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Cascade Control of the Ground Station Module of an Airborne Wind Energy System

Title
Cascade Control of the Ground Station Module of an Airborne Wind Energy System
Type
Article in International Scientific Journal
Year
2021
Authors
Uppal, AA
(Author)
Other
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Fernandes, MCRM
(Author)
Other
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Vinha, S
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Journal
Title: EnergiesImported from Authenticus Search for Journal Publications
Vol. 8
Final page: 8337
ISSN: 1996-1073
Publisher: MDPI
Other information
Authenticus ID: P-00V-V4J
Abstract (EN): An airborne wind energy system (AWES) can harvest stronger wind streams at higher altitudes which are not accessible to conventional wind turbines. The operation of AWES requires a controller for the tethered aircraft/kite module (KM), as well as a controller for the ground station module (GSM). The literature regarding the control of AWES mostly focuses on the trajectory tracking of the KM. However, an advanced control of the GSM is also key to the successful operation of an AWES. In this paper we propose a cascaded control strategy for the GSM of an AWES during the traction or power generation phase. The GSM comprises a winch and a three-phase induction machine (IM), which acts as a generator. In the outer control-loop, an integral sliding mode control (SMC) algorithm is designed to keep the winch velocity at the prescribed level. A detailed stability analysis is also presented for the existence of the SMC for the perturbed winch system. The rotor flux-based field oriented control (RFOC) of the IM constitutes the inner control-loop. Due to the sophisticated RFOC, the decoupled and instantaneous control of torque and rotor flux is made possible using decentralized proportional integral (PI) controllers. The unknown states required to design RFOC are estimated using a discrete time Kalman filter (DKF), which is based on the quasi-linear model of the IM. The designed GSM controller is integrated with an already developed KM, and the AWES is simulated using MATLAB and Simulink. The simulation study shows that the GSM control system exhibits appropriate performance even in the presence of the wind gusts, which account for the external disturbance.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 25
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File name Description Size
energies-14-08337 1285.23 KB
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