浏览全部资源
扫码关注微信
1. 解放军陆军工程大学通信工程学院,江苏 南京 210007
2. 南京理工大学紫金学院,江苏 南京 210023
3. 东南大学移动通信国家重点实验室,江苏 南京 211189
[ "邵雯娟(1979- ),女,江苏常熟人,解放军陆军工程大学博士生,主要研究方向为新型网络体系结构和移动通信。" ]
[ "沈庆国(1965- ),男,江西鹰潭人,解放军陆军工程大学教授、博士生导师,主要研究方向为新型网络体系结构和移动互联。" ]
网络出版日期:2019-04,
纸质出版日期:2019-04-25
移动端阅览
邵雯娟, 沈庆国. 软件定义的D2D和V2X通信研究综述[J]. 通信学报, 2019,40(4):179-194.
Wenjuan SHAO, Qingguo SHEN. Survey of software defined D2D and V2X communication[J]. Journal on communications, 2019, 40(4): 179-194.
邵雯娟, 沈庆国. 软件定义的D2D和V2X通信研究综述[J]. 通信学报, 2019,40(4):179-194. DOI: 10.11959/j.issn.1000-436x.2019075.
Wenjuan SHAO, Qingguo SHEN. Survey of software defined D2D and V2X communication[J]. Journal on communications, 2019, 40(4): 179-194. DOI: 10.11959/j.issn.1000-436x.2019075.
设备到设备(D2D)和车辆到万物(V2X)技术有一定相似性,都被视为 5G 通信的重要组成部分,可为蜂窝移动通信提供备用网络服务和多种应用服务。而软件定义网络(SDN)可提高D2D和V2X的通信能力和灵活性。对软件定义的D2D通信(SD-D2D)和软件定义的V2X通信(SD-V2X)进行了梳理,基于它们的共性和特色,分别剖析了它们的发展现状和通信架构,并分析了D2D节点位置和发现管理、D2D路由控制、D2D流表管理、V2V路径规划、V2V路径恢复等关键技术。最后指出SD-D2D架构已接近成熟,SD-V2X框架也已初步确定,原有 D2D/V2X 通信中存在的干扰管理、移动管理和路由管理等问题能够得到有效改善,同时还指出现有SD-D2D/V2X研究存在的与实际应用脱节的现象有待克服。
The related D2D (device-to-device) and V2X (vehicle-to-everything) are regarded as vital components of 5G communication system
which providing alternative network services and multiple application services for cellular network.In the meanwhile
SDN (software defined networking) can improve the compatibilities and flexibilities of D2D and V2X.SD-D2D (software defined D2D communication) and SD-V2X (software defined V2X communication) technologies were reviewed.Based on their similarities and respective characteristics
their state-of-arts and architectures were reviewed accordingly
and the key technologies such as D2D location/discovery management
D2D routing control
D2D flow table management
V2V path scheduling
and V2V path recovery were analyzed.Finally
it was pointed out that the SD-D2D architecture was approaching mature and the SD-V2X framework had been preliminarily determined
the existing problems of interference management
mobile management and routing management in D2D/V2X communication could be effectively solved.Furthermore
it was also pointed out that the disconnection between the existing SD-D2D/V2X studies and the actual application needed to be overcome.
SUN S H , HU J L , PENG Y , et al . Support for vehicle-to-everything services based on LTE [J ] . IEEE Wireless Communications , 2016 , 23 ( 3 ): 4 - 8 .
ANSARI R I , CHRYSOSTOMOU C , HASSAN S A , et al . 5G D2D networks:techniques,challenges,and future prospects [J ] . IEEE Systems Journal , 2018 , 12 ( 4 ): 3970 - 3984 .
BAZZI A , MASINI B M , ZANELLA A , et al . Beaconing from connected vehicles:IEEE 802.11p vs.LTE-V2V [C ] // IEEE International Symposium on Personal,Indoor,and Mobile Radio Communications . 2016 : 1 - 6 .
MUSTAFA H A , IMRAN M A , SHAKIR M Z , et al . Separation framework:an enabler for cooperative and D2D communication for future 5G networks [J ] . IEEE Communications Surveys & Tutorials , 2016 , 18 ( 1 ): 419 - 445 .
TRIVISONNO R , GUERZONI R , VAISHNAVI I , et al . SDN-based 5G mobile networks:architecture,functions,procedures and backward compatibility [J ] . Transactions on Emerging Telecommunications Technologies , 2015 , 26 ( 1 ): 82 - 92 .
LIYANAGE M , GURTOV A , YLIANTTILA M . Software defined mobile networks -SDMN:beyond LTE network architecture [M ] . New Jersey : Wiley PublishingPress , 2015 .
SUN S , KADOCH M , GONG L , et al . Integrating network function virtualization with SDR and SDN for 4G/5G networks [J ] . IEEE Network , 2015 , 29 ( 3 ): 54 - 59 .
