Title :
Error-Correction Coded Orbital-Angular-Momentum Modulation for FSO Channels Affected by Turbulence
Author :
Djordjevic, Ivan B. ; Anguita, Jaime A. ; Vasic, Bane
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of Arizona, Tucson, AZ, USA
Abstract :
The performance of LDPC-precoded, orbital-angular-momentum (OAM) modulation is studied over a 1-km free-space laser communication link subject to OAM modal crosstalk induced by atmospheric turbulence. The multidimensional signal constellation is designed as the Cartesian product of a one-dimensional non-negative pulse-amplitude modulation and a set of orthogonal OAM modes. We evaluate the performance of this modulation scheme by first determining conditional probability density functions (PDFs) of the modal crosstalk for each symbol, resulting from the propagation in weak turbulence using a numerical propagation model. It is observed that OAM modulation is more sensitive to atmospheric turbulence as the number of dimensions increases. However, this can be efficiently mitigated by an error-correction code. The coded OAM modulation scheme provides an energy-efficient alternative to single-mode transmission, since a larger rate can be obtained per given bandwidth.
Keywords :
angular momentum; atmospheric light propagation; atmospheric turbulence; channel coding; error correction codes; modulation coding; optical crosstalk; optical links; optical modulation; parity check codes; precoding; probability; pulse amplitude modulation; wireless channels; Cartesian product; FSO channels; LDPC-precoded orbital-angular-momentum modulation; OAM modal crosstalk; atmospheric turbulence; coded OAM modulation scheme; conditional probability density functions; error-correction coded orbital-angular-momentum modulation; free-space laser communication link; multidimensional signal constellation; numerical propagation model; one-dimensional nonnegative pulse-amplitude modulation; orthogonal OAM modes; single-mode transmission; Bit error rate; Constellation diagram; Crosstalk; Numerical models; Receivers; Silicon; Atmospheric turbulence; coded modulation; free-space optical communication; low-density parity-check (LDPC) codes; modulation; orbital angular momentum (OAM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2012.2206560