南京理工大学 自动化学院,江苏 南京 210094
通信作者邮箱:yangli945@126.com
收稿:2025-04-18,
网络首发:2025-12-25,
纸质出版:2026-03
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袁洋, 杨力, 何流. 基于NS-3的SD-MANET仿真平台设计与实现[J]. 兵工学报, 2026,47(3):250296.
YUAN Yang, YANG Li, HE Liu. Design and Implementation of a NS-3-based SD-MANET Simulation Platform[J]. Acta Armamentarii, 2026, 47(3): 250296.
袁洋, 杨力, 何流. 基于NS-3的SD-MANET仿真平台设计与实现[J]. 兵工学报, 2026,47(3):250296. DOI: 10.12382/bgxb.2025.0296.
YUAN Yang, YANG Li, HE Liu. Design and Implementation of a NS-3-based SD-MANET Simulation Platform[J]. Acta Armamentarii, 2026, 47(3): 250296. DOI: 10.12382/bgxb.2025.0296.
软件定义自组网(Software Defined Mobile Ad Hoc Network,SD-MANET)融合了软件定义网络(Software Defined Network,SDN)集中控制优势和移动自组网(Mobile Ad Hoc Network,MANET)的动态组网优势,但Mininet等现有仿真平台在动态拓扑与扩展性等方面存在显著局限,严重制约了其关键算法的研究。针对这一问题,提出基于网络模拟器-3(Network Simulator-3,NS-3)的仿真平台NS3-SDMANET,具体工作包括:基于NS-3框架实现了SD-MANET网络层关键特性的仿真;基于远程过程调用对平台功能进行封装,并提供可编程接口。战术网的测试案例表明:NS3-SDMANET在SD-MANET网络层关键特性仿真方面表现优异,能够有效支撑SD-MANET网络层算法的高效验证与性能评估,为相关研究提供了高扩展性的基础仿真环境。
Software-defined mobile ad hoc network(SD-MANET)combines the centralized control of software-defined network(SDN)and the dynamic networking capability of mobile ad hoc network(MANET). However
the existing simulation platforms such as Mininet has notable limitations in terms of dynamic topology and scalability
which significantly hinder the research on key SD-MANET algorithms. To address this issue
NS3-SDMANET simulation platform based on network simulator-3(NS-3)is proposed
the specific work includes: implementing simulations of key features of the SD-MANET network layer based on the NS-3 framework; encapsulating the platform's functionalities using remote procedure calls and providing programmable interfaces. Test cases of tactical networks demonstrate that NS3-SDMANET performs excellently in simulating the critical network-layer characteristics
effectively enabling the efficient validation and performance evaluation of SD-MANET algorithms
thereby providing a highly scalable and foundational simulation environment for further research.
PLESSE T, ADJIH C, MINET P, et al. OLSR performance measurement in a military mobile ad hoc network[J]. Ad Hoc Networks,2004,3(5):575-588.
PATEL A, DENIAL A. A comprehensive paper for performance evaluation between DSDV and AODV routing protocol[J]. Research Journal of Engineering and Technology,2012,3(1):29-33.
ALI Z A,CAGGDASS D A,CAGGATAY A. Enhancement of the performance of MANET using machine learning approach based on SDNs[J]. Optik,2023,272:170268.
GUPTA N,MAASHI S M,TANWAR S,et al. A comparative study of software defined networking controllers using mininet[J]. Electronics,2022,11(17):2715-2715.
FONTES R R, AFZAL S, BRITO S H B, et al. Mininet-WiFi:emulating software-defined wireless networks[C]∥Proceedings of the 201511th International Conference on Network and Service Management. Barcelona,Spain:IEEE,2015:384-389.
SALEH A S,ZUHAIRI F M,DAO H. A comparative performance analysis of manet routing protocols in various propagation loss models using NS3 simulator[J]. Journal of Communications,2020, 15(6):537-544.
程铭鑫.面向软件定义移动自组织网络的仿真平台研究与实现[D].北京:北京邮电大学,2021.
CHENG M X. Research and implementation of simulation platform for software defined mobile ad hoc network[D]. Beijing:Beijing University of Posts and Telecommunications,2021. (in Chinese)
李岩.面向软件定义移动自组织网络QoS的研究与仿真平台实现[D].北京:北京邮电大学,2024.
