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Analysis and Minimization of Power-Transmission Loss in Locally Daisy-Chained Systems by Local Energy Buffering

机译:通过局部能量缓冲分析和最小化菊花链系统中的输电损耗

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Power-transmission loss can be a severe problem for low-power embedded systems organized in a daisy-chain topology. The loss can be so high that it can result in failure to power the load in the first place. The first contribution of this article is a recursive algorithm for solving the transmission current on each segment of the daisy chain at a given supply voltage. It enables solving not only the transmission loss but also reports infeasible configurations if the voltage is too low. Using this core algorithm, our second contribution is to find energy-efficient configurations that use local energy buffers (LEBs) to eliminate peak load on the bus without relying on high voltage. Experimental results confirm that our proposed techniques significantly reduce the total energy consumption and enable the deployed system to operate for significantly longer.
机译:对于以菊花链拓扑结构组织的低功耗嵌入式系统,功率传输损耗可能是一个严重的问题。损耗可能会很高,以至于一开始就可能导致无法为负载供电。本文的首要贡献是一种递归算法,用于求解给定电源电压下菊花链各段上的传输电流。如果电压太低,它不仅可以解决传输损耗,而且还可以报告不可行的配置。使用这种核心算法,我们的第二个贡献是找到了节能配置,这些配置使用本地能量缓冲器(LEB)消除了总线上的峰值负载,而无需依靠高压。实验结果证实,我们提出的技术可显着降低总能耗,并使部署的系统运行更长的时间。

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