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System-Level Power Estimation with On-Chip Bus Performance Monitoring Units in PKU-DSPII SoC

机译:PKU-DSPII SoC中带有片上总线性能监视单元的系统级功率估计

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Runtime system-level power estimation is essential for dynamic power adaptation in integrated circuits. Indirect power estimation using a CPU performance monitoring unit (PMU) is widely used in modern microprocessors for its low cost. However, the existing CPU PMUs only monitor the activities of core and cache, resulting in accuracy limitation in power estimation for systems containing heterogeneous devices. In this paper, an on-chip bus PMU (OCB PMU) is proposed for PKU-DSPII SOC to achieve accurate system-level power estimation by taking range of peripheral devices into account. By monitoring the on-chip bus signals which indicate almost all the information of the system behavior, an OCB PMU is able to recognize different types of devices. By imitating the internal behavior of every device triggered by OCB signals using an energy state machine (ESM), an OCB PMU is capable of accurate power estimation of heterogeneous devices with complicated behavior. The proposed PMUs can also flexibly adapt to different SoC architectures.
机译:运行时系统级功率估计对于集成电路中的动态功率自适应至关重要。使用CPU性能监视单元(PMU)的间接功率估计由于其低成本而在现代微处理器中得到了广泛使用。但是,现有的CPU PMU仅监视内核和高速缓存的活动,从而导致包含异构设备的系统的功率估计准确性受到限制。本文针对PKU-DSPII SOC提出了一种片上总线PMU(OCB PMU),以通过考虑外围设备的范围来实现准确的系统级功率估计。通过监视表明系统行为几乎所有信息的片上总线信号,OCB PMU能够识别不同类型的设备。通过使用能量状态机(ESM)模仿OCB信号触发的每个设备的内部行为,OCB PMU能够准确评估具有复杂行为的异构设备的功率。提议的PMU也可以灵活地适应不同的SoC架构。

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