Simulation of optical heterodyne single-filter FSK system with line coding

Access Full Text

Simulation of optical heterodyne single-filter FSK system with line coding

For access to this article, please select a purchase option:

Buy article PDF
£12.50
(plus tax if applicable)
Buy Knowledge Pack
10 articles for £75.00
(plus taxes if applicable)

IET members benefit from discounts to all IET publications and free access to E&T Magazine. If you are an IET member, log in to your account and the discounts will automatically be applied.

Learn more about IET membership 

Recommend Title Publication to library

You must fill out fields marked with: *

Librarian details
Name:*
Email:*
Your details
Name:*
Email:*
Department:*
Why are you recommending this title?
Select reason:
 
 
 
 
 
Electronics Letters — Recommend this title to your library

Thank you

Your recommendation has been sent to your librarian.

The simulation results for an optical heterodyne single-filter FSK system are presented when two different line-coding plans, viz. alternate-mark-inversion (AMI) and delay modulation (DM), for the laser-driving signal are used to overcome the adverse effect of nonuniformity in the FM response of the transmitting laser.

Inspec keywords: optical links; frequency shift keying; digital simulation; optical communication equipment

Other keywords: transmitting laser nonlinearity; alternate-mark-inversion; DM; laser-driving signal; simulation results; wideband optical distribution networks; FM response nonlinearity; optical heterodyne single-filter FSK system; delay modulation; AMI; line coding

Subjects: Optical communication; Codes

References

    1. 1)
      • K.S. Shanmugan , P. Balaban . A modified Monte-Carlo technique for evaluation of error rate in digital communication systems. IEEE Trans. , 1917 - 1924
    2. 2)
      • R.S. Vodhanel , B. Enning . 1 Gbit/s bipolar optical FSK transmission experiment over 121 km of fibre. Electron. Lett. , 163 - 165
    3. 3)
      • S. Yamazaki . Long span optical FSK heterodyne single filter detection transmission experiment using a phase tunable DFB laser diode. Electron. Lett. , 5 - 7
    4. 4)
      • I. Garrett , G. Jacobsen . Phase noise in weakly coherent systems. IEE Proc. J., Optoelectron. , 159 - 165
    5. 5)
      • G.J. Foschini . Noncoherent detection of coherent lightwave signals corrupted by phase noise. IEEE Trans. , 306 - 314
    6. 6)
      • R. Noe . AMI signal format for pattern independent FSK heterodyne transmission and two channel crosstalk measurements. J. Opt. Commun. , 82 - 84
http://iet.metastore.ingenta.com/content/journals/10.1049/el_19910355
Loading

Related content

content/journals/10.1049/el_19910355
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading