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Energy-aware assignment and scheduling for hybrid main memory in embedded systems

机译:嵌入式系统中混合主内存的能源感知分配和调度

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摘要

In embedded systems, especially battery-driven mobile devices, energy is one of the most critical performance metrics. Due to its high density and low standby power, phase change memory (PCM), an emerging non-volatile memory device, is becoming a promising dynamic random access memory (DRAM) alternative. Recent studies have proposed the hybrid main memory architecture integrating both PCM and DRAM to fully take advantage of the properties of both memories. However, the low power performance of PCM in the hybrid main memory architecture has not been fully explored. Therefore, it becomes an interesting problem to utilize PCM and DRAM as hybrid main memory for energy optimization in embedded systems. In this paper, we present an energy optimization technique for hybrid main memory architecture. The objective is to fully utilize PCM to reduce the energy consumption while ensuring that the real-time performance of applications are guaranteed. We propose a two-phase approach to solve hybrid main memory address mapping problem. In the first phase, we calculate energy and time cost for each address based on the task models. Then the applications can be modeled as data-flow graph nodes, and different access times will associate with different energy consumption. In the second phase, for different memory types and the given timing constraint, we formulate the scheduling problem as an integer linear programming (ILP) model and obtain an optimal solution. The ILP model can map a proper memory type for each address such that the total energy consumption can be minimized while the timing constraint is satisfied. In addition, we propose a heuristic approach to efficiently obtain a near-optimal solution. We conduct experiments on an ARM-based simulator. The experimental results show that our method can effectively reduce the energy consumption with the least system cost compared with the previous work.
机译:在嵌入式系统中,尤其是电池驱动的移动设备中,能源是最关键的性能指标之一。由于其高密度和低待机功耗,相变存储器(PCM)是一种新兴的非易失性存储设备,正成为一种有前途的动态随机存取存储器(DRAM)替代产品。最近的研究提出了将PCM和DRAM集成在一起的混合主存储器架构,以充分利用两个存储器的特性。但是,在混合主存储器架构中PCM的低功耗性能尚未得到充分研究。因此,利用PCM和DRAM作为混合主存储器来进行嵌入式系统中的能量优化成为一个有趣的问题。在本文中,我们提出了一种用于混合主存储器架构的能量优化技术。目的是在确保应用程序的实时性能的同时,充分利用PCM来降低能耗。我们提出了一种两阶段方法来解决混合主存地址映射问题。在第一阶段,我们根据任务模型计算每个地址的能源和时间成本。然后,可以将应用建模为数据流图节点,并且不同的访问时间将与不同的能耗相关联。在第二阶段中,对于不同的存储器类型和给定的时序约束,我们将调度问题公式化为整数线性规划(ILP)模型,并获得最优解。 ILP模型可以为每个地址映射一个适当的存储器类型,从而可以在满足时序约束的同时将总能耗降至最低。另外,我们提出了一种启发式方法来有效地获得接近最优的解决方案。我们在基于ARM的模拟器上进行实验。实验结果表明,与以前的工作相比,该方法能够以最低的系统成本有效降低能耗。

著录项

  • 来源
    《Computing》 |2016年第3期|279-301|共23页
  • 作者单位

    Capital Normal Univ, Coll Informat Engn, Beijing, Peoples R China|Capital Normal Univ, Sch Math Sci, Beijing, Peoples R China;

    Capital Normal Univ, Coll Informat Engn, Beijing, Peoples R China;

    Shenzhen Univ, Guangdong Prov Key Lab Popular High Performance C, Shenzhen, Peoples R China|Hong Kong Polytech Univ, Dept Comp, Embedded Syst & CPS Lab, Kowloon, Hong Kong, Peoples R China;

    Hong Kong Polytech Univ, Dept Comp, Embedded Syst & CPS Lab, Kowloon, Hong Kong, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PCM (phase change memory); Hybrid memory architecture; Energy consumption; Embedded systems;

    机译:PCM(相变存储器);混合存储体系结构;能耗;嵌入式系统;

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