Hajar Doubabi, Issam Salhi
Appropriate control contributes essentially in the design of efficient DC-DC converters. With this intention, a study deals with the synthesis of a controller for DC-DC Three-level Boost converter (TLBC), which is identified as a nonlinear system. The TLBC has been locally modeled using transfer function models, and PI controllers were designed based on these models. These controllers were then combined using the Takagi–Sugeno fuzzy (TSF) approach to form a TSF-PI controller. Simulation tests demonstrated the flexibility of the proposed controller, highlighting its capability to reject various disturbances and to meet performance specifications across a wide operating range of the system. The findings suggest that the TSF-PI controller offers a robust solution for controlling the volatilities in DC-DC converter operations, thus positioning it as a beneficial method for enhanced power conversion applications. The study underscores the importance of modern control techniques derived from fuzzy logic in managing complex systems like the TLBC.
@article{ef35c697-7107-4957-a86a-98094469d8af,
title={Voltage Control of DC-DC Three Level Boost Converter Using TS Fuzzy PI Controller},
author={Hajar Doubabi and Issam Salhi},
year={2017},
language={English}
}TY - JOUR TI - Voltage Control of DC-DC Three Level Boost Converter Using TS Fuzzy PI Controller AU - Hajar Doubabi AU - Issam Salhi PY - 2017 LA - English ER -
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