HW/SW co-design for reconfigurable Ultrasonic System-on-Chip platform
Pramod Govindan, Spenser Gilliland, Thomas Gonnot, Jafar Saniie
Abstract
Pramod Govindan, Spenser Gilliland, Thomas Gonnot, Jafar Saniie
Abstract
Efficient partitioning of hardware and software is essential for an optimized system design with a reduced development time. A reconfigurable Ultrasonic System-on-Chip Hardware (RUSH) platform has been developed to allow flexibility in system development for real-time ultrasonic signal processing applications via hardware-software (HW/SW) co-design. In this paper, we analyze how the various components within the RUSH system are split into hardware and software. Hence RUSH provides an industry standard development platform for both hardware and software designers.
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Efficient partitioning of hardware and software is essential for an optimized system design with a reduced development time. A reconfigurable Ultrasonic System-on-Chip Hardware (RUSH) platform has been developed to allow flexibility in system development for real-time ultrasonic signal processing applications via hardware-software (HW/SW) co-design. In this paper, we analyze how the various components within the RUSH system are split into hardware and software. Hence RUSH provides an industry standard development platform for both hardware and software designers.
Key concepts: Embedded system, Flexibility (engineering), Software, System on a chip, Computer science, Computer hardware, Field-programmable gate array, Software design