Digital power optimization system for AC induction motors
First Claim
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1. Apparatus for controlling the operation of an AC induction motor, comprising:
- switching means for switching AC voltage to the induction motor between a turn on state and a turn off state;
means for sensing the amplitude of inrush current to the induction motor following a voltage zero crossing of the AC voltage applied to the induction motor;
a controller including means for sensing the amplitude of the inrush current as a function of time delay between a voltage zero crossing and the turn on of said switching means, and further including means for sensing a decrease in the amplitude of the inrush current following a peak in the inrush current amplitude, said controller including means for measuring the time interval between the turn on of said switching means and the time of sensing of said decrease in the amplitude of the inrush current to generate a control signal; and
means responsive to the control signal for controlling the turn on of said switching means for each successive half cycle of the AC voltage applied to the induction motor following a voltage zero crossing.
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Abstract
A method and apparatus are disclosed for improving the efficiency of operation of AC induction motors. The method and apparatus utilizes a microprocessor to tune a motor control system such that the time interval between the turn-on of a bi-directional switch and the time of sensing the resultant inrush current through the stator is maintained substantially constant as the load is varied.
75 Citations
6 Claims
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1. Apparatus for controlling the operation of an AC induction motor, comprising:
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switching means for switching AC voltage to the induction motor between a turn on state and a turn off state; means for sensing the amplitude of inrush current to the induction motor following a voltage zero crossing of the AC voltage applied to the induction motor; a controller including means for sensing the amplitude of the inrush current as a function of time delay between a voltage zero crossing and the turn on of said switching means, and further including means for sensing a decrease in the amplitude of the inrush current following a peak in the inrush current amplitude, said controller including means for measuring the time interval between the turn on of said switching means and the time of sensing of said decrease in the amplitude of the inrush current to generate a control signal; and means responsive to the control signal for controlling the turn on of said switching means for each successive half cycle of the AC voltage applied to the induction motor following a voltage zero crossing. - View Dependent Claims (2, 3, 4)
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5. Apparatus for controlling the operation of an AC induction motor, comprising:
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a semiconductor switch for switching AC voltage to the induction motor between a turn on state and a turn off state; a saturable core transformer responsive to the amplitude of inrush current to the induction motor resulting from the application of the AC voltage to the induction motor; a controller including means for sensing the amplitude of the inrush current as a function of time delay between a voltage zero crossing and the turn on of said semiconductor switch, and means for sensing a decrease in the amplitude of the inrush current following a peak in the inrush current amplitude, said controller including means for measuring the time interval between the turn on of the semiconductor switch and the time of sensing of the decrease in the amplitude of the inrush current and generating in response thereto a control signal; and means for controlling said semiconductor switch between the turn on state and the turn off state in response to the generated control signal. - View Dependent Claims (6)
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Specification