Multi-Flow Transmission in Wireless Interference Networks: A Convergent Graph Learning Approach

被引:1
|
作者
Paul, Raz [1 ]
Cohen, Kobi [1 ]
Kedar, Gil [2 ]
机构
[1] Ben Gurion Univ Negev, Sch Elect & Comp Engn, IL-8410501 Beer Sheva, Israel
[2] Ceragon Networks Ltd, Tel Aviv, Israel
关键词
Diamonds; Interference; Routing; Resource management; Optimization; Graph neural networks; Reinforcement learning; Wireless interference networks; distributed learning; deep reinforcement learning (DRL); graph neural network (GNN); MULTIARMED BANDIT; SHORTEST-PATH; ACCESS; ALGORITHMS; DESIGN;
D O I
10.1109/TWC.2023.3310353
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We consider the problem of multi-flow transmission in wireless networks, where data signals from different flows can interfere with each other due to mutual interference between links along their routes, resulting in reduced link capacities. The objective is to develop a multi-flow transmission strategy that routes flows across the wireless interference network to maximize the network utility. However, obtaining an optimal solution is computationally expensive due to the large state and action spaces involved. To tackle this challenge, we introduce a novel algorithm called Dual-stage Interference-Aware Multi-flow Optimization of Network Data-signals (DIAMOND). The design of DIAMOND allows for a hybrid centralized-distributed implementation, which is a characteristic of 5G and beyond technologies with centralized unit deployments. A centralized stage computes the multi-flow transmission strategy using a novel design of graph neural network (GNN) reinforcement learning (RL) routing agent. Then, a distributed stage improves the performance based on a novel design of distributed learning updates. We provide a theoretical analysis of DIAMOND and prove that it converges to the optimal multi-flow transmission strategy as time increases. We also present extensive simulation results over various network topologies (random deployment, NSFNET, GEANT2), demonstrating the superior performance of DIAMOND compared to existing methods.
引用
收藏
页码:3691 / 3705
页数:15
相关论文
共 50 条
  • [31] Adaptive multi-flow opportunistic routing using learning automata
    Ghasemi, Marzieh
    Abdolahi, Mostafa
    Bag-Mohammadi, Mozafar
    Bohlooli, Ali
    AD HOC NETWORKS, 2015, 25 : 472 - 479
  • [32] Multi-flow optimization of a greenhouse system: A hierarchical control approach
    Blaud, Pierre Clement
    Haurant, Pierrick
    Chevrel, Philippe
    Claveau, Fabien
    Mouraud, Anthony
    APPLIED ENERGY, 2023, 351
  • [33] Learning the Wireless Interference Graph via Local Probes
    Zheng, Guangtao
    Tajer, Ali
    PROCEEDINGS OF THE 21ST IEEE INTERNATIONAL WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS (IEEE SPAWC2020), 2020,
  • [34] Multi-hop wireless networks: A unified approach to relaying and interference management
    Shomorony, Ilan
    Avestimehr, A. Salman
    Foundations and Trends in Networking, 2014, 8 (03): : 1 - 134
  • [35] Multi-hop Wireless Networks: A Unified Approach to Relaying and Interference Management
    不详
    FOUNDATIONS AND TRENDS IN NETWORKING, 2013, 8 (03): : 151 - +
  • [36] Performance Evaluation of Elastic Optical Networks with Multi-Flow Optical Transponders
    Tanaka, Takafumi
    Hirano, Akira
    Jinno, Masahiko
    2012 38TH EUROPEAN CONFERENCE AND EXHIBITION ON OPTICAL COMMUNICATIONS (ECOC), 2012,
  • [37] Subcarrier Restoration for Survivable Multi-Flow Transponders in Elastic Optical Networks
    Tanaka, Takafumi
    Inui, Tetsuro
    Imajuku, Wataru
    Hirano, Akira
    2015 21ST ASIA-PACIFIC CONFERENCE ON COMMUNICATIONS (APCC), 2015, : 214 - 217
  • [38] Packets transmission in wireless sensor networks: Interference, energy and delay-aware approach
    Xia, Xinsheng
    Liang, Qilian
    2007 IEEE WIRELESS COMMUNICATIONS & NETWORKING CONFERENCE, VOLS 1-9, 2007, : 2503 - 2507
  • [39] Strategy-Proof Resource Allocation Mechanism for Multi-Flow Wireless Multicast
    Ko, Chun-Han
    Chou, Ching-Chun
    Meng, Hsiang-Yun
    Wei, Hung-Yu
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2015, 14 (06) : 3143 - 3156
  • [40] Interference Mitigation for Wireless Body Area Networks with Fast Convergent Game
    Jiang, Tigang
    Wang, Honggang
    Wu, Shaoen
    GLOBECOM 2017 - 2017 IEEE GLOBAL COMMUNICATIONS CONFERENCE, 2017,