2013 World Congress on Computer and Information Technology (WCCIT) 2013
DOI: 10.1109/wccit.2013.6618778
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Speed control of linear switched reluctance motor

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Cited by 4 publications
(3 citation statements)
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“…The principle of operation of a switched reluctance actuator is based on the tendency of an electromagnetic system to achieve a stable equilibrium position, which minimizes reluctance of the magnetic circuit. The aligned position of a phase is defined as the situation where the teeth of the stator and the modulus teeth of the mobile of the phase are perfectly aligned with each other reaching a position where reluctance is minimal [8].…”
Section: Switched Reluctance Actuatormentioning
confidence: 99%
“…The principle of operation of a switched reluctance actuator is based on the tendency of an electromagnetic system to achieve a stable equilibrium position, which minimizes reluctance of the magnetic circuit. The aligned position of a phase is defined as the situation where the teeth of the stator and the modulus teeth of the mobile of the phase are perfectly aligned with each other reaching a position where reluctance is minimal [8].…”
Section: Switched Reluctance Actuatormentioning
confidence: 99%
“…The block diagram for nonlinear PID compensator with feedforward element is shown in Figure 10. Moreover, Zaafrane et al presented the used of PI controller, hysteresis controller and force distribution function (FDF) for the purpose of speed control [70]. The combination of control system for the nonlinear switched reluctance actuator enable the performance to be improved due to hysteresis controller will control the excitation current, speed control done by a PI controller while the FDF is used for force control and ripples reduction.…”
Section: Modified Pid Controlmentioning
confidence: 99%
“…The combination of control system for the nonlinear switched reluctance actuator enable the performance to be improved due to hysteresis controller will control the excitation current, speed control done by a PI controller while the FDF is used for force control and ripples reduction. Next, the Bang-Bang control has been proposed for the open loop control of SRA to reduce system overshoot and eliminate the oscillations [71].…”
Section: Modified Pid Controlmentioning
confidence: 99%