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A Synthesis of Electronically Controllable Current-Mode PI, PD and PID Controllers Employing CCCDBAs

机译:采用CCCDBA的电控电流模式PI,PD和PID控制器的综合

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This paper presents a synthesis of current-mode PI, PD and PID controllers employing current controlled current differential buffer amplifiers (CCCDBAs). The features of these controllers are that: the output parameters can be electronically/independently controlled by adjusting corresponding bias currents in the proportional, integral, and deviation controllers; circuit description of the PID controller is simply formulated, it consists of four CCCDBAs cooperating with two grounded capacitors, and PI and PD controllers are composed of three CCCCDBAs and a grounded capacitor. Without any external resistor, the proposed circuits are very suitable to develop into integrated circuit architecture. The given results from the PSpice simulation agree well with the theoretical anticipation. The approximate power consumption in a closed loop control system consisting of the PI, PD and PID controller with low-pass filter passive plant are 4.03 mW, 4.85 mW and 5.71 mW, respectively, at ±1.5 V power supply voltages.
机译:本文介绍了采用电流控制电流差动缓冲放大器(CCCDBA)的电流模式PI,PD和PID控制器的综合。这些控制器的特点是:通过调节比例,积分和偏差控制器中的相应偏置电流,可以电子/独立地控制输出参数; PID控制器的电路描述很简单,它由四个CCCDBA和两个接地电容器组成,PI和PD控制器由三个CCCCDBA和一个接地电容器组成。由于没有任何外部电阻,所提出的电路非常适合发展为集成电路架构。 PSpice仿真给出的结果与理论预期吻合得很好。在由PI,PD和PID控制器以及低通滤波器无源设备组成的闭环控制系统中,在±1.5 V电源电压下的大约功耗分别为4.03 mW,4.85 mW和5.71 mW。

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