首页> 外文会议>Annual genetic and evolutionary computation conference;GECCO-2010 >Improving Reliability ot Embedded Systems through Dynamic Memory Manager Optimization using Grammatical Evolution*
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Improving Reliability ot Embedded Systems through Dynamic Memory Manager Optimization using Grammatical Evolution*

机译:通过使用语法演变的动态内存管理器优化来提高嵌入式系统的可靠性*

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Technology scaling has offered advantages to embedded systems, such as increased performance, more available memory and reduced energy consumption. However, scaling also brings a number of problems like reliability degradation mechanisms. The intensive activity of devices and high operating temperatures are key factors for reliability degradation in latest technology nodes. Focusing on embedded systems, the memory is prone to suffer reliability problems due to the intensive use of dynamic memory on wireless and multimedia applications. In this work we present a new approach to automatically design dynamic memory managers considering reliability, and improving performance, memory footprint and energy consumption. Our approach, based on Grammatical Evolution, obtains a maximum improvement of 39% in execution time, 38% in memory usage and 50% in energy consumption over state-of-the-art dynamic memory managers for several real-life applications. In addition, the resulting distributions of memory accesses improve reliability. To the best of our knowledge, this is the first proposal for automatic dynamic memory manager design that considers reliability.
机译:技术扩展为嵌入式系统提供了优势,例如提高了性能,增加了可用内存并降低了能耗。但是,缩放也带来了许多问题,例如可靠性降低机制。设备的密集活动和高工作温度是最新技术节点中可靠性下降的关键因素。专注于嵌入式系统,由于动态内存在无线和多媒体应用程序上的大量使用,因此内存容易出现可靠性问题。在这项工作中,我们提出了一种自动设计动态内存管理器的新方法,该方法考虑了可靠性并改善了性能,内存占用空间和能耗。我们的方法基于Grammical Evolution,与几种实际应用中的最新动态内存管理器相比,在执行时间,39%的内存使用和50%的能耗方面的最大改进是39%。另外,所产生的存储器访问分布提高了可靠性。据我们所知,这是考虑到可靠性的自动动态内存管理器设计的第一个建议。

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