Huanlin Liu

dblp:187/9560 · DBLP profile ↗
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9ranked-venue papers
8as first author
8since 2021 · last 2026
—ORCID · conflict

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 8 · 8 first-author · 7 since 2021Artificial intelligence and machine learning · 1 · 1 since 2021
YearPublicationVenuePosition
2026 Downlink resource allocation for IRS-aided indoor VLC considering link blockage
Huanlin Liu, Wencai Wang, Yong Chen 0007, Wenjie Song 0009, Yangyang Hou
Comput. Networks1
2026 Virtual Network Embedding Based on Hierarchical Reinforcement Learning for Admission Decision and Policy Fine-Tuning in Elastic Optical Network
Huanlin Liu, Yong Chen 0007, Jiachen Zou
IEEE Trans. Netw. Serv. Manag.1
2025 Joint access point selection and resource allocation for optimizing energy efficiency in aggregated VLC-RF network
Huanlin Liu, Yangyang Hou, Yong Chen 0007, Huiling Zhou, Wenjie Song 0009
Comput. Networks1
2025 Low-light image enhancement network based on central difference convolution
Yong Chen 0007, Shangming Chen, Huanlin Liu, Hangying Xiong, Yourui Zhang
Eng. Appl. Artif. Intell.3
2025 Blockchain-Assisted Secure Embedding of Virtual Networks in Multi-Domain Elastic Optical Network
abstract
With the continuous advancement of network virtualization (NV) technology, virtual network embedding (VNE) has played a crucial role in solving network resource allocation problem. However, multi-domain elastic optical networks (MD-EONs) are increasingly facing privacy and security challenges. The centralized VNE methods lead to significant communication overhead due to their excessive reliance on central servers. Additionally, network attacks, such as eavesdropping, pose severe threats to data security. So, we propose a blockchain-assisted virtual network secure embedding (BA-VNSE) framework MD-EONs. This framework employs quantum key distribution (QKD) technology to ensure data security during transmission and leverages the blockchain technology to enhance the transparency and security of the VNE process. Furthermore, we propose a blockchain-assisted minimum cost virtual network secure embedding (BAMC-VNSE). During the virtual node embedding (VNM), the multidimensional resources of nodes are comprehensively considered to ensure effective embedding. In the virtual link embedding (VLM), the QKD paths are allowed to differ from the encrypted data transmission paths, ultimately resulting in the selection of the most cost-effective valid embedding scheme. The simulation results demonstrate that the BAMC-VNSE effectively reduces request blocking probability, embedding cost and average number of message while improving the key utilization ratio.
Huanlin Liu, Jianjian Zhang, Yong Chen 0007, Di Deng
IEEE Trans. Netw. Serv. Manag.1
2024 Joint user grouping and resource allocation scheme based on user satisfaction management for indoor multicolor VLC-NOMA network
Huanlin Liu, Xilin Yuan, Yong Chen 0007, Huiling Zhou, Wenjie Song 0009
Comput. Networks1
2024 Multi-Cell Resource Allocation Mechanism Based on Interference Control in Indoor Multicolor VLC-WiFi Heterogeneous Networks
abstract
Heterogeneous networks based on multicolor visible light communication (VLC) and wireless fidelity (WiFi) have been considered as a key technology to achieve the capacity target in the future 6G mobile communication. However, the inter-cell interference (ICI) pattern in the multi-cell VLC scenario degrades the performance of the heterogeneous networks. To solve this problem, a multi-cell resource allocation mechanism based on interference control (MCRAMIC) is proposed, which includes a preparatory phase and an execution phase. Firstly, according to the different locations and data rate requirements of varied user equipments (UEs), the VLC access point (AP) selection algorithm based on interference avoidance and the UE priority assessment algorithm based on the requirement of UE are proposed.Then, according to the influence factor and priority factor, the multi-cell resource allocation algorithm based on interference control is proposed. According to the algorithm, the candidate VLC AP sets of the UEs are determined firstly, and the VLC APs and lightwave bands are selected for the UEs in turn. Meanwhile, some UEs are connected to the WiFi AP. Finally, the lightwave bands are further allocated to the UEs. Numeric results show that the proposed MCRAMIC outperforms the centralized resource allocation algorithm based on link conflict graph (LCG) and the resource allocation algorithm based on hypergraph theory in terms of the system throughput, UE satisfaction and service fairness.
Huanlin Liu, Yong Chen 0007, Bingchuan Huang, Huiling Zhou, Shiqi Yi
IEEE Trans. Netw. Serv. Manag.1
2023 A survivable multipath resource allocation strategy based on fragmentation-sensitive fragmentation-aware in space division multiplexing elastic optical networks
Huanlin Liu, Chang Tang, Yong Chen 0007, Mingming Tang, Junling Hu
Comput. Commun.1
2015 A trust-based P2P resource search method integrating with Q-learning for future Internet
Huanlin Liu, Gao-xiang Chen, Yong Chen 0007, Qianbin Chen
Peer-to-Peer Netw. Appl.1