AbstractIn this study, the concept of a quasi-sliding mode control (QSMC) is introduced for the robust control of a permanent magnet synchronous motor (PMSM) system subjected to unmatched uncertainties, and even with input nonlinearity. On the basis of the new concept of QSMC, continuous control is obtained, to avoid the chattering phenomenon. As expected, the system state can be stabilized and driven into a predictable neighborhood of zero. Also, this approach only uses a single controller to achieve chaos control, which reduces the cost and complexity of implementation. The results of numerical simulations demonstrate the validity of the proposed QSMC design method
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
AbstractIn this study, the concept of a quasi-sliding mode control (QSMC) is introduced for the robu...
The paper presents the sliding mode based adaptive control (SMAC) of chaos for a permanent magnet sy...
In this paper, the application of sliding-mode control to a permanent-magnet synchronous motor (PMSM...
International audienceIn this paper, a robust sensorless speed observer- controller scheme for a per...
The drive performance of permanent magnet synchronous motor (PMSM) can be deteriorated due to variou...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
AbstractIn this study, the concept of a quasi-sliding mode control (QSMC) is introduced for the robu...
The paper presents the sliding mode based adaptive control (SMAC) of chaos for a permanent magnet sy...
In this paper, the application of sliding-mode control to a permanent-magnet synchronous motor (PMSM...
International audienceIn this paper, a robust sensorless speed observer- controller scheme for a per...
The drive performance of permanent magnet synchronous motor (PMSM) can be deteriorated due to variou...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
In this paper a quasi-sliding mode control for a Permanent Magnet Synchronous Motor (PMSM) is propo...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...
This paper presents a discrete-time variable-structure-based control and a speed estimator designed ...