Title :
Multidimensional Hybrid Modulations for Ultrahigh-Speed Optical Transport
Author :
Djordjevic, Ivan B. ; Xu, Lei ; Wang, Ting
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Arizona, Tucson, AZ, USA
Abstract :
From Shanon´s theory, we know that information capacity is a logarithmic function of signal-to-noise ratio (SNR) but a linear function of the number of dimensions. By increasing the number of dimensions D, we can dramatically improve the spectral efficiency. At the same time, in D-dimensional space (D >; 2), for the same average symbol energy, we can increase the Euclidean distance between signal constellation points compared with the conventional in-phase (I)/quadrature (Q) 2-D signal space. The 4-D space, with two phase coordinates per polarization, has already been intensively studied. To satisfy the ever-increasing bandwidth demands, in this paper, we propose the D-dimensional signaling (D >; 4) by employing all available degrees of freedom for transmission over a single carrier including amplitude, phase, polarization, and orbital angular momentum (OAM). The proposed modulation scheme can be called hybrid D-dimensional modulation as it employs all available degrees of freedom. The proposed hybrid 8-D coded-modulation scheme outperforms its 4-D counterpart by 3.97 dB at a bit error rate (BER) of 10-8 while outperforming its corresponding polarization-division-multiplexed (PDM) iterative polar quantization (IPQ)-based counterpart by even a larger margin of 6.41 dB (at the same BER). The improvement of the proposed scheme for two amplitude levels per dimension and D = 8 over conventional PDM 64-quadrature amplitude modulation (QAM) is indeed a striking 8.28 dB at a BER of 2 × 10-8.
Keywords :
angular momentum; channel capacity; code division multiplexing; error statistics; iterative methods; light polarisation; light transmission; optical modulation; phase modulation; quadrature amplitude modulation; Euclidean distance; Shanon theory; average symbol energy; bit error rate; hybrid 8D coded-modulation; hybrid D-dimensional modulation; in-phase 2D signal space; information capacity; linear function; logarithmic function; multidimensional hybrid modulations; orbital angular momentum; phase coordinates; polarization-division-multiplexed iterative polar quantization; quadrature 2D signal space; quadrature amplitude modulation; signal constellation points; signal-to-noise ratio; single carrier transmission; spectral efficiency; ultrahigh-speed optical transport; Bit error rate; Demodulation; Multiplexing; Optical fiber polarization; Parity check codes; Multimode fibers (MMFs); coded-modulation; hybrid modulations; low-density parity-check (LDPC) codes;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2011.2173327