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Path Loss-aware Adaptive Transmission Power Control Scheme for Energy-efficient Wireless NoC

机译:用于节能无线NOC的路径损耗感知自适应传输功率控制方案

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Wireless Networks-on-Chip (WiNoCs) offer unprecedented advantages to replace the long-distance multi-hop communication bottlenecks of conventional NoCs by augmenting them with a single hop, long-range wireless links in many-core systems. In wireless interfaces (WIs), RF transceiver components are consuming a significant amount of total power budgets to replace the multi-hop communications. Specifically, transmitter accounts a notable portion of overall transmission energy. To improve energy efficiency, we propose the Path Loss-aware Adaptive Transmission Power Control (PATPC) scheme using multi-voltage scaling based on present destination. To implement this, we estimate the required power using path loss model for the on-chip wireless channel. Proposed method is achieved an average energy saving of 53% for transmitting at half of distance compared with traditional approaches with low silicon overheads.
机译:无线网络上的(Winocs)通过在许多核心系统中使用单跳,远程无线链路增强它们来提出前所未有的优势,以取代传统NOC的长距离多跳通信瓶颈。在无线接口(WIS)中,RF收发器组件正在消耗大量的总功率预算来替换多跳通信。具体地,发射机占整体传输能量的显着部分。为了提高能量效率,我们提出了使用基于当前目的地的多电压缩放的路径损耗感知自适应传输功率控制(PatPC)方案。为了实现这一点,我们使用片上无线信道的路径损耗模型来估计所需的电力。与具有低硅开销的传统方法相比,所提出的方法实现了53%的53%,以距离的一半距离。

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