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Automated Integration of Dynamic Power Management into FPGA-Based Design

机译:动态电源管理自动集成到基于FPGA的设计

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摘要

A low power or energy efficient hardware operation is nowadays gaining attention. It is especially true for battery-operated or energy-harvesting devices, such as most of the Internet of Things end nodes. For specific applications with rather limited market, the FPGAs are very good alternative. However, evolution of these devices is focused on high-level programming, giving application designers space to focus on application function rather than to be concerned about its low-level implementation on FPGA device - it is handled by automation tools. Thus, new FPGA-application designers are nowadays not very familiar with hardware aspects and it is difficult for them to apply power-reduction techniques in order to create an energy-efficient system. This paper is focused on automation of power-management integration into the FPGA-application design based on abstract specification, which is easy-to-use even for unfamiliar designers. It simplifies and speeds-up the low-power and energy-efficient FPGA-application design process. Moreover, the automation prevents many human-errors and thus it also alleviates the verification process. Experimental results indicate that the proposed power-management scheme is working correctly and it can be automatically generated.
机译:如今,低功耗或节能硬件操作正在获得关注。对于电池操作或能量收集设备尤其如此,例如大多数事物互联网节点。对于具有相当有限的市场的特定应用,FPGA是非常好的替代品。然而,这些设备的演变专注于高级编程,为应用设计人员专注于应用功能,而不是担心其在FPGA设备上的低级实现 - 它由自动化工具处理。因此,新的FPGA应用设计人员现在不是很熟悉硬件方面,并且它们难以应用功耗技术以创建节能系统。本文的专注于基于抽象规范的电力管理集成到FPGA应用设计的自动化,即使对于不熟悉的设计师,易于使用。它简化和加速了低功耗和节能FPGA应用设计过程。此外,自动化防止了许多人类错误,因此它还减轻了验证过程。实验结果表明,所提出的电源管理方案正常工作,可以自动生成。

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