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Power-aware Routing For Well-nested Communications On The Circuit Switched Tree

机译:电路交换树上的嵌套通信的电源感知路由

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Although algorithms that employ dynamic reconfiguration are extremely fast, they need the underlying architecture to change structure very rapidly, possibly at each step of the computation. This increases the power requirement of such algorithms, which is not acceptable in current devices that strive to reduce the power requirements. This paper deals with the circuit switched tree (CST), an interconnect used to implement dynamically reconfigurable architectures. In this paper, we introduce a new technique called Power-Aware Dynamic Reconfiguration (PADR). Under this technique, we propose a power-aware algorithm for configuring the CST and scheduling a class of communications, called the well-nested communications on the CST. We show that the algorithm is power optimal. The algorithm requires only local information at processing elements (PEs), yet it correctly establishes paths between communicating PEs. We also show that the algorithm is optimal and efficient.
机译:尽管采用动态重新配置的算法非常快,但是它们需要基础架构来非常快速地更改结构,可能在计算的每个步骤中。这增加了这种算法的功率需求,这在努力降低功率需求的当前设备中是不可接受的。本文涉及电路交换树(CST),这是一种用于实现动态可重配置架构的互连。在本文中,我们介绍了一种称为Power-Aware动态重配置(PADR)的新技术。在这种技术下,我们提出了一种功率感知算法,用于配置CST和调度一类通信,称为CST上的嵌套通信。我们证明该算法是功率最佳的。该算法仅需要处理元素(PE)上的本地信息,但可以正确建立通信PE之间的路径。我们还表明该算法是最优且高效的。

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