Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

A cost-effective 100 Gbps SAC-OCDMA–PDM based inter-satellite communication link

Journal Article · · Optical and Quantum Electronics
;  [1];  [2]; ;  [1];  [2]
  1. Chinese Academy of Sciences, Quanzhou Institute of Equipment Manufacturing, Haixi Institutes (China)
  2. Sri Sai University (India)

Satellite communication is one of the pioneer technologies to provide seamless communication across the globe. With large number of satellites deployed in the space, inter-satellite communication has become an important phenomenon for researchers to establish communication link between satellites. In this work, a cost-effective inter-satellite communication system is proposed by using spectral amplitude coding based on optical code division multiplex access technique and polarization division multiplexing scheme. Ten channels, each carrying 10 Gbps non-return to zero encoded data, are transmitted over 25,000 km inter-satellite optical wireless communication (Is-OWC) link. Furthermore, Is-OWC is subjected to space turbulences such as transmitting and pointing errors. The reported results show the successful transmission of 100 Gbps data over Is-OWC link.

OSTI ID:
22950283
Journal Information:
Optical and Quantum Electronics, Journal Name: Optical and Quantum Electronics Journal Issue: 5 Vol. 51; ISSN OQELDI; ISSN 0306-8919
Country of Publication:
United States
Language:
English

Similar Records

100 Gbps multiplexed inter-satellite optical wireless communication system
Journal Article · Mon Jul 15 00:00:00 EDT 2019 · Optical and Quantum Electronics · OSTI ID:22950213

Low-PAPR interleaved single-carrier FDM scheme for optical wireless communications
Journal Article · Thu Feb 14 23:00:00 EST 2019 · Optical and Quantum Electronics · OSTI ID:22950402

An innovative approach for performance enhancement of 320 Gbps free space optical communication system over turbulent channel
Journal Article · Sun Sep 15 00:00:00 EDT 2019 · Optical and Quantum Electronics · OSTI ID:22950143