NGO T H , KIM Y . A D2D communication architecture under full control using SDN [J ] . Ksii Transactions on Internet &Information Systems , 2016 , 10 ( 8 ): 3435 - 3454 .
ORISINO A , ARANITI G , WANG L , et al . Enhanced C-RAN architecture supporting SDN and NFV functionalities for D2D communications [C ] // 19th International Conference on Distributed Computer and Communication Networks:Control,Computation,Communications . 2016 .
MENESES F , GUIMARAES C , MAGALHAES T , et al . Deviceless communications:cloud-based communications for heterogeneous networks [J ] . Wireless Personal Communications , 2018 ( 2 ): 1 - 22 .
ABOLHASAN M , LIPMAN J , NI W , et al . Software-defined wireless networking:centralized,distributed,or hybrid? [J ] . IEEE Network , 2015 , 29 ( 4 ): 32 - 38 .
OZTOPRAK K , . mCSDN:A software defined network based content delivery system with D2D contribution [C ] // International Conference on Natural Computation,Fuzzy Systems and Knowledge Discovery . 2016 : 2053 - 2057 .
USMAN M , GEBREMARIAM A A , GRANELLI F , et al . Software-defined architecture for mobile cloud in device-to-device communication [C ] // International Workshop on Computer Aided Modelling and Design of Communication Links and Networks . 2016 : 75 - 79 .
USMAN M , GEBREMARIAM A A , RAZA U , et al . A software-defined device-to-device communication architecture for public safety applications in 5G networks [J ] . IEEE Access , 2015 ( 3 ): 1649 - 1654 .
WANG R , YAN J , WU D , et al . Knowledge-centric edge computing based on virtualized D2D communication systems [J ] . IEEE Communications Magazine , 2018 , 56 ( 5 ): 32 - 38 .
GUERRERO-IBANEZ J A , ZEADALLY S , CONTRERASCASTILLO J . Integration challenges of intelligent transportation systems with connected vehicle,cloud computing,and internet of things technologies [J ] . IEEE Wireless Communications , 2015 , 22 ( 6 ): 122 - 128 .
DANIEL A , PAUL A , AHMAD A , et al . Cooperative intelligence of vehicles for intelligent transportation systems (ITS) [J ] . Wireless Personal Communications , 2016 , 87 ( 2 ): 461 - 484 .
NGUYEN T V , SHAILESH P , SUDHIR B , KAPIL G , et al . A comparison of cellular vehicle-to-everything and dedicated short range communication [C ] // Vehicular Networking Conference . 2017 : 101 - 108 .
QI W J , SONG Q Y , WANG X J , et al . SDN-enabled social-aware clustering in 5G-VANET systems [J ] . IEEE Access , 2018 ( 6 ): 28213 - 28224 .
DUAN X , WANG X , LIU Y , et al . SDN enabled dual cluster head selection and adaptive clustering in 5G-VANET [C ] // Vehicular Technology Conference . 2017 : 1 - 5 .
DUAN X , LIU Y , WANG X . SDN Enabled 5G-VANET:adaptive vehicle clustering and beamformed transmission for aggregated traffic [J ] . IEEE Communications Magazine , 2017 , 55 ( 7 ): 120 - 127 .
HUANG W , DING L , MENG D , et al . QoE-based resource allocation for heterogeneous multi-radio communication in software-defined vehicle networks [J ] . IEEE Access , 2018 , 6 ( 99 ): 3387 - 3399 .
CORDESCHI N , AMENDOLA D , BACCARELLI E . Reliable adaptive resource management for cognitive cloud vehicular networks [J ] . IEEE Transactions Vehicular Technology , 2015 , 64 ( 6 ): 2528 - 2537 .
DONG B H , WU W G , YANG Z W , et al . Software defined networking based on demand routing protocol in vehicle Ad-Hoc networks [J ] .
SOUA R , KALOGEITON E , MANZO G , et al . SDN coordination for CCN and FC content dissemination VANETs [C ] // Ad Hoc Networks . 2017 : 221 - 233 .
HUAG C M , CHIANG M S , DAO D T , et al . V2V data offloading for cellular network based on the software defined network (SDN) inside mobile edge computing (MEC) architecture [J ] . IEEE Access , 2018 ( 6 ): 17741 - 17755 .
BARON B , SPATHIS P , RIVANO H , et al . Software-defined vehicular backhaul [C ] // IEEE Wireless Days . 2014 : 1 - 6 .
MAIO A D , SOUA R , PALATTELLA M R , et al . A centralized approach for setting floating content parameters in VANETs [C ] // IEEE Consumer Communications & Networking Conference . 2017 : 712 - 715 .
AZIZIAN M , CHERKAOUI S , HAFID A S . Vehicle software updates distribution with SDN and cloud computing [J ] . IEEE Communications Magazine , 2017 , 55 ( 8 ): 74 - 79 .
