Tangle: Route-oriented dynamic voltage minimization for variation-afflicted, energy-efficient on-chip networks

Amin Ansari, Asit K. Mishra, Jianping Xu, J. Torrellas
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引用次数: 29

Abstract

On-chip networks are especially vulnerable to within-die parameter variations. Since they connect distant parts of the chip, they need to be designed to work under the most unfavorable parameter values in the chip. This results in energy-inefficient designs. To improve the energy efficiency of on-chip networks, this paper presents a novel approach that relies on monitoring the errors of messages as they traverse the network. Based on the observed errors of messages, the system dynamically decreases or increases the voltage (Vdd) of groups of network routers. With this approach, called Tangle, the different Vdd values applied to different groups of network routers progressively converge to their lowest, variation-aware, error-free values - always keeping the network frequency unchanged. This saves substantial network energy. In a simulated 64-router network with 4 Vdd domains, Tangle reduces the network energy consumption by an average of 22% with negligible performance impact. In a future network design with one Vdd domain per router, Tangle lowers the network Vdd by an average of 21%, reducing the network energy consumption by an average of 28% with negligible performance impact.
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缠结:面向路由的动态电压最小化的变化影响,节能片上网络
片上网络特别容易受到芯片内参数变化的影响。由于它们连接芯片的较远部分,因此需要将它们设计为在芯片中最不利的参数值下工作。这导致了能源效率低下的设计。为了提高片上网络的能源效率,本文提出了一种新的方法,该方法依赖于监测消息在网络中传输时的错误。根据观察到的消息错误,系统动态地降低或增加网络路由器组的电压(Vdd)。通过这种称为Tangle的方法,应用于不同网络路由器组的不同Vdd值逐渐收敛到其最低的、可感知变化的、无错误的值——始终保持网络频率不变。这节省了大量的网络能量。在具有4个Vdd域的64路由器模拟网络中,Tangle平均降低了22%的网络能耗,而性能影响可以忽略不计。在未来每台路由器一个Vdd域的网络设计中,Tangle平均降低了21%的网络Vdd,平均降低了28%的网络能耗,而性能影响可以忽略不计。
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