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Architecture of the reconfigurable ultrasonic system-on-chip hardware platform

机译:可重构超声片上系统硬件平台的体系结构

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Design of ultrasonic signal processing systems requires a paradigm shift to fully utilise the benefits of recent advancements in the field of integrated circuits. It is necessary to design a standardised common platform that provides the flexibility to develop both software and hardware solutions. This enables the user to explore the full design space including software only, hardware only, and hardware/software co-design. To fulfil this purpose, the authors introduce the reconfigurable ultrasonic system-on-chip hardware (RUSH) platform. RUSH provides a common basis which significantly reduces the effort required to develop an ultrasonic signal processing system able to process the full range of ultrasound from 20 kHz to 20 MHz. Furthermore, this study aims to make the design and implementation of signal processing algorithms in embedded software and reconfigurable hardware very efficient. To demonstrate the computational efficiency and design flexibility of the RUSH platform, several important computationally intense algorithms such as split spectrum processing, chirplet signal decomposition and coherent averaging have been successfully ported to the RUSH platform, emphasising the many parts of the RUSH architecture.
机译:超声信号处理系统的设计需要进行范式转换,以充分利用集成电路领域最新进展的优势。必须设计一个标准化的通用平台,该平台必须具有开发软件和硬件解决方案的灵活性。这使用户可以探索整个设计空间,包括仅软件,仅硬件以及硬件/软件协同设计。为了实现此目的,作者介绍了可重新配置的超声片上系统硬件(RUSH)平台。 RUSH提供了一个通用基础,可显着减少开发能够处理20 kHz至20 MHz整个范围的超声信号的超声信号处理系统所需的工作。此外,本研究旨在使嵌入式软件和可重配置硬件中信号处理算法的设计和实现非常高效。为了证明RUSH平台的计算效率和设计灵活性,已成功将几种重要的计算密集型算法(如拆分频谱处理,chirplet信号分解和相干平均)移植到RUSH平台,从而强调了RUSH架构的许多部分。

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