Claims
- 1. An eddy current coupling control system for an oil well pump comprising: an oil well drive system for moving a sucker rod upward and downward; an AC electric drive motor for powering said oil well drive system;
- an eddy current coupling assembly comprising a driven rotatable input shaft coupled to said AC electric drive motor, a rotatable output shaft connected to said oil well drive system where said input shaft is electromagnetically coupled to said output shaft by an inductor drum which surrounds a peripheral surface of a pole member, where a coil means induces an electromagnetic flux that travels through said inductor drum and said pole member for electromagnetically coupling said inductor drum to said pole member;
- speed sensing means for generating a speed signal representing the rotational speed of said output shaft of said eddy current coupling;
- control means for supplying electrical power to said coil means;
- motor torque sensing means for generating a torque signal representing the output torque of said AC electric drive motor;
- direction sensing means for generating a direction signal indicating the downward travel and upward travel of said sucker rod;
- speed select means for generating a speed select signal representing the desired operating speed of said oil well drive system;
- summing junction means for adding and subtracting a plurality of input signals; and
- control logic means connected to said speed sensor means and connected to said control means and connected to said motor torque sensing means and connected to said direction sensing means where said control logic means connects and disconnects said speed signal from said summing junction means and connects and disconnects said torque signal from said summing junction means and connects and disconnects said speed signal to said summing junction means and connects and disconnects said up speed select signal from said summing junction means to maximize the production from said oil well pump.
- 2. The eddy current coupling control system of claim 1, wherein said control logic means comprises a microprocessor unit with an analog-to-digital converter and a control logic program contained therein.
- 3. The eddy current coupling control system of claim 1, wherein said speed select means generates a down speed select signal representing the desired travel speed of said oil well pump when moving in a downward direction and an up speed select signal representing the desired travel speed of said oil well pump when moving in an upward direction.
- 4. The eddy current coupling control system of claim 2, wherein said control logic means connects said up speed select signal to said summing junction when said oil pumping means is moving in an upward direction and connects said down speed select signal to said summing junction when said oil pumping means is moving in a downward direction.
- 5. The eddy current coupling control system of claim 1, further comprising a well pump-off detector means for generating a pump-off signal when said oil well pumping means is experiencing an abnormal pumping cycle where said pump-off signal is transmitted to said control logic means.
- 6. The eddy current coupling control system of claim 5, further comprising an external speed signal representing a desired operating speed of said oil well pump, where said control logic means connects said external speed signal to said summing junction when said pump-off signal indicates an abnormal oil well pumping cycle.
- 7. The eddy current coupling control system of claim 1, wherein said control means connects said motor torque sensing means to a torque compensator and then to said summing junction means.
- 8. The eddy current coupling control system of claim 1, wherein said control means connects said speed signal to a speed compensator and then to said summing junction.
- 9. The eddy current coupling control system of claim 1, wherein said motor torque sensing means comprises a current sensing means for measuring an input electrical current to said AC electric drive motor and a calculation means for generating said torque signal based on said input electrical current.
- 10. An eddy current coupling control system for an oil well drive comprising:
- an AC electric drive motor for powering an oil well pump;
- an eddy current coupling assembly comprising a driven rotatable input shaft coupled to said AC electric drive motor, a driven rotatable output shaft, an inductor drum surrounding a peripheral surface of a pole member, said inductor drum being rotatable relative to said pole member, a coil means for inducing an electromagnetic flux for coupling said inductor drum and said pole member and said input shaft and said output shaft;
- oil well pumping means nonrotatably connected to said output shaft of said eddy current coupling for moving a sucker rod upward and downward;
- speed sensor means for generating a speed signal representing the rotational speed of said output shaft of said eddy current coupling;
- control means for supplying electrical power to said coil means for coupling said inductor drum and said pole member in response to said input control signal;
- a down speed signal means for generating a first speed signal representing the desired travel speed of said sucker rod in the downward direction;
- an up speed signal means for generating a second speed signal representing the desired travel speed of said sucker rod in the upward direction;
- direction sensor means for generating a direction signal indicating when said sucker rod is travelling in a downward direction and when said sucker rod is travelling in an upward direction; and
- a second control means for establishing a control signal in dependence on said first speed signal when said sucker rod is travelling downward and establishing a control signal in dependence on said second speed signal when said sucker rod is travelling upward as indicated by said direction sensor means where said control signal is connected to said electric drive motor for improving the production rate of said oil well pump by selecting an operating speed for said oil well pumping means when said sucker rod is travelling downward and another speed for said oil well pumping means when said sucker rod is travelling upward.
- 11. The eddy current coupling control system of claim 10, wherein said direction sensor means is a proximity switch.
- 12. The eddy current coupling control system of claim 10, wherein said direction sensor means is of the type known as a Hall Effect sensor.
- 13. The eddy current coupling control system of claim 10, wherein said a second control means establishes said control signal by subtracting said speed signal from said first speed signal and by subtracting said speed signal from said second speed signal.
