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Capacitive-Based, Closed-Loop Frequency Control of Substrate-Integrated Cavity Tunable Filters

机译:基于电容式,闭环基板集成腔可调滤波器

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In this paper, we present an integrated capacitive sensing technique that can be used to achieve closed-loop feedback control of variable capacitors. The technique is well suited for diaphragm-based actuators that can be used to tune the center frequency of microwave reconfigurable filters. A commercially available capacitance-to-digital converter is used to measure the capacitance of a custom-made monitoring capacitor. This capacitor is completely external to the filter structure and does not contribute to any added losses. A tunable, second-order, bandpass filter –using substrate-integrated, evanescent-mode cavity resonators– is created to demonstrate the concept. The frequency tuning is achieved using piezoelectric actuators to displace a flexible copper diaphragm that forms the top part of the loading capacitor. The monitoring capacitor consists of a second cavity that is mounted above the actuator forming a second air-filled, metal-insulator-metal capacitor. There exists a direct relationship between the monitoring capacitance and the loading capacitance in the evanescent-mode cavity. Therefore, by tracking the monitoring capacitance the center frequency of the filter can be monitored, which allows for direct in-situ closed-loop control of the filter. An algorithm for the tuning operation is presented, which includes an automatic calibration technique to initialize the controller. The effectiveness and repeatability of the technique is evaluated as the filter is tuned from 3.3 GHz to 3.7 GHz. Having stable feedback control integrated with this type of evanescent-mode cavity filters, brings the technology one step closer to actual fielding.
机译:在本文中,我们提出了可用于实现可变电容器的闭环反馈控制的集成电容式感测技术。该技术非常适合于可用于调谐的微波可重构滤波器的中心频率的基于隔膜的致动器。市售的电容 - 数字转换器是用来测量一个特制的监测电容器的电容。这个电容器是完全外部的过滤器结构,并且不向任何添加的损失。一种可调谐,二阶,带通滤波器 - 使用衬底集成,创建倏逝模式腔resonators-说明概念。频率调谐是使用压电致动器位移,其形成在装载电容器的顶部部分的柔性铜膜片来实现的。监视电容器由被安装在致动器上形成第二空气填充,金属 - 绝缘体 - 金属电容器上方的第二腔。存在的监测电容和瞬逝模式腔中的负载电容之间的直接关系。因此,通过跟踪监视电容的滤波器的中心频率可以被监控,这允许过滤器的直接原位闭环控制。用于调谐操作的算法,其包括自动校准技术来初始化控制器。作为过滤器被调谐从3.3 GHz至3.7千兆赫的技术的有效性和可重复性进行评价。使用这种类型的渐逝模式腔体滤波器集成稳定的反馈控制,使该技术一步步接近实际部署。

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