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Lightweight Message Encoding of Power-Gating Controller for On-Time Wakeup of Gated Router in Network-on-Chip

机译:片上网络中门控路由器的实时唤醒的功率门控控制器的轻量级消息编码

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Power-gating has become one of the most widely used circuit design techniques to mitigate static power. Routers are the major contributor in Networks-on-Chip (NoC) power. The high idle time of practical applications can be utilised to power-off (gated) router in NoC. However, network performance is being compromised as the gated router disconnects the associated node from the rest of the network. Packets in the network face a router wakeup latency before reaching to their destinations. In this paper, we propose a Leon, Lightweight message encoding scheme for power-gating controller to wakeup the sleeping router at right-time on arrival of the packet. We maximize power-gating time of router by wakeup them not early than the required to a packet to maximize static power gains. Simultaneously, the packet does not face wakeup latency of the router as the prior sending of wakeup messages through dedicated signal lines activate router at exactly right-time when it is required. Thus, our proposed message encoding achieves a performance-aware maximal static power reduction wherein control signals stay ahead of packets and preventing packets from having to suffer router wakeup latency. Our experiments show that Leon reduces 39% network latency as compared to conventional power-gating. It enables total static power savings up to 89% on low traffic with a minor overhead in area and power over conventional power-gating. Also, hardware implementation benefits are 83% in area and 70% in power over state-of-the-art encoding.
机译:电源门控已成为缓解静态功耗最广泛使用的电路设计技术之一。路由器是片上网络(NoC)功率的主要贡献者。实际应用中的高空闲时间可用于关闭NoC中的路由器(门控)电源。但是,由于门控路由器将关联的节点与网络的其余部分断开连接,网络性能正在受到损害。网络中的数据包在到达目的地之前会面临路由器唤醒延迟。在本文中,我们提出了一种用于功率门控控制器的莱昂轻量级消息编码方案,以便在数据包到达时的正确时间唤醒睡眠路由器。我们通过不早于数据包所需的时间唤醒路由器来最大程度地增加路由器的功率门控时间,以最大程度地提高静态功率增益。同时,由于先前通过专用信号线发送唤醒消息的时间恰好在需要时激活路由器,因此数据包不会面临路由器的唤醒延迟。因此,我们提出的消息编码实现了性能感知的最大静态功耗降低,其中控制信号保持在数据包之前,并防止数据包遭受路由器唤醒延迟。我们的实验表明,与传统的电源门控相比,Leon减少了39%的网络延迟。与传统的电源门控相比,它在低流量的情况下可节省多达89%的总静态功耗,并且在面积和功耗上的开销很小。而且,与最新的编码相比,硬件实现的好处是面积减少了83%,功耗减少了70%。

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