Hybrid Optical-Wireless Access Networks

被引:64
作者
Kazovsky, Leonid [1 ]
Wong, Shing-Wa [1 ]
Ayhan, Tolga [1 ]
Albeyoglu, Kadir Melih [1 ]
Ribeiro, Moises R. N. [1 ,2 ]
Shastri, Anujit [1 ]
机构
[1] Stanford Univ, PNRL, Stanford, CA 94305 USA
[2] Univ Fed Espirito Santo, Telecommun Lab LABTEL, BR-29075910 Vitoria, ES, Brazil
基金
美国国家科学基金会;
关键词
Access networks; CoMP; GROWNet; hybrid optical-wireless networks; MARIN; optical networks; optical-wireless integration; radio-over-fiber; wireless networks; DYNAMIC-RANGE; FIBER; PON; PERFORMANCE; WDM; DESIGN; ARCHITECTURE; HOME;
D O I
10.1109/JPROC.2012.2185769
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
Next-generation access networks are expected to provide mobility, large data bandwidth, high quality of service (QoS), and ubiquitous coverage. Hybrid optical-wireless access networks will support these complementary features through high-capacity fiber subnetworks and flexible wireless subnetworks. As wireless access technologies progress, increased demand for access bandwidth and QoS will require a rapid evolution of fiber subnetworks and a tighter integration of the two technologies. This paper presents both radio-over-fiber transport technologies and novel architectures and technologies for hybrid optical-wireless networking. Basic optical systems for radio signals' transport use intensity modulation and direct detection. Advanced transport systems may utilize amplified links, coherent links, subcarrier transport, and digitized transport. They can be used to support powerful access solutions. On the networking side, diverse alternatives for hybrid access architectures are presented. Two wavelength division multiplexing (WDM)-based architectures, MARIN and GROWNet, are analyzed in detail. Both architectures dynamically support next-generation wireless access network traffic employing reconfigurable WDM technologies. MARIN is more technologically conservative and so is more suitable for near-future implementation. GROWNet is more technologically aggressive and is substantially more flexible and more powerful. Using hybrid network simulations, we demonstrate these architectures' capabilities to dynamically balance wireless traffic and to coordinate wireless transmission. We also review other research efforts in this field including ACCORDANCE, FiWi, FUTON, and WOBAN. Remaining challenges and research topics are also discussed to motivate further investigations into optical-wireless access networks.
引用
收藏
页码:1197 / 1225
页数:29
相关论文
共 73 条
[1]   An Overview of Next-Generation Mobile WiMAX Technology [J].
Ahmadi, Sassan .
IEEE COMMUNICATIONS MAGAZINE, 2009, 47 (06) :84-98
[2]  
[Anonymous], 80211N IEEE
[3]  
[Anonymous], 2010, PROCEDDINGS 18 INT S
[4]  
Ashizawa K., 2009, P 35 EUR C OPT COMM, P1
[5]  
Bhowmick S., 2007, Proceedings of the International Conference on Information and Communication Technology, ICICT 2007, P223
[6]   Energy Efficiency in the Future Internet: A Survey of Existing Approaches and Trends in Energy-Aware Fixed Network Infrastructures [J].
Bolla, Raffaele ;
Bruschi, Roberto ;
Davoli, Franco ;
Cucchietti, Flavio .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2011, 13 (02) :223-244
[7]  
Brueninghaus K., 2005, 2005 IEEE 16th International Symposium on Personal, Indoor and Mobile Radio Communications (IEEE Cat. No. 05TH8889), P2306
[8]  
Caballero A., 2011, P 37 EUR C EXH OPT C, P1
[9]   A wideband spatial channel model for system-wide simulations [J].
Calcev, George ;
Chizhik, Dmitry ;
Goransson, Bo ;
Howard, Steven ;
Huang, Howard ;
Kogiantis, Achilles ;
Molisch, Andreas F. ;
Moustakas, Aris L. ;
Reed, Doug ;
Xu, Hao .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2007, 56 (02) :389-403
[10]   Key Technologies of WDM-PON for Future Converged Optical Broadband Access Networks [Invited] [J].
Chang, Gee-Kung ;
Chowdhury, Arshad ;
Jia, Zhensheng ;
Chien, Hung-Chang ;
Huang, Ming-Fang ;
Yu, Jianjun ;
Ellinas, Georgios .
JOURNAL OF OPTICAL COMMUNICATIONS AND NETWORKING, 2009, 1 (04) :C35-C50