Hybrid sliding PID controller for torsional vibrations mitigation in rotary drilling systems

Author:

Mendil Chafiaa,Kidouche Madjid,Doghmane Mohamed Zinelabidine

Abstract

During the drilling process, the drilling system devices can be exposed to several types of phenomena incited by lateral, axial, and torsional vibrations. The latter can lead to severe damages if they are not efficiently controlled and quickly mitigated. This research work is focused on the torsional vibrations, which are stimulated by the nonlinear dynamical interaction between the geological rocks and the drill bit. Wherein, a model with three degrees of freedom was designed to demonstrate the severity of the stick-slip phenomenon as consequence of torsional vibrations. The main objective of this study was to design a robust controller based on hybridizing a conventional PID controller with sliding mode approach in order to mitigate rapidly the torsional vibrations. Moreover, a comparative study between PI, PID and sliding mode controllers allowed us to emphasize the effectiveness of the new hybrid controller and improve the drilling system performances. Furthermore, the chattering phenomenon in the sliding surface was overcome by using the saturation function rather than the sign function. The obtained results proved the usefulness of the proposed controller in suppressing the stick-slip phenomenon for smart industrial drilling systems.

Publisher

Institute of Advanced Engineering and Science

Subject

Electrical and Electronic Engineering,Control and Optimization,Computer Networks and Communications,Hardware and Architecture,Information Systems,Signal Processing

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. PID-Based Kalman Filter Controller Design Stick-Slip Vibrations Suppression in Drill String Systems;2024 2nd International Conference on Electrical Engineering and Automatic Control (ICEEAC);2024-05-12

2. Axial-Torsional Vibrations Interaction Analysis and Decoupling in Drill String Systems;2024 2nd International Conference on Electrical Engineering and Automatic Control (ICEEAC);2024-05-12

3. BLDC Speed Control Based on Fractional PID Controller;Lecture Notes in Networks and Systems;2023

4. Modeling and Simulation of an Operating BLDC with Bidirectional Rotation Configurations;Lecture Notes in Networks and Systems;2023

5. Topology Analysis of Multi-cellular Converters in a Wind Energy System;Lecture Notes in Networks and Systems;2023

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