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The fuzzy PD control for combined energy and attitude control system

Sohaib Aslam (Department of Electrical and Computer Engineering, COMSATS University Islamabad – Lahore Campus, Lahore, Pakistan)
Yew-Chung Chak (Department of Aerospace Engineering, Universiti Putra Malaysia, Serdang, Malaysia)
Mujtaba Hussain Jaffery (COMSATS University Islamabad – Lahore Campus, Lahore, Pakistan)
Renuganth Varatharajoo (Department of Aerospace Engineering, Universiti Putra Malaysia, Serdang, Malaysia)

Aircraft Engineering and Aerospace Technology

ISSN: 0002-2667

Article publication date: 19 May 2022

Issue publication date: 5 December 2022

117

Abstract

Purpose

The satellite pointing accuracy plays a crucial role in ensuring a successful satellite mission itself. Therefore, this paper aims to enhance the attitude pointing accuracy of the combined energy and attitude control system (CEACS) in a satellite in the presence of external disturbance torques through a robust controller, which can produce high pointing accuracies with smaller control torques.

Design/methodology/approach

To improve the CEACS attitude pointing accuracy, a maiden fuzzy proportional derivative (PD)-based CEACS architecture is proposed. The mathematical models along with its numerical treatments of the fuzzy PD-based CEACS attitude control architecture are presented. In addition, a comparison between the PD and fuzzy PD controllers in terms of the CEACS pointing accuracies and control torques is provided.

Findings

Numerical results show that the fuzzy PD controller produces a considerable CEACS pointing accuracy improvement for a lower control torque compartment.

Practical implications

CEACS has gained a renew interest because of significant increase in the projected onboard power requirements for future space missions. Therefore, it is of paramount importance to improve the CEACS pointing accuracy itself with a minimum control torque compartment. In fact, this proposed fuzzy PD controller is shown to be a potential CEACS attitude controller.

Originality/value

The fuzzy PD-based CEACS architecture not only provides a better attitude pointing accuracy but also ensures a lower control torque compartment, which corresponds to a lower onboard power consumption.

Keywords

Acknowledgements

This paper has been supported by the COMSATS University Islamabad (Lahore Campus), Pakistan and the UPM Research University Grant, Malaysia.

Citation

Aslam, S., Chak, Y.-C., Jaffery, M.H. and Varatharajoo, R. (2022), "The fuzzy PD control for combined energy and attitude control system", Aircraft Engineering and Aerospace Technology, Vol. 94 No. 10, pp. 1806-1824. https://doi.org/10.1108/AEAT-05-2021-0144

Publisher

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Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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