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Frequency Tripler Design by Using Dual-Mode Hybrid Coupler for High-Isolation Wireless Sensing

机译:利用双模混合耦合器实现高隔离度无线传感的三频器设计

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A frequency tripler is designed based on a dual-mode hybrid coupler for wireless sensing applications. The dual modes of a hybrid coupler are analyzed according to the odd-even mode theory, whose S-parameters are simulated in the advanced design system. Due to the nonlinearities of two diodes at the direct and coupled ports, 3rd harmonics are generated, and entirely coupled to the isolation port while the input port maintains isolated. Two quarter-wavelength short stubs are implemented to reflect all 2nd harmonics with an enhancement of 3rd-harmonic generation. The frequency carrier detuning effect is evaluated from 1.95 to 2.05 GHz, which indicates that the frequency tripler can have more than 100 MHz bandwidth. Theory analysis and simulations have both validated the proposed frequency tripler design for wireless sensing applications.
机译:基于双模式混合耦合器设计了一个频率三路器,用于无线传感应用。根据奇偶模式理论分析了混合耦合器的双模,并在先进的设计系统中模拟了其S参数。由于在直接端口和耦合端口处两个二极管的非线性,因此会产生三次谐波,并且三次谐波会完全耦合到隔离端口,而输入端口则保持隔离状态。实施了两个四分之一波长短桩,以增强三次谐波产生,以反射所有二次谐波。频率载波失谐效应的评估范围为1.95至2.05 GHz,这表明三倍频器可以具有超过100 MHz的带宽。理论分析和仿真都验证了所提出的用于无线传感应用的频率三倍频器设计。

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