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Logic Synthesis for FPGA-Based Mealy Finite State Machines: Structural Decomposition in Logic Design by Barkalov, Alexander & Titarenko, Larysa & Krzywicki, Kazimierz is a book available to read on EtoBox.
What is Logic Synthesis for FPGA-Based Mealy Finite State Machines: Structural Decomposition in Logic Design about?
This book is devoted to the logic synthesis of field programmable gate array (FPGA)-based circuits of Mealy finite state machines (FSM). Three new methods of state assignment are proposed, which allows obtaining FSM circuits required minimum amount of internal chip resources. Logic Synthesis for FPGA-based Mealy Finite State Machines: Structural Decomposition in Logic Design contains several original synthesis and optimization methods based on the structural decomposition of FPGA-based FSM circuits developed by the authors. To optimize FSM circuits, the authors introduce the use of three methods of state assignment: twofold, extended, and composite. These methods allow for the creation of two- or three-level architectures of FSM circuits. The authors also demonstrate how the proposed methods, FSM architectures and synthesis methods can replace known solutions based on either functional decomposition or classical methods of structural decomposition. The authors also show how these architectures have regular systems of interconnections and demonstrate positive features compared to methods based on functional decomposition, including producing circuits with fewer elements that are fas
- Author
- Barkalov, Alexander & Titarenko, Larysa & Krzywicki, Kazimierz
- Publisher
- CRC Press
- Published
- 2024
- Language
- EN
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