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Design Abstraction for Autonomous Adaptive Hardware Systems on FPGAs

机译:FPGA上的自适应硬件系统的设计抽象

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Adaptive hardware is gaining importance with the emergence of more autonomous systems that must process large volumes of sensor data and react within tight deadlines. To support such computation within the constraints of embedded deployments, a blend of high throughput hardware processing and adaptive control is required. FPGAs offer an ideal platform for implementing such systems by virtue of their hardware flexibility and sensor interfacing capabilities. FPGA SoCs are specifically well suited offering capable embedded processors that are tightly coupled with a flexible high performance FPGA fabric. This paper explores existing work on adaptive hardware systems before proposing a general model and implementation approach tailored towards these modern FPGA architectures, concluding with pointers for research in this emerging field.
机译:随着越来越多的自治系统的出现,自适应硬件变得越来越重要,该系统必须处理大量传感器数据并在紧迫的期限内做出反应。为了在嵌入式部署的限制内支持此类计算,需要高吞吐量硬件处理和自适应控制的融合。 FPGA凭借其硬件灵活性和传感器接口功能,为实现此类系统提供了理想的平台。 FPGA SoC特别适合提供功能强大的嵌入式处理器,并与灵活的高性能FPGA架构紧密耦合。本文在提出针对这些现代FPGA架构量身定制的通用模型和实现方法之前,探索了有关自适应硬件系统的现有工作,并为该新兴领域的研究提供了指导。

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