DocumentCode
1414560
Title
Lattice-theoretic analysis of time-sequential sampling of spatiotemporal signals. II. Large space-bandwidth product asymptotics
Author
Willis, N. Parker ; Bresler, Yoram
Author_Institution
Cardiac Pathways Corp., Sunnyvale, CA, USA
Volume
43
Issue
1
fYear
1997
fDate
1/1/1997 12:00:00 AM
Firstpage
208
Lastpage
220
Abstract
For pt.I see ibid., vol.43, no.1, p.190-207 (1997). We consider the sampling of bandlimited spatiotemporal signals subject to the time-sequential (TS) constraint that only one spatial position can be sampled at any given time. Part I of this paper developed a new unifying theory linking TS sampling with generalized multidimensional sampling. It provided a complete characterization of time-sequential lattice patterns, including tight bounds on the temporal parameters of those time-sequential sampling patterns that produce zero aliasing error. In this paper we present large space-spatial-bandwidth product asymptotics for these bounds. One of the surprising results is that in many cases, there exist optimal patterns, for which, asymptotically, there is no extra penalty for lattice sampling subject to the time-sequential constraint, as compared to unconstrained multidimensional sampling. The implication to source coding is that an optimum encoder for spatiotemporal signals can be implemented with no buffering or other processing using a time-sequential sampler. The results apply to very general multidimensional spatial and spectral supports (star shaped, or at most convex)
Keywords
lattice theory; signal sampling; source coding; spectral analysis; bandlimited spatiotemporal signals; lattice-theoretic analysis; multidimensional sampling; source coding; space-bandwidth product asymptotics; spatial position; spatial supports; spatiotemporal signals; spectral supports; temporal parameters; time-sequential constraint; time-sequential lattice patterns; time-sequential sampler; time-sequential sampling; time-sequential sampling patterns; unconstrained multidimensional sampling; unifying theory; zero aliasing error; Bandwidth; Delay; Joining processes; Lattices; Sampling methods; Signal analysis; Signal processing; Signal sampling; Source coding; Spatiotemporal phenomena;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/18.567686
Filename
567686
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