Next Article in Journal
Active Disturbance Rejection Predictive Control for Drill-Arm Positioning of Hydraulic Drill-Anchor Robots Based on Friction Compensation and PSO Tuning
Next Article in Special Issue
A Comprehensive Analysis of Human–Machine Interaction: Teaching Pendant vs. Gesture Control in Industrial Robotics
Previous Article in Journal
Intelligent Multi-Objective Optimization of Structural Parameters for High-Frequency Ultrasonic Transducers
Previous Article in Special Issue
A Collaborative Robot-Based Approach for Automated 3D Shape Inspection of Complex Parts
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

A Novel Type of Pneumatic Rotary Positioner Using Three-Phase Pressure Commutation

Department of Mechatronics, Faculty of Mechanical Engineering, Politehnica University Timisoara, 1 Bvd. Mihai Viteazul, 300222 Timisoara, Romania
*
Author to whom correspondence should be addressed.
Actuators 2026, 15(4), 192; https://doi.org/10.3390/act15040192
Submission received: 31 January 2026 / Revised: 26 March 2026 / Accepted: 29 March 2026 / Published: 31 March 2026
(This article belongs to the Special Issue Actuation and Sensing of Intelligent Soft Robots—2nd Edition)

Abstract

This paper presents the design, simulation, and experimental validation of a novel type of pneumatic rotary positioner that is based on a three-cylinder radial mechanism driven by independently controlled pressures. The system uses standard off-the-shelf industrial components, including pneumatic cylinders, proportional pressure regulators, and a programmable logic controller. In order to obtain angular positioning, a three-phase sinusoidal pressure commutation scheme is adopted, similar to the three-phase electrical motors. Analytical expressions for piston kinematics and torque generation are derived and used to design direct open-loop, open-loop with friction compensation, and closed-loop position control strategies. The technical implementation, with the prototype tested unloaded, can achieve accurate positioning (±3° in open-loop mode with feedforward to ±0.3° in closed-loop mode with PD controller), with very good repeatability on average (<0.5°) and smooth theoretical torque (average 1.4 Nm, with 0.51% ripple) at low speeds (<60 rpm). The experimental prototype was designed as a compact device, having approx. 94 mm diameter and 110 mm depth. When used in open-loop mode, the actuator is connected to the control system using just three pneumatic tubes and thus is completely free of any electromagnetic fields, making it suitable for some environment-critical applications. These advantages promote the proposed positioner as a practical rotary actuator in specialized automation and robotics applications where established electrical servomotors cannot be used.
Keywords: pneumatic; rotary positioner; three-phase; pressure commutation pneumatic; rotary positioner; three-phase; pressure commutation

Share and Cite

MDPI and ACS Style

Ciupe, V.; Kristof, R.; Ismael, G. A Novel Type of Pneumatic Rotary Positioner Using Three-Phase Pressure Commutation. Actuators 2026, 15, 192. https://doi.org/10.3390/act15040192

AMA Style

Ciupe V, Kristof R, Ismael G. A Novel Type of Pneumatic Rotary Positioner Using Three-Phase Pressure Commutation. Actuators. 2026; 15(4):192. https://doi.org/10.3390/act15040192

Chicago/Turabian Style

Ciupe, Valentin, Robert Kristof, and Ghadeer Ismael. 2026. "A Novel Type of Pneumatic Rotary Positioner Using Three-Phase Pressure Commutation" Actuators 15, no. 4: 192. https://doi.org/10.3390/act15040192

APA Style

Ciupe, V., Kristof, R., & Ismael, G. (2026). A Novel Type of Pneumatic Rotary Positioner Using Three-Phase Pressure Commutation. Actuators, 15(4), 192. https://doi.org/10.3390/act15040192

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop