Title :
Performance of digital collective antenna systems in the presence of phase noise and clock jitter
Author :
Merchán, S. ; Armada, A. García ; García, J.L.
Author_Institution :
Dept. of Commun. Eng., Cantabria Univ., Santander, Spain
fDate :
5/1/1997 12:00:00 AM
Abstract :
SMATV (satellite master antenna television) systems can be considered as an optimal distribution network for a fast and effective introduction of digital TV to the end users in several European countries and is an alternative in those which can be used countries their that are developing infrastructures. This paper studies the performance of digital collective systems in the presence of a noisy phase reference (phase noise) and a noisy clock reference (clock jitter). For this purpose, an attempt has been made to characterize the performance of this digital transmission system through the bit error rate (BER) or symbol error rate (SER) as a function of the Eb/No ratio. The Eb/No ratio has been parametrised by phase noise and clock jitter, obtained through computer simulations. It is shown that these effects produce a significant increase in the BER/SER performance. The simulator used was the SPW (Signal Processing WorkSystem) by means of which the BER/SER has been estimated using a quasianalytical (semianalytic) approach and the Monte Carlo method, so that the results can be compared and checked
Keywords :
Monte Carlo methods; community antenna television; digital television; error statistics; jitter; phase noise; satellite antennas; television antennas; BER; CATV networks; Eb/No ratio; European countries; Monte Carlo method; SER; SMATV; Signal Processing WorkSystem; bit error rate; clock jitter; computer simulations; digital TV; digital collective antenna systems; digital transmission system; noisy clock reference; noisy phase reference; performance; phase noise; quasianalytical approach; satellite master antenna television; semianalytic approach; symbol error rate; Bit error rate; Clocks; Computational modeling; Computer simulation; Digital TV; Error analysis; Jitter; Phase noise; Satellite antennas; Satellite broadcasting;
Journal_Title :
Consumer Electronics, IEEE Transactions on