DocumentCode :
255821
Title :
On the performance of selective transmission based DF FSO system with generalized M-distributed turbulence
Author :
Sharma, N. ; Bansal, A. ; Garg, P.
Author_Institution :
Div. of ECE, Netaji Subhas Inst. of Technol., New Delhi, India
fYear :
2014
fDate :
11-13 Dec. 2014
Firstpage :
1
Lastpage :
5
Abstract :
This paper investigates the error performance of the decode-and-forward (DF) based free space optical (FSO) communication system utilizing subcarrier intensity modulation (SIM) for binary phase-shift keying (BPSK) signalling in generalized M-distributed atmospheric turbulence. The M-distribution is a generic statistical model which unifies several existing distributions used for atmospheric turbulence induced fading. The exact closed-form expression of the average bit error rate (BER) is derived for selective transmission based DF FSO system using independent and non identically distributed (i.n.i.d) optical links. Moreover, we analytically obtain the diversity order of the considered set-up for various distributions (e.g. gamma-gamma distribution, K-distribution, and negative exponential distribution), characterized by the generalized M-distribution model. It is shown by the simulations that the selective relaying based DF protocol provides maximum possible diversity in all the considered fading environments.
Keywords :
atmospheric turbulence; decode and forward communication; error statistics; intensity modulation; optical links; optical modulation; phase shift keying; statistical distributions; BER; BPSK signalling; SIM; atmospheric turbulence induced fading; binary phase-shift keying signalling; bit error rate; decode-and-forward based free space optical communication system; exact closed-form expression; generalized M-distributed atmospheric turbulence; generalized M-distribution model; generic statistical model; independent and nonidentically distributed optical links; selective relaying based DF protocol; selective transmission based DF FSO system performance; subcarrier intensity modulation; Atmospheric modeling; Bit error rate; Decoding; Fading; Numerical models; Relays; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
India Conference (INDICON), 2014 Annual IEEE
Conference_Location :
Pune
Print_ISBN :
978-1-4799-5362-2
Type :
conf
DOI :
10.1109/INDICON.2014.7030652
Filename :
7030652
Link To Document :
بازگشت