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Vectorless transient power grid verification: A case study with IBM benchmarks

机译:无向量暂态电网验证:以IBM基准测试为例

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Vectorless power grid verification is a powerful method that evaluates the worst-case voltage noises without detailed current waveforms by using optimization techniques. It is extremely challenging when considering transient current excitations, because transient currents are difficult to model and multiple time steps should be evaluated after the discretization of the system equation. In this work, we propose to perform vectorless verification with transient constraints and power constraints defined per clock period (or per hyper-period of multiple clocks if the grid supports multiple clock domains), so that the worst-case voltage noises of each node at any time step can be computed by transient simulation and solving optimization problems. More importantly, we apply the proposed transient verification approach to build a vectorless verification flow for IBM power grid transient analysis benchmarks, and evaluate the accuracy and runtime performance of the proposed approach with different hierarchical constraint setups. Experimental results show that the avg./max. errors of the proposed approach can be within 6%/9% of VDD, and the runtime to solve the optimization problems can be comparable to (or even larger than) the transient simulation time.
机译:无矢量电网验证是一种强大的方法,可以通过使用优化技术来评估最坏情况下的电压噪声,而无需详细的电流波形。考虑瞬态电流激励时,这极具挑战性,因为瞬态电流很难建模,并且在系统方程离散化之后应评估多个时间步长。在这项工作中,我们建议对每个时钟周期(或在网格支持多个时钟域的情况下,每个时钟的每个超周期定义)的瞬态约束和功率约束执行无矢量验证,以使每个节点在最坏情况下的电压噪声为可以通过瞬态仿真和解决优化问题来计算任何时间步长。更重要的是,我们采用了拟议的瞬态验证方法来为IBM电网瞬态分析基准构建无向量的验证流程,并使用不同的层次约束设置来评估该方法的准确性和运行时性能。实验结果表明,平均/最大值所提出方法的误差可以在VDD的6%/ 9%之内,解决优化问题的运行时间可以与瞬态仿真时间相当(甚至更大)。

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