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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Quality factor concept in piezoceramic transformer performance description
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Quality factor concept in piezoceramic transformer performance description

机译:压电陶瓷变压器性能描述中的品质因数概念

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摘要

A new general approach based on the quality factor concept to piezoceramic transformer (PT) performance description is proposed. The system's quality factor, material elastic anisotropy, and coupling factors of the input and output sections of an electrically excited and electrically loaded PT fully characterize its resonance and near-resonance behavior. The PT efficiency, transformation ratio, and input and output power were analytically analyzed and simulated as functions of the load and frequency for the simplest classical Langevin-type and Rosen-type PT designs. A new formulation of the electrical input impedance allows one to separate the power consumed by PT from the power transferred into the load. The system's PT quality factor takes into account losses in each PT "input-output-load" functional components. The loading process is changing PT input electrical impedance on the way that under loading the minimum series impedance is increasing and the maximum parallel impedance is decreasing coincidentally. The quality-factors ratio, between the states of fully loaded and nonloaded PT, is one of the best measures of PTs dynamic performance-practically, the lower the ratio is, the better PT efficiency. A simple and effective method for the loaded PT quality factor determination is proposed. As was found, a piezoceramic with low piezoelectric anisotropy is required to provide maximum PT efficiency and higher corresponding voltage gain. Limitations on the PT output voltage and power, caused by nonlinear effects in piezoceramics, were established.
机译:提出了一种基于品质因数概念的压电陶瓷变压器性能描述的通用方法。系统的品质因数,材料弹性各向异性以及电激励和电负载PT的输入和输出部分的耦合因数充分体现了其谐振和近谐振行为。对于最简单的经典Langevin型和Rosen型PT设计,对PT效率,变压比以及输入和输出功率进行了分析和模拟,作为负载和频率的函数。一种新的电输入阻抗公式使人们可以将PT消耗的功率与传递给负载的功率分开。系统的PT质量因数考虑了每个PT“输入-输出-负载”功能组件中的损耗。加载过程正在改变PT输入电阻,其方式是在负载下最小串联阻抗增加而最大并联阻抗同时减小。满载和空载PT状态之间的品质因数比,实际上是PT动态性能的最佳度量之一,比率越低,PT效率越好。提出了一种简单有效的负荷PT质量因子确定方法。如所发现的,需要具有低压电各向异性的压电陶瓷以提供最大的PT效率和更高的相应电压增益。建立了由压电陶瓷的非线性效应引起的PT输出电压和功率的限制。

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