This paper studies optical communications using subcarrier phase shift keying (PSK) intensity modulation through atmospheric turbulence channels. The bit error rate (BER) is derived for optical communication systems employing either on/off key (OOK) or subcarrier PSK intensity modulation. It is shown that atBER =10⁻⁶and a scintillation level ofσ = 0.1, an optical communication system employing subcarrier BPSK is 3 dB better than a comparable system using fixed-threshold OOK. Whenσ =0.2, an optical communication system employing subcarrier BPSK achieves aBER = 10⁻⁶atSNR = 13.7dB, while the BER of a comparable system employing OOK can never be less than10⁻⁴. Convolutional codes are discussed for optical communication through atmospheric turbulence channels. Interleaving is employed to overcome memory effect in atmospheric turbulence channels. An upper bound on BER is derived for optical communication systems employing convolutional codes and subcarrier BPSK modulation.
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Li et al. (2007) studied this question.
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