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Power Network Optimization Based on Link Breaking Methodology

机译:基于链路断开方法的电网优化

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摘要

A link breaking methodology is introduced to reduce voltage degradation within mesh structured power distribution networks. The resulting power distribution network combines a single power distribution network to lower the network impedance, and multiple networks to reduce noise coupling among the circuits. Since the sensitivity to supply voltage variations within a power distribution network can vary among various circuits, the proposed methodology reduces the voltage drop at the more sensitive circuits, while penalizes the less sensitive circuits. Each circuit can behave as an aggressor as well as a victim. The methodology utilizes two matrices describing the aggressiveness and sensitivity of a circuit. The proposed methodology is evaluated for multiple case studies, demonstrating a reduction in the voltage drop in the sensitive circuits. Based on these case studies, the voltage is improved by 5% at those nodes with the highest sensitivity. The voltage prior to application of the link breaking methodology is 96% of the ideal power supply voltage. Lowering the noise on the power network enhances the maximum operating frequency by 16% by utilizing the proposed link breaking methodology. The link breaking methodology has also been compared with a multiple voltage domain methodology, achieving 7% improvement in operating frequency.
机译:引入了链路断开方法,以减少网状结构的配电网络内的电压降级。最终的配电网络结合了一个配电网络以降低网络阻抗,以及多个网络以减少电路之间的噪声耦合。由于配电网络中对电源电压变化的敏感度可能会在各个电路之间变化,因此,所提出的方法可降低敏感度较高的电路上的电压降,同时惩罚敏感度较低的电路。每个电路都可以充当侵略者和受害者。该方法利用两个矩阵来描述电路的主动性和敏感性。对所提出的方法进行了评估,以进行多个案例研究,证明了灵敏电路中电压降的降低。根据这些案例研究,在那些灵敏度最高的节点上,电压提高了5%。在应用链路断开方法之前的电压是理想电源电压的96%。通过利用建议的链路断开方法,降低电网上的噪声可使最大工作频率提高16%。还已将链路断开方法与多电压域方法进行了比较,从而将工作频率提高了7%。

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