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Generalized Augmented Lagrangian and Its Applications to VLSI Global Placement

机译:广义增强拉格朗日及其对VLSI全球展示的应用

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Global placement dominates the circuit placement process in its solution quality and efficiency. With increasing design complexity and various design constraints, it is desirable to develop an efficient, high-quality global placement algorithm for modern large-scale circuit designs. In this paper, we first analyze the properties of four nonlinear optimization methods (the quadratic penalty method, the Lagrange multiplier method, and two augmented Lagrangian methods) for global placement, and then develop a generalized augmented Lagrangian method to solve this problem. Our proposed method preserves the advantages of the quadratic penalty method and the augmented Lagrangian method, and provides a smooth progress from the quadratic penalty method to the augmented Lagrangian method. We prove that the proposed generalized augmented Lagrangian method is globally convergent for the original global placement problem, even with different constraints. Compared with the other four popular optimization methods, experimental results show that our method achieves the best quality and is robust for handling different objectives. In particular, our generalized augmented Lagrangian formulation is theoretically sound and can solve generic large-scale constrained nonlinear optimization problems, which are widely used in many fields.
机译:全球展示位置以其解决方案质量和效率主导电路放置过程。随着设计复杂性和各种设计约束的增加,希望为现代大规模电路设计开发一种有效,高质量的全局放置算法。在本文中,我们首先分析了四种非线性优化方法的特性(二次惩罚方法,拉格朗日乘法器方法和两个增强拉格朗日方法)的全局放置,然后开发出广义增强拉格朗日方法来解决这个问题。我们所提出的方法保留了二次惩罚方法和增强拉格朗日方法的优势,并从二次惩罚方法到增强拉格朗日方法提供了平滑进展。我们证明,即使具有不同的限制,建议的广义增强拉格朗日方法是对原始全球放置问题的全球会聚。与其他四种流行的优化方法相比,实验结果表明,我们的方法达到了最优质,对处理不同的目标是强大的。特别是,我们的广义增强拉格朗日配方在理论上是声音,并且可以解决通用的大规模约束非线性优化问题,这些问题被广泛用于许多领域。

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