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Neuromorphic Controller for Low Power Systems From Devices to Circuits.

机译:从设备到电路的低功耗系统的神经形态控制器。

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摘要

A workload-aware low-power neuromorphic controller for dynamic power and thermal management in VLSI systems is presented. The neuromorphic controller predicts future workload and temperature values based on the past values and CPU performance counters and preemptively regulates supply voltage and frequency. System-level measurements from state-of-the-art commercial microprocessors are used to get workload, temperature and CPU performance counter values. The controller is designed and simulated using circuit-design and synthesis tools. At device-level, on-chip planar inductors suffer from low inductance occupying large chip area. On-chip inductors with integrated magnetic materials are designed, simulated and fabricated to explore performance-efficiency trade offs and explore potential applications such as resonant clocking and on-chip voltage regulation. A system level study is conducted to evaluate the effect of on-chip voltage regulator employing magnetic inductors as the output filter. It is concluded that neuromorphic power controller is beneficial for fine-grained per-core power management in conjunction with on-chip voltage regulators utilizing scaled magnetic inductors.
机译:提出了一种工作负载感知的低功耗神经形态控制器,用于VLSI系统中的动态功率和热管理。神经形态控制器根据过去的值和CPU性能计数器预测未来的工作量和温度值,并预先调节电源电压和频率。来自最先进的商用微处理器的系统级测量用于获取工作负载,温度和CPU性能计数器值。使用电路设计和综合工具对控制器进行设计和仿真。在器件级别,片上平面电感器的电感低,占用的芯片面积大。设计,模拟和制造具有集成磁性材料的片上电感器,以探索性能效率的折衷方案,并探索诸如谐振时钟和片上电压调节之类的潜在应用。进行了系统级研究,以评估采用磁感应器作为输出滤波器的片上稳压器的效果。结论是,神经形态功率控制器与采用比例磁感应器的片上稳压器结合,可用于细粒度的每核功率管理。

著录项

  • 作者

    Sinha, Saurabh.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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