DocumentCode :
1542302
Title :
Finite truncated cosine series design of full response signaling offset quadrature binary modulation systems
Author :
Vigil, A.J. ; Belkerdid, M.A. ; Malocha, D.C.
Author_Institution :
Comlinear Corp., Urbana, IL, USA
Volume :
42
Issue :
234
fYear :
1994
Firstpage :
1465
Lastpage :
1470
Abstract :
Classical cosine series functions have been applied to the synthesis of finite impulse response filters because of their closed analytic form and low sidelobe levels. It is proposed that cosine series functions be applied to the synthesis of pulse shapes for full response signaling quadrature binary modulation systems in the interest of controlling the spectral characteristics of the resulting modulated signals. Synthesis criteria which govern the selection of cosine series coefficients include provisions for controlling modulated signal envelope nonuniformity and provisions for selecting spectral nulls in the modulated signal. The respective modulation systems are analyzed and compared to conventional modulation techniques QPSK, MSK, SFSK and DSFSK on the basis of modulated signal envelope uniformity and spectral confinement. It is shown that the freedom to select spectral zeroes in the closed form design of the pulse shape introduces a vehicle for suppressing narrowband interference without introducing intersymbol interference into the system. Design examples are provided and modulation system implementations are proposed and discussed
Keywords :
interference suppression; pulse modulation; series (mathematics); spectral analysis; telecommunication signalling; classical cosine series functions; finite impulse response filters; finite truncated cosine series design; full response signaling offset quadrature binary modulation systems; modulated signal envelope nonuniformity; modulated signal envelope uniformity; narrowband interference; pulse shapes synthesis; sidelobe levels; spectral characteristics; spectral confinement; spectral s; spectral zeroes; Control system synthesis; Finite impulse response filter; Intersymbol interference; Pulse modulation; Pulse shaping methods; Quadrature phase shift keying; Shape control; Signal analysis; Signal design; Signal synthesis;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.1994.582808
Filename :
582808
Link To Document :
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