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Efficient optimization of integrated spiral inductor with bounding of layout design parameters

机译:以布局设计参数为界的集成螺旋电感器的高效优化

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In this paper we present an efficient method of determining the optimized layout of on chip spiral inductor. The method initially identifies the feasible region of optimization by developing layout design parameter bound curves for a large range of physical inductance values that satisfies the same area specification. For any desired inductance value the upper and lower bounds of the optimization variables are determined graphically. An enumeration algorithm implemented finds the global optimum layout that gives the highest quality factor in less than 1 s of CPU time with less function evaluations. The optimization method also gives the performance of all possible combinations that results the same inductance value. Subsequently important fundamental tradeoff of the design like quality factor and area, quality factor and inductance, quality factor and operating frequency, maximum quality factor and the peak frequency is explored in few seconds. The method also gives other valuable information such as sensitivity of the inductance and quality factor to the layout design parameters. The accuracy of the proposed method is verified using a 3D electromagnetic simulator.
机译:在本文中,我们提出了一种确定片上螺旋电感器优化布局的有效方法。该方法最初通过为满足相同面积规格的大范围物理电感值开发布局设计参数绑定曲线来确定优化的可行区域。对于任何所需的电感值,以图形方式确定优化变量的上限和下限。实施的枚举算法可找到全局最佳布局,该布局可在不到1秒的CPU时间内以较少的功能评估来提供最高的品质因数。该优化方法还给出了所有可能组合的性能,这些组合产生了相同的电感值。随后在几秒钟内探索了设计的重要基础权衡,例如品质因数和面积,品质因数和电感,品质因数和工作频率,最大品质因数和峰值频率。该方法还提供了其他有价值的信息,例如电感的灵敏度和品质因数对布局设计参数的影响。使用3D电磁模拟器验证了所提出方法的准确性。

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