Chinese Journal of Lasers, Volume. 40, Issue 10, 1005002(2013)
Performance Analysis of High Altitude Platform Multi-Hop Optical Communication with Variable Gain Relay
[1] [1] Franz Fidler, Markus Knapek, Joachim Horwath, et al.. Optical communication for high-altitude platforms (invited paper)[J]. IEEE J Selected Topics in Quantum Electronics, 2010, 16(5): 1-13.
[2] [2] Sankit R Kassa, Koushik Barman, Deman Kosale. A most promising HAPs technology for next generation wireless communication systems[C]. Proceedings of the 4th National Conference, 2010. 1-6.
[3] [3] J N Laneman, D N C Tse, G W Wornell. Cooperative diversity in wireless networks: efficient protocols and outage behavior[J]. IEEE Transactions on Information Theory, 2004, 50(12): 3062-3080.
[4] [4] Wang Xiang, Zhao Shanghong, Li Yongjun, et al.. Design of optical transport network architecture in near space[J]. Optical Communication Technology, 2012, 36(3): 14-16.
[5] [5] Mihael Mohorcic, Andrej Vihar, Matteo Berioli, et al.. Optical transport network based on a meshed HAP system with inter-platform links[C]. ASMS Conference, 2006. 1-7.
[6] [6] Chunguo Li, Xiang Wang, Luxi Yang, et al.. A joint source and relay power allocation scheme for a class of MIMO relay systems[J]. IEEE Transaction on Signal Processing, 2009, 57(12): 4852-4860.
[7] [7] Majid Safari, Murat Uysal. Relay-assisted free-space optical communication[J]. IEEE Transactions on Wireless Communications, 2008, 7(12): 5441-5449.
[8] [8] M Karimi, M Nasiri-Kenari. Outage analysis of relay-assisted free-space optical communications[J]. IET Communications, 2010, 4(12): 1423-1432.
[9] [9] Mehdi Karimi, Masoumeh Nasiri-Kenari. Free space optical communications via optical amplify-and-forward relaying[J]. J Lightwave Technol, 2011, 29(2): 242-248.
[10] [10] Christos K Datsikas, Kostas P Peppas, Nikos C Sagias, et al.. Serial free-space optical relaying communications over gamma-gamma atmospheric turbulence channels[J]. J Opt Commun New, 2010, 2(8): 576-586
[11] [11] Wang Han, Zhang Tao, Li Sha. Bit-error-rate analysis of FSO-OFDM modulation system over gamma-gamma atmospheric turbulence[J]. Laser & Optoelectronics Progress, 2013, 49(11): 110102.
[12] [12] Shou Qin, Zhang Tao, Wang Han. Analysis of BER performance in free-space optical MIMO-OFDM communication systems over the gamma-gamma atmospheric turbulence[J]. Laser & Optoelectronics Progress, 2013, 50(2): 020602.
[14] [14] Wang Xiang, Zhao Shanghong, Shi Lei, et al.. Performance analysis of inter-platforms laser links in presence of high altitude platform instability[J]. J Optoelectronics·Laser, 2012, 23(11): 2126-2131.
[15] [15] Marvin K Simon, Mobamed-Slim Alouini. Digital Communication over Fading Channels[M]. New York: John Wiley & Sons, Inc, 2000.
[16] [16] Wikipedia. Meijer G-Function[EB/OL]. [2013-07-22]. http:∥en.wikipedia.org/wiki/Meijer_G-function.
[17] [17] A P Prudnikov, Yu A Brychkov, O I Marichev. Integrals and Series Volume 4: Direct Laplace Transforms[M]. New York: Gordon and Breach Science Publishers, 1992.
[18] [18] Florian David, Dirk Giggenbacn, Hennes Henniger, et al.. Design considerations for optical inter-HAP links[C]. The 22nd AIAA International Communications Satellite Systems Conference & Exhibit, 2004. 1-12.
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Wang Xiang, Zhao Shanghong, Shi Lei, Li Yongjun, Chu Xingchun, Zhao Guhao, Zhu Zihang. Performance Analysis of High Altitude Platform Multi-Hop Optical Communication with Variable Gain Relay[J]. Chinese Journal of Lasers, 2013, 40(10): 1005002
Category: Optical communication
Received: Mar. 11, 2013
Accepted: --
Published Online: Aug. 21, 2013
The Author Email: Xiang Wang (wangxiang_626@hotmail.com)