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A Resilient Interface for Approximate Data Access

机译:用于近似数据访问的弹性接口

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Approximate memories offer lower energy cost while introducing errors to applications. If such errors affect essential parts of the application, the execution may fail, decreasing outputs quality and energy savings. We present AxRAM, a memory architecture interface for approximate data that allows applications to benefit from energy savings provided by approximate memories, while improving quality of results and failure rates. AxRAM places critical application data into non-approximate memory regions and implements a resilient addressing scheme that reduces invalid data accesses that lead to application crashes. On a voltage-overscaled SRAM, AxRAM reduces 50.97% of application crashes on average when compared to an unprotected approximate memory. Compared to a system using non-approximate SRAM, our proposal reduces energy consumption by 45.36% on average while providing at least 80% output quality.
机译:近似存储器提供较低的能源成本,同时给应用程序带来错误。如果此类错误影响了应用程序的必要部分,则执行可能会失败,从而降低输出质量并节省能源。我们介绍AxRAM,一种用于近似数据的存储器体系结构接口,使应用程序可以受益于近似存储器提供的能源节省,同时提高结果质量和故障率。 AxRAM将关键的应用程序数据放置在非近似的内存区域中,并实现了一种弹性寻址方案,该方案可减少导致应用程序崩溃的无效数据访问。在电压超标的SRAM上,与无保护的近似存储器相比,AxRAM平均减少了50.97%的应用程序崩溃。与使用非近似SRAM的系统相比,我们的建议将能耗平均降低了45.36%,同时提供了至少80%的输出质量。

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