HUSSEIN A , ELHAJJ I H , CHEHAB A , et al . SDN VANETs in 5G:an architecture for resilient security services [C ] // 2017 Fourth International Conference on Software Defined Systems . 2017 : 67 - 74 .
DI M A , PALATTELLA M R , SOUA R , et al . Enabling SDN in VANETs:what is the impact on security? [J ] . Sensors , 2016 , 16 ( 12 ): 2077 - 2101 .
ZHANG D , YU F R , WEI Z , et al . Software-defined vehicular ad hoc networks with trust management [C ] // The 6th ACM Symposium on Development and Analysis of Intelligent Vehicular Networks and Applications . 2016 : 41 - 49 .
FODOR G , DAHLMAN E , MIDH G , et al . Design aspects of network assisted device-to-device communications [J ] . Communications Magazine , 2012 , 50 ( 3 ): 170 - 177 .
PU L , CHEN X , XU J , et al . D2D fogging:an energy-efficient and incentive-aware task offloading framework via network-assisted D2D collaboration [J ] . IEEE Journal on Selected Areas in Communications , 2016 , 34 ( 12 ): 3887 - 3901 .
PENTIKOUSIS K , WANG Y , HU W . Mobileflow:toward software-defined mobile networks [J ] . IEEE Communications Magazine , 2013 , 51 ( 7 ): 44 - 53 .
钱志鸿 , 王雪 . 面向5G通信网的D2D技术综述 [J ] . 通信学报 , 2016 , 37 ( 7 ): 1 - 14 .
QIAN Z H , WANG X . Reviews of D2D technology for 5G communication networks [J ] . Journal on Communications , 2016 , 37 ( 7 ): 1 - 14 .
KITADA S , HIRAKAWA G , SATO G , et al . DTN based MANET for disaster information transport by smart devices [C ] // International Conference on Network-Based Information Systems . 2015 : 26 - 31 .
WANG K , LI H , YU F R , et al . Virtual resource allocation in software-defined information-centric cellular networks with device-to-device communications and imperfect CSI [J ] . IEEE Transactions on Vehicular Technology , 2016 , 65 ( 12 ): 10011 - 10021 .
YU H C , QUER G , RAO R R . Wireless SDN mobile ad hoc network:From theory to practice [C ] // 2017 IEEE International Conference on Communications . 2017 : 1 - 7 .
CASONI M , GRAZIA C A , KLAPEZ M . An SDN and CPS based opportunistic upload splitting for mobile users [C ] // International Internet of Things Summit . 2015 : 67 - 76 .
LABRAOUI M , BOC M M , FLADENMULLER A . Opportunistic SDN-controlled wireless mesh network for mobile traffic offloading [C ] // International Conference on Selected Topics in Mobile and Wireless Networking . 2017 : 1 - 7 .
LIU Y C , CHEN C , CHAKABOTY S . A software defined network architecture for geobroadcast in VANETs [C ] // 2015 IEEE International Conference on Communications . 2015 : 6559 - 6564 .
HUANG X , KANG J , YU R , et al . A hierarchical pseudonyms management approach for software-defined vehicular networks [C ] // Vehicular Technology Conference . 2016 : 1 - 5 .
WANG X , WANG C , ZHANG J , et al . Improved rule installation for real-time query service in software-defined internet of vehicles [J ] . IEEE Transactions on Intelligent Transportation Systems , 2017 , 18 ( 2 ): 225 - 235 .
LI H , DONG M , OTA K . Control plane optimization in software-defined vehicular Ad Hoc networks [J ] . IEEE Transactions on Vehicular Technology , 2016 , 65 ( 10 ): 7895 - 7904 .
KAZMI A , KHAN M A , AKRAM M U . DeVANET:decentralized software-defined VANET architecture [C ] // 2016 IEEE International Conference on Cloud Engineering Workshop . 2016 : 42 - 47 .
CHAHAL M , HARIT S . Towards software-defined vehicular communication:architecture and use cases [C ] // International Conference on Computing,Communication and Automation . 2017 : 534 - 538 .
TANG H , DING Z , LEVY B C . Enabling D2D communications through neighbor discovery in LTE cellular networks [J ] . IEEE Transactions on Signal Processing , 2014 , 62 ( 19 ): 5157 - 5170 .
ZOU K J , WANG M , YANG K W , et al . Proximity discovery for device-to-device communications over a cellular network [J ] . IEEE Communications Magazine , 2014 , 52 ( 6 ): 98 - 107 .
CHOI K W , HAN Z . Device-to-device discovery for proximity-based service in LTE-advanced system [J ] . IEEE Journal on Selected Areas in Communications , 2015 , 33 ( 1 ): 55 - 66 .
0
浏览量
2061
下载量
8
CSCD
关联资源
相关文章
相关作者
相关机构