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Dynamic and Traffic-Aware Medium Access Control Mechanisms for Wireless NoC Architectures

机译:无线NOC架构的动态和流量感知媒体访问控制机制

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摘要

Wireless NoC (WiNoC) has low latency and simple wiring, which can reduce the energy consumption caused by the metal interconnection in traditional NoC architectures. However, traditional time division based media access control (MAC) mechanism in WiNoC is not aware of different wireless interfaces’ (WIs) traffic demands, resulting in an unreasonable distribution of wireless communication channels and degradation in performance. Hence, in order to dynamically allocate wireless channels to the WIs based on their traffic demands, a dynamic and traffic-aware MAC mechanism is required. In this paper, we design a traffic demand predictor for each WI based on its current and history traffic conditions. According to the predicted demands, we are able to allocate access to wireless channels dynamically and switch between two kinds of time division based MAC mechanisms. Simulations under various conditions indicate that the average delay decreases by 30% and 20% on average compared with a traditional MAC mechanism and an existing dynamic time division based one, respectively. Moreover, the network with the dynamic and traffic-aware MAC enters the saturation point at a higher packet injection rate.
机译:无线NOC(WinoC)具有低延迟和简单的布线,可以降低传统NoC架构中的金属互连引起的能耗。然而,WinoC中的传统时分基于时分的媒体访问控制(MAC)机制不知道不同的无线接口(WIS)业务需求,从而导致无线通信信道的不合理分布和性能下降。因此,为了基于其业务需求动态地将无线信道动态分配给WIS,需要动态和流量感知的MAC机制。在本文中,我们根据其当前和历史流量条件设计每个WI的业务需求预测器。根据预测的要求,我们能够动态地分配对无线信道的访问,并在两种时间分割的MAC机制之间切换。在各种条件下的模拟表明,与传统的MAC机制和现有的动态时间分分,平均延迟平均降低了30%和20%。此外,具有动态和流量感知MAC的网络以更高的分组注入速率进入饱和点。

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