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Modern modulation methods
Modern modulation methods
Explanatory Notes
1.1 Basic classification of digital optical modulations
1.2 Carrier-Suppressed Return to Zero
1.3 Transceivers for optical modulations
1.4 Alternate Mark Inversion
1.5 Duobinary modulation
2.1 Differential Phase-Shift Keying
2.2 Quadrature Phase-Shift Keying and Differential Quadrature Phase-Shift Keying
3.1 Polarization multiplexing in QPSK for terabit transmission
3.2 Convergence of networks: coexistence of amplitude and phase modulations in one fibre
3.3 Cross phase modulation caused by phase modulation over amplitude modulation
3.4 Avoidance of nonlinear effects caused by advanced modulations
3.5 Immunity of digital modulations to dispersion effects at high speeds
3.6 OFDM – multicarrier modulation – principle, applications
3.7 OFDM – multicarrier modulation – parameters, benefits and limits
3.8 VDMT – advanced vectored modulation – principle, application
3.9 Conclusion
Modern modulation methods
Explanatory Notes
1.1 Basic classification of digital optical modulations
1.2 Carrier-Suppressed Return to Zero
1.3 Transceivers for optical modulations
1.4 Alternate Mark Inversion
1.5 Duobinary modulation
2.1 Differential Phase-Shift Keying
2.2 Quadrature Phase-Shift Keying and Differential Quadrature Phase-Shift Keying
3.1 Polarization multiplexing in QPSK for terabit transmission
3.2 Convergence of networks: coexistence of amplitude and phase modulations in one fibre
3.3 Cross phase modulation caused by phase modulation over amplitude modulation
3.4 Avoidance of nonlinear effects caused by advanced modulations
3.5 Immunity of digital modulations to dispersion effects at high speeds
3.6 OFDM – multicarrier modulation – principle, applications
3.7 OFDM – multicarrier modulation – parameters, benefits and limits
3.8 VDMT – advanced vectored modulation – principle, application
3.9 Conclusion