2009
DOI: 10.1002/bltj.20356
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8 Tb/s (80 × 107 Gb/s) DWDM NRZ-VSB transmission over 510 km NZDSF with 1 bit/s/Hz spectral efficiency

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Cited by 9 publications
(11 citation statements)
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“…The cyclic prefix required for the mitigation of chromatic dispersion is dependent on the bandwidth of the OFDM signal and the desired transmission distance [15]. A good estimate for the required guard time is (2) where represents the chromatic dispersion of the desired transmission distance [s/m], is the effective bandwidth of the modulated OFDM signal as defined in (1), is the speed of light [m/s] and represents the center frequency of the OFDM band [Hz]. For a 1000-km link of SSMF with 16-ps/nm/km chromatic dispersion a minimal cyclic-prefix guard band of ns/OFDM symbol is required in this configuration.…”
Section: B Optical Front Endmentioning
confidence: 99%
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“…The cyclic prefix required for the mitigation of chromatic dispersion is dependent on the bandwidth of the OFDM signal and the desired transmission distance [15]. A good estimate for the required guard time is (2) where represents the chromatic dispersion of the desired transmission distance [s/m], is the effective bandwidth of the modulated OFDM signal as defined in (1), is the speed of light [m/s] and represents the center frequency of the OFDM band [Hz]. For a 1000-km link of SSMF with 16-ps/nm/km chromatic dispersion a minimal cyclic-prefix guard band of ns/OFDM symbol is required in this configuration.…”
Section: B Optical Front Endmentioning
confidence: 99%
“…The reduction of the width of the OFDM bands has some implications on the configuration and the performance of the system. According to (2), the minimum required guard time in this case is about 1 ns/OFDM symbol instead of the 3.9 ns/OFDM symbol required for the single band configuration. This results in a reduction of the cyclic prefix overhead with a factor of four to less than 1%.…”
Section: B Optical Front Endmentioning
confidence: 99%
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“…Ten channels were transmitted over 400 km with a spectral efficiency (SE) of 0.7 b/s/Hz (143 GHz channel spacing). Currently, the availability of mature high-speed electronics and optoelectronics is limited and thus most binary 100 Gb/s demonstrations have occurred in research labs [8,32,36,37,39,50]. In an effort to improve the spectral efficiency and reach, more advanced modulation formats are being explored [12,47].…”
Section: Introductionmentioning
confidence: 98%