Presentation 2009/10/22
Burst structure design for high efficient satellite return link transmission
Jae Hee Han, Pansoo Kim, Dae-Ig Chang,
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Abstract(in English) This paper is related with optimum burst structure design for high efficient TDMA satellite return link transmission. In general, some typical burst structure for data transmission is composed of a pair of preamble and traffic data in the DVB-RCS (Digital Video Broadcasting-Return Channel via Satellite) and IPOS (IP over Satellite) standard. This structure has some difficulties to increase spectral efficiency that it requires a large of preamble length, high SNR environment, or receiver complexity. To cope with them, burst structure with distributed pilot symbol can be used to alleviate the residual frequency offset effect by calculating accurate frequency offset than conventional one. In particular, we investigate some relevant to proposed distributed pilot structure, previously and analyze their strong points/drawbacks in terms of synchronization to draw the most appropriate one.
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Keyword(in English) High order modulation / distributed pilot burst structure / carrier recovery / TDMA satellite transmission
Paper # SAT2009-41
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Committee SAT
Conference Date 2009/10/22(1days)
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Registration To Satellite Telecommunications (SAT)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Burst structure design for high efficient satellite return link transmission
Sub Title (in English)
Keyword(1) High order modulation
Keyword(2) distributed pilot burst structure
Keyword(3) carrier recovery
Keyword(4) TDMA satellite transmission
1st Author's Name Jae Hee Han
1st Author's Affiliation Satellite and Wireless Convergence Research Department, ETRI()
2nd Author's Name Pansoo Kim
2nd Author's Affiliation Satellite and Wireless Convergence Research Department, ETRI
3rd Author's Name Dae-Ig Chang
3rd Author's Affiliation Satellite and Wireless Convergence Research Department, ETRI
Date 2009/10/22
Paper # SAT2009-41
Volume (vol) vol.109
Number (no) 254
Page pp.pp.-
#Pages 6
Date of Issue