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    • 3. 发明授权
    • Power converter for a switched reluctance motor
    • 用于开关磁阻电机的功率转换器
    • US5115181A
    • 1992-05-19
    • US593122
    • 1990-10-05
    • Pradeep K. Sood
    • Pradeep K. Sood
    • H02P25/08
    • H02P25/0925
    • Power conversion apparatus (10) for an n-winding switched reluctance motor (M). A rectifier circuit (12) rectifies line voltage supplied to the motor. A switching circuit (14) supplies, at any one time, electrical energy to the motor winding most capable of converting it to mechanical work. A storage capacitor (C1) stores any unconverted portion of the energy and returns it to the winding during subsequent cycles. The switching circuit provides a substantially long conduction period 2 (.theta.) for supplying electrical energy to the motor during each line voltage cycle. This permits use of a substantially smaller energy storage capacitor and results in a higher input power factor for circuit operation. Circuits for precharging the storage capacitor are eliminated. The switching circuit is capable of more modes of operation than previous circuits, while using fewer components, and therefore provides a lower cost design.
    • 用于n绕组开关磁阻电动机(M)的电力转换装置(10)。 整流电路(12)对提供给电动机的线路电压进行整流。 开关电路(14)可以在任何时候将电能提供给最能将其转换为机械作业的电动机绕组。 存储电容器(C1)存储任何未转换的能量部分并在随后的周期期间将其返回给绕组。 开关电路在每个线路电压周期期间提供用于向电动机提供电能的基本长的导通周期2(θ)。 这允许使用基本上较小的储能电容器并且导致用于电路操作的更高的输入功率因数。 消除了对存储电容器进行预充电的电路。 与之前的电路相比,开关电路能够具有更多的操作模式,同时使用更少的元件,因此提供了较低成本的设计。
    • 6. 发明授权
    • Method and apparatus of operating a dynamoelectric machine using DC bus
current profile
    • 使用直流母线电流曲线来操作电动机的方法和装置
    • US5420492A
    • 1995-05-30
    • US4411
    • 1993-01-14
    • Pradeep K. Soodjames L. SkinnerDouglas M. Petty
    • Pradeep K. Soodjames L. SkinnerDouglas M. Petty
    • H02P6/08H02P6/18H02P5/40H02P1/26
    • H02P6/18H02P6/08Y02P80/116
    • A dynamoelectric machine, for example, a brushless permanent magnet motor (M) has a plurality of stator windings (S) and a rotor (T) which rotates with respect to the windings. Apparatus (10) is provided for controlling winding commutation with respect to the rotor. A DC bus (14) supplies current to the windings. The current waveshape has characteristics which are a function of the commutation angle with respect to the windings. Current magnitude and waveshape are sensed by a sensing unit (22) and the sensed waveshape is sampled to obtain commutation information. An inverter (20) successively energizes and de-energizes the respective stator windings. A controller (26) obtains samples of the waveshape, and processes the information obtained by the sampling to control winding commutation. The controller controls the inverter operation to provide a commutation angle which optimizes motor performance and efficiency for a particular set of motor operating conditions. To do this, the processor evaluates slope and amplitude information from the sampled DC bus current waveshape, determines if the waveshape corresponds to a desired waveshape representing a desired commutation angle, and adjusts the commutation frequency produced by the inverter, if necessary, to obtain the desired waveshape.
    • 电动机,例如,无刷永磁电动机(M)具有相对于绕组旋转的多个定子绕组(S)和转子(T)。 提供装置(10)用于控制相对于转子的绕组换向。 DC总线(14)向绕组提供电流。 当前波形具有相对于绕组的换向角的函数的特性。 电流幅度和波形由感测单元(22)感测,并且感测的波形被采样以获得换向信息。 逆变器(20)相应地对相应的定子绕组通电和断电。 控制器(26)获得波形的采样,并处理通过采样得到的信息以控制绕组换向。 控制器控制变频器运行,以提供换向角,从而优化电机运行条件下的特定电机性能和效率。 为此,处理器从采样的直流总线当前波形图中评估斜率和振幅信息,确定波形是否对应于表示期望换向角的期望波形,并且如果需要则调整由逆变器产生的换向频率,以获得 想要的波形