Title :
Subcarrier noncoherent and differentially coherent modulated optical communications in strong atmospheric turbulence
Author :
Xuegui Song ; Cheng, James
Author_Institution :
Sch. of Eng., Univ. of British Columbia, Kelowna, BC, Canada
Abstract :
We study the error rate performance of subcarrier noncoherent and differentially coherent modulated optical wireless communication systems over the K-distributed turbulence channels. Using a moment generating function approach along with a series expansion of the modified Bessel function, we obtain a unified highly accurate series bit-error rate expression for a family of noncoherent and differentially coherent modulations. We also analyze the symbol-error rate performance of subcarrier M-ary differential phase-shift keying (DPSK) and M-ary noncoherent frequency-shift keying (NCFSK) modulated systems using the same frequency domain approach. We compare the error rate performance of subcarrier DPSK and adaptive on-off keying (OOK) using direct detection. It is shown that subcarrier DPSK is only 0.91 dB worse than OOK in strong turbulence.
Keywords :
Bessel functions; amplitude shift keying; atmospheric turbulence; differential phase shift keying; error statistics; frequency shift keying; optical communication; Bessel function; DPSK; K-distributed turbulence channels; M-ary differential phase-shift keying; M-ary noncoherent frequency-shift keying; NCFSK; OOK; adaptive on-off keying; atmospheric turbulence; bit-error rate expression; differentially coherent modulations; moment generating function; noncoherent modulations; optical wireless communication systems; symbol-error rate performance; Bit error rate; Differential phase shift keying; Optical modulation; Signal to noise ratio; Wireless communication; Atmospheric turbulence; K-distributed fading subcarrier intensity modulation;
Conference_Titel :
Optical Wireless Communications (IWOW), 2013 2nd International Workshop on
Conference_Location :
Newcastle upon Tyne
DOI :
10.1109/IWOW.2013.6777794