Sliding Mode Control (SMC) based Current Control of Switched Reluctance Motor

Original price was: $42.Current price is: $30.

In this MATLAB simulation, a Switched Reluctance Motor (SRM) is controlled using an asymmetric converter with a dual-loop strategy. A Sliding Mode Controller (SMC) in the outer loop regulates speed, while a hysteresis controller in the inner loop manages phase currents. The approach ensures robust speed control, precise torque generation, and efficient SRM operation.

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In this MATLAB simulation, a Switched Reluctance Motor (SRM) is controlled using a dual-loop strategy with an asymmetric converter. The outer loop employs a Sliding Mode Controller (SMC) to regulate motor speed robustly. The inner loop uses a hysteresis controller to manage phase currents effectively. The asymmetric converter enables precise control of the current flow in each phase. The SMC ensures robust speed control under parameter variations and disturbances. The hysteresis controller maintains the current within a defined band, ensuring accurate torque generation for efficient SRM operation.

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