DocumentCode :
2124773
Title :
Transforming linear systems for joint latency and throughput optimization
Author :
Srivastava, Mani B. ; Potkonjak, Miodrag
Author_Institution :
AT&T Bell Labs., Murray Hill, NJ, USA
fYear :
1994
fDate :
28 Feb-3 Mar 1994
Firstpage :
267
Lastpage :
271
Abstract :
We present algorithm transformations to simultaneously optimize for throughput and latency for the important case of linear time-invariant DSP systems. Although throughput alone can be arbitrarily improved using previously published techniques, none of them is effective when latency constraints are considered. We have used a state-space based approach which treats various algorithm transformations in an integrated fashion, and answers analytically whether it is possible to simultaneously meet any given combination of constraints on latency and throughput. The analytic approach is optimum and constructive in nature, and produces a complete implementation when feasibility conditions are fulfilled. We also present a sub-optimal but hardware efficient heuristic approach. On all benchmarks the new approaches show much superior results than published ones
Keywords :
active filters; circuit CAD; directed graphs; signal processing; state-space methods; VLSI synthesis; algorithm transformations; analytic approach; biquad filters; directed control dataflow graph; latency optimization; linear time-invariant DSP systems; state-space based approach; suboptimal heuristic approach; throughput optimization; Costs; Delay; Digital signal processing; Filtering algorithms; Hardware; Linear systems; Optimizing compilers; Software algorithms; Throughput; Very large scale integration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
European Design and Test Conference, 1994. EDAC, The European Conference on Design Automation. ETC European Test Conference. EUROASIC, The European Event in ASIC Design, Proceedings.
Conference_Location :
Paris
Print_ISBN :
0-8186-5410-4
Type :
conf
DOI :
10.1109/EDTC.1994.326866
Filename :
326866
Link To Document :
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