Please use this identifier to cite or link to this item: https://repositori.mypolycc.edu.my/jspui/handle/123456789/9462
Title: ROBUST NONLINEAR CURRENT SENSORLESS CONTROL OF THE BOOST CONVERTER WITH CONSTANT POWER LOAD
Authors: Said Oucheriah
Abul Azad
Keywords: Boost converter
Robust sliding mode control
Current-sensorless control
Extended state observer
Constant power load (CPL)
Issue Date: 29-Mar-2024
Publisher: Scientific Research Publishing Inc.
Series/Report no.: Circuits and Systems;2024, 15, 29-43
Abstract: The boost converter feeding a constant power load (CPL) is a non-minimum phase system that is prone to the destabilizing effects of the negative incremental resistance of the CPL and presents a major challenge in the design of stabilizing controllers. A PWM-based current-sensorless robust sliding mode controller is developed that requires only the measurement of the output volt age. An extended state observer is developed to estimate a lumped uncertainty signal that comprises the uncertain load power and the input voltage, the converter parasitics, the component uncertainties and the estimation of the derivative of the output voltage needed in the implementation of the controller. A linear sliding surface is used to derive the controller, which is simple in its design and yet exhibits excellent features in terms of robustness to external disturbances, parameter uncertainties, and parasitics despite the absence of the inductor’s current feedback. The robustness of the controller is validated by computer simulations.
URI: DOI: 10.4236/cs.2024.153003
https://repositori.mypolycc.edu.my/jspui/handle/123456789/9462
ISSN: 2153-1293
2153-1285
Appears in Collections:JABATAN KEJURUTERAAN ELEKTRIK

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