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Control of a 6/4 switched reluctance motor by means of a DC voltage supply with DC high voltage intermediary circuit

机译:通过带有直流高压中间电路的直流电源控制6/4开关磁阻电机

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This paper presents the control scheme of a three phase switched reluctance motor (6/4), powered by a specialized DC voltage source, provided with a high voltage intermediary circuit. Rated voltage of the DC intermediary circuit is about 1000 V. Output rated voltage of the DC power supply is 230 V, allowing a maximum variation of 1 V to the reference value. SRM control scheme also includes: a control loop of the rotor angular velocity within certain prescribed limits and a stator phase current control loop to a certain reference value respectively. Each of them use for adjustment a relay block circuit. It is permitted a maximum variation of 2 A of the stator phase current from the reference value, and at most 2 rad/s of the rotor angular velocity to the prescribed value respectively. At the end of the energizing cycle of each stator phase, the energy stored in the magnetic field of that phase is returned to the power supply. This is achieved by reconnecting the considered stator phase with reverse polarity, to the DC intermediary circuit of 1000 V. Thus, the stator phase current decreases from its maximum to zero with a greater slope, which value is about 4 times higher compared to the classical situation. The turn-off angle of each stator phase is chosen so that the current through that winding is zero for the interval corresponding to the decreasing slope of the considered stator phase inductance. Thus, the electromagnetic torque developed by each SRM phase is always maintained positive. Another advantage of using this type of voltage source for energizing the SRM phases, is the possibility of changing the turn-off angle corresponding to each stator phase, closer to the aligned position of that phase. At the end of this paper are presented the simulation results obtained using the Matlab — Simulink software package.
机译:本文提出了一种三相开关磁阻电动机(6/4)的控制方案,该电动机由专用的直流电压源提供动力,并配有高压中间电路。直流中间电路的额定电压约为1000V。直流电源的输出额定电压为230 V,允许最大变化为参考值1V。 SRM控制方案还包括:转子角速度在一定规定极限内的控制回路和定子相电流控制回路分别在一定参考值的控制回路。它们每个都用于调节继电器模块电路。允许定子相电流从参考值最大变化2 A,并且分别将转子角速度的最大2 rad / s变化到规定值。在每个定子相的励磁循环结束时,存储在该相磁场中的能量将返回电源。这是通过将考虑的具有相反极性的定子相重新连接到1000 V的直流中间电路来实现的。因此,定子相电流以最大斜率从最大值减小到零,该值比经典值高约4倍。情况。选择每个定子相的关断角,以使通过该绕组的电流在与所考虑的定子相电感的减小的斜率相对应的间隔内为零。因此,由每个SRM相产生的电磁转矩始终保持正值。使用这种类型的电压源为SRM相供电的另一个优点是,可以改变与每个定子相相对应的断开角,使其更接近该相的对齐位置。在本文的最后介绍了使用Matlab-Simulink软件包获得的仿真结果。

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