Current-Mode PID Controller Using Second-Generation Voltage Conveyor (VCII)

Author:

Özer Emre1,Kaçar Fırat2

Affiliation:

1. Department of Electrical and Energy, Istanbul University-Cerrahpaşa, 34500 Buyukcekmece, Istanbul, Turkey

2. Department of Electrical — Electronics Engineering, Istanbul University-Cerrahpaşa, 34320 Avcilar, Istanbul, Turkey

Abstract

In this paper, a current-mode (CM) proportional integral derivative (PID) controller based on second-generation voltage conveyor (VCII) is presented. The proposed circuit consists of two-plus type VCIIs, two resistors, and two capacitors. There is no need of critical matching condition. Considering the parasitic impedance, the operating frequency ranges of the proposed PID network are examined. The magnitude and phase responses, Monte Carlo, temperature and input-output noise analyses have been simulated. The simulation results are obtained with the LTspice program using AD844 SPICE macro-model under [Formula: see text]9[Formula: see text]V DC supply voltages. The total power consumption of the proposed CM PID controller is 235[Formula: see text]mW.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Electrical and Electronic Engineering,Hardware and Architecture

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1. Current-mode PID controllers employing commercially available active components;AEU - International Journal of Electronics and Communications;2024-02

2. CMOS Adaptive Biased Second Generation Voltage Conveyor;2023 International Workshop on Biomedical Applications, Technologies and Sensors (BATS);2023-09-28

3. VDIBA-Based Current-Mode PID Controller Design;Journal of Circuits, Systems and Computers;2023-05-26

4. Switched-Capacitor Phase Shifter Circuit with High Input Impedance and Grounded Capacitors;2023 International Conference on Computational Intelligence, Communication Technology and Networking (CICTN);2023-04-20

5. Current-Mode Pid Controllers Employing Commercially Available Active Components;2023

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