Ling Liu, Junzuo Lai, Cong Ling, Hao Chen:
Lattice Codes for Lattice-Based PKE. IACR Cryptol. ePrint Arch. 2022: 874 (2022) - 2021
- [j14]Shanxiang Lyu, Zheng Wang, Ling Liu:
On Solving the Shortest Basis Problem Based on Sequential Reduction. IEEE Commun. Lett. 25(5): 1515-1519 (2021) - [j13]Jieni Lin, Junren Qin, Shanxiang Lyu, Bingwen Feng, Jiabo Wang:
Lattice-Based Minimum-Distortion Data Hiding. IEEE Commun. Lett. 25(9): 2839-2843 (2021) - [j12]Shanxiang Lyu, Zheng Wang, Zhen Gao, Hongliang He, Lajos Hanzo:
Lattice-Based mmWave Hybrid Beamforming. IEEE Trans. Commun. 69(7): 4907-4920 (2021) - [j11]Zheng Wang, Shanxiang Lyu, Yili Xia, Qihui Wu:
Expectation Propagation-Based Sampling Decoding: Enhancement and Optimization. IEEE Trans. Signal Process. 69: 195-209 (2021) - [j10]Shanxiang Lyu, Zheng Wang, Ling Liu, Hongliang He, Guanggang Geng:
Boosting Low-Complexity Vector Perturbation Variants Based on Rectangular Shaping. IEEE Trans. Veh. Technol. 70(7): 7211-7215 (2021) - [c7]Kaiwei Zhang, Ailun Ma, Shanxiang Lyu, Jiabo Wang, Shuting Lou:
Efficient Construction of Public-Key Matrices in Lattice-Based Cryptography: Chaos Strikes Again. ISPEC 2021: 1-10 - [c6]Zheng Wang, Yili Xia, Shanxiang Lyu, Cong Ling:
Reinforcement Learning-Aided Markov Chain Monte Carlo For Lattice Gaussian Sampling. ITW 2021: 1-5 - [i10]Jieni Lin, Junren Qin, Shanxiang Lyu, Bingwen Feng, Jiabo Wang:
Lattice-Based Minimum-Distortion Data Hiding. CoRR abs/2105.13096 (2021) - 2020
- [j9]Keke Ying, Zhen Gao, Shanxiang Lyu, Yongpeng Wu, Hua Wang, Mohamed-Slim Alouini:
GMD-Based Hybrid Beamforming for Large Reconfigurable Intelligent Surface Assisted Millimeter-Wave Massive MIMO. IEEE Access 8: 19530-19539 (2020) - [j8]Shanxiang Lyu, Jinming Wen, Jian Weng, Cong Ling:
On Low-Complexity Lattice Reduction Algorithms for Large-Scale MIMO Detection: The Blessing of Sequential Reduction. IEEE Trans. Signal Process. 68: 257-269 (2020) - [j7]Shanxiang Lyu, Christian Porter, Cong Ling:
Lattice Reduction Over Imaginary Quadratic Fields. IEEE Trans. Signal Process. 68: 6380-6393 (2020) - [j6]Hongliang He, Shanxiang Lyu, Qinghao He, Dongyang Xu:
Network Coding Assisted Secure Transmission in Full-Duplex Relay Networks. IEEE Trans. Veh. Technol. 69(8): 9196-9200 (2020) - [i9]Keke Ying, Zhen Gao, Shanxiang Lyu, Yongpeng Wu, Hua Wang, Mohamed-Slim Alouini:
GMD-Based Hybrid Beamforming for Large Reconfigurable Intelligent Surface Assisted Millimeter-Wave Massive MIMO. CoRR abs/2001.05763 (2020)
2010 – 2019
- 2019
- [j5]Zheng Wang, Shanxiang Lyu, Ling Liu:
Learnable Markov Chain Monte Carlo Sampling Methods for Lattice Gaussian Distribution. IEEE Access 7: 87494-87503 (2019) - [j4]Shanxiang Lyu, Antonio Campello, Cong Ling:
Ring Compute-and-Forward Over Block-Fading Channels. IEEE Trans. Inf. Theory 65(11): 6931-6949 (2019) - [j3]Shanxiang Lyu, Cong Ling:
Hybrid Vector Perturbation Precoding: The Blessing of Approximate Message Passing. IEEE Trans. Signal Process. 67(1): 178-193 (2019) - [j2]Zheng Wang, Yang Huang, Shanxiang Lyu:
Lattice-Reduction-Aided Gibbs Algorithm for Lattice Gaussian Sampling: Convergence Enhancement and Decoding Optimization. IEEE Trans. Signal Process. 67(16): 4342-4356 (2019) - [c5]Shanxiang Lyu, Zheng Wang, Bingo Wing-Kuen Ling, Jinming Wen:
Enhanced Vector Perturbation Precoding Based on Adaptive Query Points. GLOBECOM 2019: 1-5 - [c4]Christian Porter, Shanxiang Lyu, Cong Ling:
On the Optimality of Gauss's Algorithm over Euclidean Imaginary Quadratic Fields. ITW 2019: 1-5 - [i8]Christian Porter, Shanxiang Lyu, Cong Ling:
On the Optimality of Gauss's Algorithm over Euclidean Imaginary Quadratic Fields. CoRR abs/1904.05285 (2019) - [i7]Shanxiang Lyu, Jinming Wen, Jian Weng, Cong Ling:
On Low-complexity Lattice Reduction Algorithms for Large-scale MIMO Detection: the Blessing of Sequential Reduction. CoRR abs/1912.06278 (2019) - 2018
- [c3]Shanxiang Lyu, Christian Porter, Cong Ling:
Performance Limits of Lattice Reduction over Imaginary Quadratic Fields with Applications to Compute-and-Forward. ITW 2018: 1-5 - [i6]Shanxiang Lyu, Antonio Campello, Cong Ling:
Ring Compute-and-Forward over Block-Fading Channels. CoRR abs/1805.02073 (2018) - [i5]Shanxiang Lyu, Christian Porter, Cong Ling:
Performance Limits of Lattice Reduction over Imaginary Quadratic Fields with Applications to Compute-and-Forward. CoRR abs/1806.03113 (2018) - [i4]Zheng Wang, Yang Huang, Shanxiang Lyu:
Markov chain Monte Carlo Methods For Lattice Gaussian Sampling: Lattice Reduction and Decoding Optimization. CoRR abs/1812.00127 (2018) - 2017
- [j1]Shanxiang Lyu, Cong Ling:
Boosted KZ and LLL Algorithms. IEEE Trans. Signal Process. 65(18): 4784-4796 (2017) - [c2]Shanxiang Lyu, Antonio Campello, Cong Ling, Jean-Claude Belfiore:
Compute-and-forward over block-fading channels using algebraic lattices. ISIT 2017: 1848-1852 - [i3]Shanxiang Lyu, Antonio Campello, Cong Ling, Jean-Claude Belfiore:
Compute-and-Forward for Block-Fading Channels via Algebraic Lattice Codes. CoRR abs/1702.01422 (2017) - [i2]Shanxiang Lyu, Cong Ling:
Boosted KZ and LLL Algorithms. CoRR abs/1703.03303 (2017) - [i1]Shanxiang Lyu, Cong Ling:
Hybrid Vector Perturbation Precoding: The Blessing of Approximate Message Passing. CoRR abs/1710.03791 (2017) - 2016
- [c1]Shanxiang Lyu, Cong Ling:
Sequential lattice reduction. WCSP 2016: 1-5
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2025-01-09 13:26 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint