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A novel lead and lag compensator circuit employing a single current feedback operational amplifier

机译:采用单电流反馈运算放大器的新型引线和滞后补偿器电路

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摘要

In this study, a novel lead and lag type compensator circuit is proposed using a single active component, namely, the current feedback operational amplifier (CFOA). The proposed circuit has only one CFOA, two grounded resistors and two grounded capacitors. The input impedance of the proposed compensator is designed to be high whereas the output impedance is low. In terms of input and output impedance values, the proposed topology is suitable for a cascade connection with the voltage-mode structure not requiring buffer circuits, both at the input and output of the circuit. Moreover, the proposed circuit offers the advantage of controlling the poles and zeros orthogonally. The non-ideal effects depending on the active component are also presented in the paper.The commercially available AD844 integrated circuit component was used as the CFOA component in the proposed lead and lag compensator circuit and circuit simulations were performed using PSpice. Moreover, the electrical performance of the circuit was demonstrated by experimental studies. The achieved theoretical, simulation and experimental results are given with a comparison. Finally, a closed-loop control system application was given using the proposed compensator circuit and the operation of the circuit was demonstrated with PSpice simulations.
机译:在该研究中,使用单个有源分量提出了一种新型铅和滞后型补偿器电路,即电流反馈运算放大器(CFOA)。所提出的电路仅具有一个CFOA,两个接地电阻和两个接地电容器。所提出的补偿器的输入阻抗设计为高,而输出阻抗低。在输入和输出阻抗值方面,所提出的拓扑结构适用于与电路的输入和输出的电压模式结构的级联连接,无需缓冲电路。此外,所提出的电路提供了控制杆和零的正交性的优点。本文还提出了根据活性成分的非理想效果。商业上可获得的AD844集成电路组件用作所提出的引线中的CFOA分量,并且使用PSPICE进行滞后补偿器电路和电路模拟。此外,通过实验研究证明了电路的电性能。通过比较给出了实现的理论,模拟和实验结果。最后,使用所提出的补偿器电路给出闭环控制系统应用,并使用PSPICE仿真对电路的操作进行了说明。

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