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Polynomial metamodel based fast optimization of nano-CMOS oscillator circuits

机译:基于多项式元模型的纳米CMOS振荡器电路的快速优化

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Modern consumer electronics are designed as analog/mixed-signal systems-on-chip (AMS-SoCs). In an AMS-SoC, the analog and mixed-signal portions have not received systematic attention due to their complex nature and the fact that their optimization and simulation consume significant portions of the design cycle time. This paper presents a new approach to reduce the design cycle time by combining accurate polynomial metamodels and optimization algorithms. The approach relies on a mathematical representation (metamodel or surrogate model) of AMS-SoC subsystems/components. Polynomial metamodels are created from post-layout parasitic netlists and provide an accurate representation for each figure-of-merit over the entire design space of the AMS-SoC component. The metamodel approach saves a very significant amount of time during design iterations. Polynomial metamodels are reusable and language independent. Three algorithms are investigated to compare the speed for optimization on the polynomial metamodels. Two widely used circuits have been designed in two different technologies as comparative case studies: an 180 nm LC-VCO and a 45 nm ring oscillator (RO). Experimental results prove that the meta-model-based optimization achieved speed-up as high as 21,600× for the LC-VCO circuit and 11,750× for the RO in comparison to the actual circuit netlist-based (SPICE) optimization, with less than 1% error. Thus, the paper demonstrates that the polynomial metamodeling approach to the design problem is an effective and accurate means for fast design space exploration and optimization.
机译:现代消费电子产品被设计为模拟/混合信号片上系统(AMS-SoC)。在AMS-SoC中,模拟和混合信号部分由于其复杂的性质以及它们的优化和仿真消耗了设计周期时间的很大一部分而没有得到系统的关注。本文提出了一种通过结合精确的多项式元模型和优化算法来减少设计周期的新方法。该方法依赖于AMS-SoC子系统/组件的数学表示(元模型或替代模型)。多项式元模型是从布局后的寄生网表创建的,可为AMS-SoC组件整个设计空间中的每个品质因数提供准确的表示。元模型方法在设计迭代过程中节省了大量时间。多项式元模型是可重用的,并且与语言无关。研究了三种算法,以比较多项式元模型的优化速度。作为比较案例研究,已经在两种不同的技术中设计了两种广泛使用的电路:180 nm LC-VCO和45 nm环形振荡器(RO)。实验结果证明,与基于实际电路网表(SPICE)的优化相比,基于元模型的优化对LC-VCO电路的加速高达21,600倍,对RO的加速高达11,750倍。错误百分比。因此,本文证明了针对设计问题的多项式元建模方法是快速进行设计空间探索和优化的有效且准确的手段。

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