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The EH Model: Early Design Space Exploration of Intermittent Processor Architectures

机译:EH模型:间歇处理器架构的早期设计空间探索

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Energy-harvesting devices-which operate solely on energy collected from their environment-have brought forth a new paradigm of intermittent computing. These devices succumb to frequent power outages that would cause conventional systems to be stuck in a perpetual loop of restarting computation and never making progress. Ensuring forward progress in an intermittent execution model requires saving state in nonvolatile memory (backup) and potentially re-executing from the last saved state upon a power loss (restore). The interplay between spending energy on useful processing and spending energy on these necessary overheads yield unexpected trade-offs. To facilitate early design space exploration, the field of intermittent computing requires better models for 1) generalizing and reasoning about these trade-offs and 2) helping architects and programmers in making early-stage design decisions. We propose the EH model, which characterizes an intermittent system's ability to maximize how much of its available energy is spent on useful processor execution. The model parametrizes the energy costs associated with intermittent execution to allow an intuitive understanding of how forward progress can change. We use the EH model to explore how forward progress is impacted with the frequency of backups and the energy cost of backups and restores. We validate the EH model with hardware measurements on an MSP430 and characterize its parameters via simulation. We also demonstrate how architects and programmers can use the model to explore the design space of intermittent processors, derive insights, and model new optimizations that are unique to intermittent processor architectures.
机译:能量收获装置 - 完全由环境中收集的能源 - 带来了一种新的间歇性计算范式。这些设备越来越频繁停电,从而导致传统系统卡在重新启动计算的永久循环中并从未进行进度。确保间歇执行模型中的前进进度需要在非易失性存储器(备份)中保存状态,并且在功率损耗时可能从上次保存状态重新执行(恢复)。在这些必要的架空上的有用处理和消费能源之间的相互作用产生意外的权衡。为了促进早期设计空间探索,间歇性计算领域需要更好的模型来实现1)概括和推理这些权衡和2)帮助建筑师和程序员制作早期设计决策。我们提出了EH模型,其特征是间歇系统最大限度地利用其在有用的处理器执行上的大量可用能量的能力。模型参数化与间歇执行相关的能源成本,以便直观地了解远期进展如何改变。我们使用EH模型来探索转发进度如何影响备份的频率和备份和恢复的能量成本。我们在MSP430上使用硬件测量验证EH模型,并通过模拟表征其参数。我们还展示了架构师和程序员如何使用该模型来探索间歇处理器的设计空间,派生洞察力和模型是间歇处理器架构唯一的新优化。

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