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- W2252919992 abstract "A design methodology for high-level synthesis of application specific multi-chip module (MCM) architectures is proposed. The three important subtasks of partitioning, scheduling and allocation have been solved for the synthesis of MCMs effectively. System level partitioning is performed using the Stochastic Evolution heuristic. A new partitioning cost function is proposed which models the scheduling/allocation constraints (together with inter-chip buses) using the concept of incompatible sets. Moreover, the partitioning cost function can be modified to synthesize low power based MCMs. A graph based partitioning/scheduling/allocation approach is proposed which considers the cases of time constrained synthesis, area constrained synthesis, modeling of inter-chip buses, multi-cycle operations, pipelined functional units and functional pipelining. Two algorithms, one for time constrained, and another for area constrained, were implemented. The high-level synthesis benchmarks AR, FIR and EWF filters were synthesized efficiently. The required CPU time is far less compared to the Integer Programming approach.Low power based synthesis for MCMs is also proposed in this dissertation. Our algorithms are based on minimizing the switching activity (the switched capacitance) on the functional units as well as the inter-chip buses. A system partitioner for low power based synthesis of MCMs is presented and efficient results are obtained. A binding approach is proposed to minimize the switching activity after the scheduling/allocation has been done. The high-level synthesis benchmarks AR, FIR and EWF filters were synthesized and the power was reduced by 8-25% without an increase in the area and 18-60% with a marginal increase in area but without any increase in delay." @default.
- W2252919992 created "2016-06-24" @default.
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- W2252919992 date "1996-10-03" @default.
- W2252919992 modified "2023-09-24" @default.
- W2252919992 title "A design methodology for synthesis of application specific multi-chip module architectures" @default.
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