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Power Management Controller for Online Power Saving in Network-on-Chips

机译:用于在线芯片的在线省电的电源管理控制器

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Growing chip integration density and increasing frequencies lead to tremendous leakage power and henceforth to chip heat problems. Power management is one possibility to reduce the power consumption and get the temperature problem under control. Current technology mainly focuses on power-gating techniques on basis of multi-core systems but leaving the network perspective out of scope. We provide a holistic concept, bringing together power-gating and frequency scaling techniques for network-on-chips. Following this, network static power consumption could be minimized without affecting the system performance. We present a light-weight power management controller for network-on-chips with online monitoring to optimize the power consumption of network resources. Our work comprises a hardware simulation model for design space exploration of varying technology specific parameters and an FPGS based prototype for verification. The power saving potential heavily depend on the network communication load. Our power controller adds only 2.1% of resources while 28.11% of the total power could be saved with clock gating.
机译:增长芯片集成密度和增加的频率导致巨大的泄漏功率和从此从此发热。电源管理是降低功耗的一种可能性,并在控制下获得温度问题。目前的技术主要集中在多核系统的基础上专注于电源门控技术,但将网络视角脱离范围。我们提供整体概念,带来用于网络上的电源门控和频率缩放技术。在此之后,可以最小化网络静电功耗而不会影响系统性能。我们为网络上进行了轻量级电源管理控制器,具有在线监控,以优化网络资源的功耗。我们的工作包括一个硬件仿真模型,用于改变技术特定参数的设计空间探索和基于FPG的原型进行验证。省电潜力重大依赖于网络通信负载。我们的电力控制器仅增加了2.1%的资源,而28.11%的总功率可以使用时钟门控保存。

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