- 14. The eddy current coupling control system of claim 10, further comprising:
- logic means within said means control means for calculating said control signal in dependence on said speed signal and said direction signal.
- 15. The eddy current coupling control system of claim 10, wherein said speed signal is generated by an external source.
- 16. The eddy current coupling control system of claim 10, further comprising:
- speed switching means with the state of said speed switching means controlled by said pump direction sensor and where said speed switching means connects said first speed signal to said second control means when said direction sensor indicates that said oil well pump is moving in a downward direction and where said speed switching means connects said second speed signal to said second control means when said direction sensor indicates that said oil well pump is moving in an upward direction.
- 17. A method of controlling an eddy current drive coupling for use on an oil well pump comprising:
- providing an AC electric drive motor;
- providing an eddy current coupling comprising a driven rotatable input shaft electromagnetically rotatably coupled through an inductor member and a pole member where an electromagnetic field is generated by a coil means which travels through said inductor member and said pole member to a driving rotatable output shaft;
- providing an oil well pumping means nonrotatably connected to said output shaft for pumping subsurface oil to the surface for containment;
- providing an eddy current coupling output shaft speed sensor means for generating a speed signal;
- providing a desired operating speed signal;
- providing a summing junction means for generating an input control signal by adding and subtracting input signals and mathematically manipulating the result;
- providing a control amplifier means for supplying electrical power to said coil means according to said input control signal;
- providing a motor current sensor for generating a torque control signal representing the torque transferred by said output shaft based on said electrical power supplied to said electric drive motor and then mathematically manipulated;
- subtracting said speed signal from said desired operating speed signal to generate said input control signal; and
- subtracting said torque control signal from said desired operating speed when said torque control signal exceeds a present level thereby limiting the maximum torque transferred by said output shaft.
- 18. The method of controlling an eddy current drive coupling of claim 17, further comprising:
- providing a stall switching means for electrically connecting and disconnecting said control amplifier means from said coil means; and
- activating said stall switching means when the value of said speed signal is less than a preselected stall reference speed.
- 19. A method of controlling an eddy current drive coupling for use on an oil well pump comprising:
- providing an AC electric drive motor;
- providing an eddy current coupling comprising a driven rotatable input shaft electromagnetically rotatably coupled through an inductor member and a pole member where an electromagnetic field is generated by a coil means which travels through said inductor member and said pole member to a driving rotatable output shaft;
- providing an oil well pumping means nonrotatably connected to said output shaft for pumping subsurface oil to the surface for containment;
- providing an eddy current coupling output shaft speed sensor means for generating a speed signal;
- providing a desired operating speed signal;
- providing a summing junction means for generating an input control signal by adding and subtracting input signals and mathematically manipulating the result;
- providing a control amplifier means for supplying electrical power to said coil means according to said input control signal;
- providing a pump sensor means for generating an up signal and a down signal based on the direction of travel of said oil well pump;
- providing a reference speed switching means for electrically connecting and disconnecting an up speed signal and a down speed signal to said summing junction means;
- providing a stroke control means for controlling the state of said switching means for increasing the productivity of said oil well pump by supplying a first desired speed to said summing junction means when said oil pump is travelling upward and a second desired speed to said summing junction means when said oil pump is travelling downward; and
- subtracting said speed signal from said desired operating speed signal to generate said input control signal.
- 20. A method of controlling an eddy current drive coupling for use on an oil well pump comprising:
- providing an AC electric drive motor;
- providing an eddy current coupling comprising a driven rotatable input shaft electromagnetically rotatably coupled through an inductor member and a pole member where an electromagnetic field is generated by a coil means which travels through said inductor member and said pole member to a driving rotatable output shaft;
- providing an oil well pumping means nonrotatably connected to said output shaft for pumping subsurface oil to the surface for containment;
- providing an eddy current coupling output shaft speed sensor means for generating a speed signal;
- providing a desired operating speed signal;
- providing a summing junction means for generating an input control signal by adding and subtracting input signals and mathematically manipulating the result;
- providing a control amplifier means for supplying electrical power to said coil means according to said input control signal;
- providing a pump sensor means for generating an up signal and a down signal based on the direction of travel of said oil well pump;
- providing a reference speed switching means for electrically connecting and disconnecting an up speed signal and a down speed signal to said summing junction means;
- providing a stroke control means for controlling the state of said switching means for increasing the productivity of said oil well pump by supplying a first desired speed to said summing junction means when said oil pump is travelling upward and a second desired speed to said summing junction means when said oil pump is travelling downward;
- providing an external speed reference signal to said stroke control means;
- subtracting said speed signal from said desired operating speed signal to generate said input control signal;
- opening said reference speed switching means; and
- connecting said external speed reference signal to said summing junction means.
Parent Case Info
This application is a continuation-in-part of applicants' application U.S. Ser. No. 07/854,194, filed Mar. 20, 1992, which application is now abandoned.
US Referenced Citations (13)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
854194 |
Mar 1992 |
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