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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Yield-driven electromagnetic optimization via multilevel multidimensional models
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Yield-driven electromagnetic optimization via multilevel multidimensional models

机译:通过多层多维模型进行产量驱动的电磁优化

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摘要

The authors present the foundation of a sophisticated hierarchical multidimensional response surface modeling system for efficient yield-driven design. The scheme dynamically integrates models and database updating in real optimization time. The method facilitates a seamless, smart, optimization-ready interface. It has been specially designed to handle circuits containing complex subcircuits or components whose simulation requires significant computational effort. This approach makes it possible, for the first time, to perform direct gradient-based yield optimization of circuits with components or subcircuits simulated by an electromagnetic simulator. The efficiency and accuracy of the technique are demonstrated by yield optimization of a three-stage microstrip transformer and a small-signal microwave amplifier. The authors also perform yield sensitivity analysis for the three-stage microstrip transformer.
机译:作者介绍了用于高效良率驱动设计的复杂层次多维响应曲面建模系统的基础。该方案可在实际优化时间内动态集成模型和数据库更新。该方法促进了无缝,智能,优化就绪的界面。它专门设计用于处理包含复杂子电路或组件的电路,其仿真需要大量的计算工作。这种方法首次使具有由电磁模拟器模拟的元件或子电路的电路的基于梯度的直接产量优化成为可能。该技术的效率和准确性通过三级微带变压器和小信号微波放大器的成品率优化得到证明。作者还对三级微带变压器进行了屈服灵敏度分析。

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