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Dynamic power management with power network-on-chip

机译:片上电源网络的动态电源管理

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A critical challenge in multifunctional heterogeneous systems-on-chip is delivering high quality dynamically controlled power to support power efficient and portable systems. Efficiently providing multiple point-of-load on-chip voltages requires fundamental changes to the power delivery and management process. The concept of a power network on-chip (PNoC) is introduced here as a general scalable platform for delivering and managing power. This network provides enhanced power control and real-time management of resource sharing for systematic and scalable management of the power delivery process in heterogeneous integrated circuits. To evaluate the performance of the proposed power delivery and management system, a PNoC with four power routers is investigated which supplies power to four power domains. The behavior of the individual power domains is modeled with IBM power grid benchmarks. The proposed architecture and circuits for sensing, routing, and dynamic control of the on-chip power are described. The built-in modularity of the PNoC is exploited to apply dynamic voltage scaling, illustrating the scalability of the PNoC platform while exhibiting power savings of up to 32%.
机译:多功能异构异构片上系统中的关键挑战是提供高质量的动态控制电源,以支持高效节能的便携式系统。要有效地提供多个负载点片上电压,就需要对功率传输和管理过程进行根本性的改变。此处介绍了片上电源网络(PNoC)的概念,作为用于传输和管理电源的通用可扩展平台。该网络提供了增强的功率控制和资源共享的实时管理功能,可用于异构集成电路中功率传输过程的系统化和可扩展性管理。为了评估所提出的电力输送和管理系统的性能,研究了具有四个电力路由器的PNoC,该PNoC为四个电力域供电。各个电源域的行为是使用IBM电网基准测试建模的。描述了用于片上功率的感测,路由和动态控制的所提议的体系结构和电路。利用PNoC的内置模块来进行动态电压缩放,从而说明了PNoC平台的可扩展性,同时节省了多达32%的功率。

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