2018Unpublished venueRequires access

Performance Analysis of a DC-Motor Control System with Time-Delay: Smith Predictor vs Optimization-based Controller Design

Süleyman Mert Özer, Senem Yıldız, Altuğ İftar

Open publisher page 5 citations

Abstract

Smith predictor-based and optimization-based controller design for a DC-motor control system with a time-delay in the feedback loop is considered. It is shown that, compared to the Smith predictor-based controller, the optimization-based controller can preserve stability against larger variations in the system parameters and the time-delay. Furthermore, by simulations and actual experiments, it is verified that the optimization-based controller outperforms the Smith predictor-based controller when the system parameters and, especially, the time-delay varies.

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What this paper is about

Smith predictor-based and optimization-based controller design for a DC-motor control system with a time-delay in the feedback loop is considered. It is shown that, compared to the Smith predictor-based controller, the optimization-based controller can preserve stability against larger variations in the system parameters and the time-delay. Furthermore, by simulations and actual experiments, it is verified that the optimization-based controller outperforms the Smith predictor-based controller when the system parameters and, especially, the time-delay varies.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Smith predictor-based and optimization-based controller design for a DC-motor control system with a time-delay in the feedback loop is considered. It is shown that, compared to the Smith predictor-based controller, the optimization-based controller can preserve stability against larger variations in the system parameters and the time-delay. Furthermore, by simulations and actual experiments, it is verified that the optimization-based controller outperforms the Smith predictor-based controller when the system parameters and, especially, the time-delay varies.

Key concepts: Smith predictor, Control theory (sociology), Controller (irrigation), DC motor, Computer science, Open-loop controller, Control system, Stability (learning theory)

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