LI Y. Research and implementation of simulation platform for QoS of software-defined mobile ad hoc networks[D]. Beijing:Beijing University of Posts and Telecommunications,2024. (in Chinese)
李博阳.基于Mininet-Wifi的软件定义移动自组织网络QoS与节点集群研究与实现[D].北京:北京邮电大学,2023.
LI B Y. Research and implementation on SD-MANET QoS and cluster based on mininet-wifi[D]. Beijing:Beijing University of Posts and Telecommunications,2023. (in Chinese)
韩翼丰.面向软件定义移动自组织网络的拓扑发现和多控制器负载均衡仿真功能实现[D].北京:北京邮电大学,2023.
HAN Y F. Topology discovery and multi-controller load balancing simulation for software defined mobile ad hoc networks[D]. Beijing: Beijing University of Posts and Telecommunications, 2023. (in Chinese)
WHEEB H A, NORDIN R, SAMAH A A, et al. Performance evaluation of standard and modified OLSR protocols for uncoordinated UAV Ad-Hoc networks in search and rescue environments[J].Electronics,2023,12(6):1334-1334.
JIN R C,ZHANG X Y,LIU J J,et al. A comprehensive evaluation algorithm of multi-point relay based on link-state awareness for UANETs[J]. Sensors,2024,24(5):1702.
ANA L, CARMEN M L, SANDRA L, et al. An open-source implementation and validation of 5G NR configured grant for URLLC in ns-35G LENA:a scheduling case study in industry 4.0 scenarios[J]. Journal of Network and Computer Applications,2023,215:103638.
YU W J, WANG L, SONG J, et al. Environment-aware rate adaptation based on occasional request and robust adjustment in 802.11 networks[J]. Sensors,2023,23(18):7889.
伍焰.卫星网络模拟器研究[D].成都:电子科技大学,2024.
WU Y. Research on a simulator for satellite networks[D]. Chengdu: University of Electronic Science and Technology of China,2024. (in Chinese)
陈金玲.基于NS3的低轨卫星拥塞控制路由仿真平台设计与实现[D].北京:北京邮电大学,2022.
CHEN J L. Design and implementation of congestion-control routing simulation platform based on NS3 for leo satellite[D]. Beijing: Beijing University of Posts and Telecommunications, 2022. (in Chinese)
吴奉微,刘川,尚丹,等.基于SNS3的低轨卫星通信系统网络仿真[J].天地一体化信息网络,2024,5(4):75-84.
WU F W, LIU C, SHANG D, et al. Network simulation of low earth orbit satellite communication system based on SNS3[J]. Space-Integrated-Ground Information Networks,2024,5(4):75-84. (in Chinese)
李广荣,王琨,张兆心.基于NS-3构建网络环境的虚实结合技术的研究[J].高技术通讯,2015,25(7):685-693.
LI G R, WANG K, ZHANG Z X. Research on a technique of combining the virtual with the true for construction of network environments based on NS-3[J]. Chinese High Technology Letters,2015,25(7):685-693. (in Chinese)
谭世殊.面向虚实结合网络的攻击阻断系统的设计与实现[D].北京:北京邮电大学,2014.
TAN S S. Design and implementation of attack blocking system for physical and virtual combined network[D]. Beijing: Beijing University of Posts and Telecommunications,2014. (in Chinese)
ABDELRAHMAN S M,KHARCHOUF I,NGUYEN L T,et al. A hybrid physical co-simulation smart grid testbed for testing and impact analysis of cyber-attacks on power systems:framework and attack scenarios[J]. Energies,2023,16(23):7771.
SU H L,LIU Y Q,ZHOU Y Q,et al. A parallel discrete event simulation engine for the low-earth-orbit satellite constellation networks[J]. China Communications,2024,21(8):264-275.
LEE S, JEONG Y, ROH H B. Design and implementation of simulation system for multi-domain tactical SDN using OPNET modeler[J]. The Journal of Korean Institute of Communications and Information Sciences,2020,45(4):739-747.
ELGAZZAR A M M,ALSHAREEF A. Analytical simulations for proactive, reactive and position based routing protocols using OMNeT++via INet framework[J]. International Journal of Innovative Technology and Exploring Engineering,2020,9(11):383-387.
袁进.基于NS3的网络并行模拟仿真方法研究[D].成都:电子科技大学,2017.
YUAN J. Network parallel simulation methods research based on NS3[D]. Chengdu: University of Electronic Science and Technology of China,2017. (in Chinese)
DIN U S M,KIM S B. Performance evaluation of SDWNs in cloud systems[J]. International Journal of Information and Communication Technology,2022,21(4):445-456.
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