此页面上的内容需要较新版本的 Adobe Flash Player。

获取 Adobe Flash Player

Bearing Test for Gbps Broadband Wireless System

Wei-dong FANG(房卫东)1,2, Yong XIONG(熊勇)1,2, Xiang-yang WANG(王向阳)3

 

(1. Key Laboratory of Wireless Sensor Network & Communication, Shanghai Institute of Micro-system and Information Technology, Chinese Academy of Sciences,Shanghai 200050, China;2. Shanghai Research Center for Wireless Communications, Shanghai 200335, China;3. National Mobile Communications Research Laboratory, Southeast University, Nanjing 210018, China)

 

Abstract-In this paper, we propose a wireless channel testing method and construct the test platform for the Gbps broadband wireless system. The proposed method is implemented to evaluate the transmission performance according to the acquired field test results. The results have shown that the proposed channel test algorithm is valid and efficient, which can continuously show the variation of system throughput, frame loss rate and latency.

 

Key words-IMT-Advanced; bearing test; RFC 2544

 

Manuscript Number: 1674-8042(2011)03-0251-05

 

doi: 10.3969/j.issn.1674-8042.2011.03.012

 

References

 


[1] Y. Tang, X. Yi, S. H. Shao, 2008. A view on IMT-advanced. Journal of University of Electronic Science and Technology of China, 37(2): 161-167.
[2] A. H. Khan, M. A. Qadeer, J. A. Ansari, et al, 2009. 4G as a next generation wireless network. Processing in Future Computer and Communication, Kuala Lumpar, Malaysia: 334-338.
[3] X. H. Qing, C. H. Cheng, L. Wang, 2008. A study of some key technologies of 4G system. Processing in Industrial Electronics and Applications, Singapore: 2292-2295.
[4] J. Govil, 2008. 4G: Functionalities development and an analysis of mobile wireless grid. Processing in Emerging Trends in Engineering and Technology, Nagpur, Maharashtra, India: 270-275.
[5] N. Ying, 2010. Siemens to create a new record of real-time wireless transmission speeds of up to 1 Gbps. http://www.enet.com.cn/article/2004/1213/A20041213371193.shtml
[6] F. Ivanek, 2008. Convergence and competition on the way toward 4G. Microwave Magazine, 9(4): 6-14.
[7] N. Miyazaki, T. Komine, Y. Hatakawa, et al, 2007. Development and experiments of 100 MHz bandwidth testbed for IMT-Advanced systems. Processing in Vehicular Technology Conference, Baltimore, MD, USA, p.1317-1321.
[8] V. Marques, R. L. Aguiar, C. Garcia, et al, 2003. An IP-based QoS architecture for 4G operator scenarios. Wireless Communications, 10(3): 54-62.
[9] A. Halder, S. Bhattacharya, A. Chatterjee, 2008. System-level specification testing of wireless transceivers. Very Large Scale Integration (VLSI) Systems, 16(3): 263-276.
[10] S. Bradner, J. Me Quaid, 1999. Benchmarking Methodology for Network Interconnect Devices. RFC2544.
[11] L. Ilhem, K. Farouk, 2000. A rate-based flow control method for ABR service ATM networks. Computer Networks, 34(1): 126-132.

 

 

[full text view]