Advanced Coding & Modulation Techniques for Satellite Mobile Communications

Paul Whitley

 

Preliminary outline and references appear below.

 

OUTLINE:

i) Applications (Purposes and Uses)
ii) Basic Design & Architecture
iii) Software & Hardware Technologies
iv) Interconnection & Access (Networks & Protocols)
v) Benefits
vi) Problems
vii) Future Directions (?)

REFERENCES:

Takeda O, Tsuchihashi Y, Nishi R, et al.
On-board Processing Equipment for mobile satellite communications
NEC RES DEV 42: (2) 199-203 Sp. Iss. SI APR 2001

Cho YH, Ahn JK, Hong EK, et al.
Performance analysis of mobile satellite noncoherent DS-CDMA systems with
orthogonal signals
IEICE T COMMUN E84B: (3) 623-633 MAR 2001

Wakana H, Saito H, Yamamoto S, et al.
COMETS experiments for advanced mobile satellite communications and advanced satellite broadcasting
INT J SATELL COMMUN 18: (2) 63-85 MAR-APR 2000

Gerakoulis D, Geraniotis E
Code division access and switching for multibeam satellite communications
SPACE COMMUN 17: (1-3) 69-86 2001

Pan QW, Bryant GH, McMahon J, et al.
High elevation angle satellite-to-earth 12 GHz propagation measurements in the
tropics, INT J SATELL COMMUN 19: (4) 363-384 JUL-AUG 2001

Farserotu J
Integration of terrestrial and satellite networks: Technology, services and
applications, WIRELESS PERS COMMUN 17: (2-3) 283-290 JUN 2001

Kalyanasundaram S, Chong EKP, Shroff NB
An efficient scheme to reduce handoff dropping in LEO satellite systems
WIREL NETW 7: (1) 75-85 2001

Vaccaro S, Torres P, Mosig JR, et al.
Combination of antennas and solar cells for satellite communications
MICROW OPT TECHN LET 29: (1) 11-16 APR 5 2001