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New approach to a fast and accurate design of microwave circuits with complex topologies

机译:快速,准确地设计具有复杂拓扑结构的微波电路的新方法

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A robust simulation-driven design methodology of microwave circuits with complex topologies has been presented. The general method elaborated is suitable for a wide class of N-port unconventional microwave circuits constructed as a deviation from classic design solutions. The key idea of the approach proposed lies in an iterative redesign of a conventional circuit by a sequential modification and optimisation of its atomic building blocks. The speed and accuracy of the method presented has been acquired by solving a number of simple optimisation problems through surrogate-based optimisation (SBO) techniques, which offer a satisfactory approximation of the optimal design solution. Two exemplary designs have been supplied to verify the method introduced. An abbreviated wideband quarter-wave impedance matching transformer and a miniaturised hybrid branch??line coupler have been developed. Diminished dimensions of the circuits under construction have been achieved by means of compact microstrip resonant cells. As an SBO engine, an implicit space mapping technique has been utilised. The final results have been acquired in only a fraction of time that is necessary for a direct electromagnetic (EM) optimisation to generate competitive results. An experimental validation of the method proving its high utility has been provided.
机译:已经提出了具有复杂拓扑结构的鲁棒仿真驱动的微波电路设计方法。阐述的一般方法适用于构造成与经典设计解决方案不同的各种N端口非常规微波电路。所提出的方法的关键思想在于通过顺序修改和优化其原子构件来对常规电路进行迭代重新设计。通过使用基于代理的优化(SBO)技术解决了许多简单的优化问题,从而获得了所提出方法的速度和准确性,这些技术为优化设计解决方案提供了令人满意的近似值。提供了两个示例性设计来验证引入的方法。已经开发出一种简化的宽带四分之一波阻抗匹配变压器和一个小型化的混合支路耦合器。通过紧凑的微带谐振单元已经实现了在建电路尺寸的减小。作为SBO引擎,已经使用了隐式空间映射技术。最终结果仅在直接电磁(EM)优化产生竞争结果所需的一小部分时间内获得。实验证明该方法具有很高的实用性。

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