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Multi-Frequency Impedance Transformers for Frequency-Dependent Complex Loads

机译:多频率阻抗变压器,用于与频率有关的复杂负载

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In this paper, a general synthesis method is proposed for the design of multi-frequency impedance transformers (MFITs) for arbitrary frequency-dependent complex loads (FDCLs) by adopting the concept of multi-frequency inverters (MFIs). An MFI, which is placed between two susceptance blocks, is constructed with a transmission line and two-side multi-frequency susceptances (MFSs), whose values at multiple frequencies are independently specified. By merging neighboring susceptances, we get a very simple Pi-shaped topology of MFITs, which in theory has no limitation on the number of matching frequencies. The MFS blocks are realized with one or more parallel shunt stubs, providing needed susceptance values at several specified frequencies. A genetic algorithm is used in extracting the circuit parameters of the parallel stubs. Several dual-, triple-, and quad-frequency impedance transformers for FDCLs are designed for illustrating the design methods. Experiment and simulation results are compared with good agreement, validating the feasibility of the theory. The designed impedance transformers are concise in circuit and compact in dimensions.
机译:<?Pub Dtl?>本文采用多频逆变器(MFI)的概念,提出了一种通用的综合方法,用于设计任意频率相关的复杂负载(FDCL)的多频阻抗变压器(MFIT)。 。放置在两个电纳块之间的MFI由传输线和两侧多频电纳(MFS)构成,它们在多个频率上的值是独立指定的。通过合并邻近的电纳,我们得到了一个非常简单的Pi型MFIT拓扑,理论上它对匹配频率的数量没有限制。 MFS模块是通过一个或多个并联分流支路实现的,可在几个指定频率上提供所需的电纳值。遗传算法用于提取并行存根的电路参数。设计了几种用于FDCL的双,三和四频阻抗变压器,以说明设计方法。实验和仿真结果比较吻合,验证了该理论的可行性。设计的阻抗变压器电路简洁,尺寸紧凑。

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