Title :
Turbo-detected coded continuous-phase modulation for military UHF satellite communications
Author :
Tapp, T.L. ; Mickelson, R.L. ; Groshong, R.A. ; Behmlander, C. ; Graf, J.T. ; Whited, J.C.
Author_Institution :
Adv. Technol. Eng., Rockwell Collins, Inc., Cedar Rapids, IA, USA
Abstract :
The joint iterative demodulation and decoding of coded continuous-phase modulation (CPM) has been shown to offer near-optimal performance for constant envelope signalling in additive white Gaussian noise. An in-depth trade study of the parameters for such a system is used to derive the optimal waveform parameters for a variety of channels. In particular, the optimal parameters are selected for the military 25-kHz UHF follow-on (UFO) satellite communications (SATCOM) channel. A set of four waveforms are defined for that application that provide a range of power-efficient and bandwidth-efficient solutions, with data rates from 56 kbps to 80 kbps. Each operates within the typical link margins available for UHF SATCOM and meets typical (MIL-STD-188-181B) adjacent channel interference specifications. The implementation of a prototype modem using commercial off-the-shelf (COTS) hardware is described.
Keywords :
AWGN; adjacent channel interference; continuous phase modulation; demodulation; iterative decoding; military communication; military standards; modems; optimisation; satellite communication; telecommunication standards; turbo codes; AWGN; COTS hardware; CPM; MIL-STD-188-181B; UHF follow-on satellite communications; additive white Gaussian noise; adjacent channel interference specifications; bandwidth-efficient solutions; commercial off-the-shelf hardware; constant envelope signalling; data rates; joint iterative demodulation-decoding; link margin; military UHF satellite communications; modem; near-optimal performance; optimal waveform parameters; power-efficient solutions; turbo-detected coded continuous-phase modulation; Additive white noise; Demodulation; Hardware; Interchannel interference; Iterative decoding; Military communication; Modems; Modulation coding; Prototypes; Satellite communication;
Conference_Titel :
MILCOM 2002. Proceedings
Print_ISBN :
0-7803-7625-0
DOI :
10.1109/MILCOM.2002.1180430