DocumentCode :
2898914
Title :
R.F. Synchronization in DSPN-SSMA Systems
Author :
Kibe, Suresh V.
Author_Institution :
INSAT Programme Office, Department of Space, Government of India, Bangalore, India
Volume :
3
fYear :
1983
fDate :
Oct. 31 1983-Nov. 2 1983
Firstpage :
743
Lastpage :
747
Abstract :
The presence of additive Narrow-band Gaussian noise at the input of an SSMA receiver will result in a disturbance which is analogous to that which causes ´spikes´ in FM systems. This disturbance will not manifest itself as a ´spike´ at the output of an SSMA receiver but may cause loss of r.f. synchronization and hence erroneous chip detection. Most Direct-Sequence Pseudo-Noise-SSMA (DSPN - SSMA) receivers operate at low or negative input Carrier-to-Noise Ratios (CNRs). At such low CNRs the frequency of occurence of this disturbance is high. Below a ´threshold´ CNR the frequency and nature of this disturbance may result in the number of chips in error exceeding the permissible number for a given PN code resulting in degradation of system performance. The Zero-crossing Analysis [1] offers a definite clue to the nature of this disturbance and predicts a higher frequency of its occurance than is given by Rice´s model. It is believed that the study of r.f. synchronization in DSPN-SSMA systems using the Zero-crossing Analysis presented in this paper is a new approach.
Keywords :
Additive noise; Binary phase shift keying; Degradation; Fluctuations; Frequency modulation; Frequency synchronization; Gaussian noise; Government; Narrowband; Predictive models;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, 1983. MILCOM 1983. IEEE
Conference_Location :
Washington, DC, USA
Type :
conf
DOI :
10.1109/MILCOM.1983.4794799
Filename :
4794799
Link To Document :
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