磁感应波导用耦合换能器:使整个通带上的反射最小化

O. Sydoruk
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引用次数: 3

摘要

摘要磁感应波导的特性阻抗复杂且与频率有关,而标准射频和微波器件的输入阻抗是真实且恒定的。因此,高性能磁感应系统需要能够将磁感应波导耦合到其他器件的换能器。作者设计并实验实现了一种谐振耦合换能器,该换能器能够在整个通带内将磁感应波导的反射最小化。对于谐振频率为95 MHz,通带在73 ~ 174 MHz之间的磁感应电缆,在谐振频率处实验值低至- 25 dB,在90%以上的通带处实验值约为- 20 dB,是目前为止实现的宽带性能最好的电缆。然而,换能器设计简单,仅包含三个谐振电路,这使其成为宽带应用的有希望的候选者。
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Coupling transducers for magnetoinductive waveguides: Minimising reflection over the whole pass band

Abstract

The characteristic impedance of magnetoinductive waveguides is complex and frequency-dependent, whereas the input impedance of standard RF and microwave devices is real and constant. Transducers capable of coupling magnetoinductive waveguides to other devices are, therefore, required for high-performance magnetoinductive systems. The author designed and experimentally realised a resonant coupling transducer capable of minimising reflections from magnetoinductive waveguides over the whole pass band.

For a magnetoinductive cable with the resonant frequency of 95 MHz and the pass band between 73 and 174 MHz, the experimental value of |S11 | was as low as −25 dB at the resonant frequency and about −20 dB over more than 90% of the pass band, the most broadband performance achieved up to date. Yet, the transducer has simple design and comprises only three resonant circuits, which makes it a promising candidate for wide-band applications.

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