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Verification of the Power and Ground Grids Under General and Hierarchical Constraints

机译:在一般约束和层次约束下对电源和地面电网的验证

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As part of power distribution network verification, one should check if the voltage fluctuations exceed some critical threshold. The traditional simulation-based solution to this problem is intractable due to the large number of possible circuit behaviors. This approach also requires full knowledge of the details of the underlying circuitry, not allowing one to verify the power distribution network early in the design flow. Contrary to previous work on power distribution network verification, we consider the power and ground (P/G) grids together and describe an early verification approach under the framework of current constraints. Then, we present a solution technique in which tight lower and upper bounds on worst case voltage fluctuations are computed via linear programs. Experimental results indicate that the proposed technique results in errors in the range of a few millivolts. In addition to P/G grid verification techniques, we also provide very efficient solution technique to power (single) grid verification under hierarchical current constraints.
机译:作为配电网络验证的一部分,应该检查电压波动是否超过某个临界阈值。由于存在大量可能的电路行为,因此传统的基于仿真的解决方案很难解决。这种方法还要求完全了解底层电路的详细信息,而不允许人们在设计流程的早期验证配电网络。与以前的配电网络验证工作相反,我们将电源和地面(P / G)网格一起考虑,并描述了在当前约束条件下的早期验证方法。然后,我们提出一种解决方案技术,其中通过线性程序计算最坏情况下的电压波动的上下限。实验结果表明,提出的技术会导致几毫伏范围的误差。除了P / G网格验证技术外,我们还提供了非常有效的解决方案技术,可在分层电流约束下对电源(单个)网格进行验证。

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