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首页> 外文期刊>Japanese journal of applied physics >Evaluation of reinitialization-free nonvolatile computer systems for energy-harvesting Internet of things applications
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Evaluation of reinitialization-free nonvolatile computer systems for energy-harvesting Internet of things applications

机译:用于能量收集物联网应用的无需重新初始化的非易失性计算机系统的评估

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In this paper, reinitialization-free nonvolatile computer systems are designed and evaluated for energy-harvesting Internet of things (IoT) applications. In energy-harvesting applications, as power supplies generated from renewable power sources cause frequent power failures, data processed need to be backed up when power failures occur. Unless data are safely backed up before power supplies diminish, reinitialization processes are required when power supplies are recovered, which results in low energy efficiencies and slow operations. Using nonvolatile devices in processors and memories can realize a faster backup than a conventional volatile computer system, leading to a higher energy efficiency. To evaluate the energy efficiency upon frequent power failures, typical computer systems including processors and memories are designed using 90nm CMOS or CMOS/magnetic tunnel junction (MTJ) technologies. Nonvolatile ARM Cortex-M0 processors with 4kB MRAMs are evaluated using a typical computing benchmark program, Dhrystone, which shows a few order-of-magnitude reductions in energy in comparison with a volatile processor with SRAM. (C) 2017 The Japan Society of Applied Physics
机译:在本文中,设计并评估了无需重新初始化的非易失性计算机系统,以用于能量收集的物联网(IoT)应用程序。在能量收集应用中,由于可再生电源产生的电源会引起频繁的电源故障,因此在电源故障发生时需要备份处理的数据。除非在电源减少之前就安全地备份了数据,否则在恢复电源时需要重新初始化过程,这将导致低能源效率和缓慢运行。与传统的易失性计算机系统相比,在处理器和存储器中使用非易失性设备可以实现更快的备份,从而提​​高能源效率。为了评估频繁断电时的能效,使用90nm CMOS或CMOS /磁性隧道结(MTJ)技术设计了包括处理器和内存在内的典型计算机系统。使用典型的计算基准测试程序Dhrystone对具有4kB MRAM的非易失性ARM Cortex-M0处理器进行了评估,与带有SRAM的易失性处理器相比,该程序显示出能耗降低了几个数量级。 (C)2017日本应用物理学会

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