Claims
- 1. A speed control system, comprising:
- a signal source for producing a modulation frequency signal;
- an encoder having a moveable member operatively connected to a device whose speed is to be controlled, said encoder coupled to said signal source, said encoder including means for converting said modulation frequency signal into a phase variable signal having a phase which is varied as a function of the position of said moveable member;
- a reference frequency signal generator coupled to said modulation frequency signal source for generating a variable reference frequency signal which may differ in frequency or phase from said modulation frequency signal;
- a comparator, coupled between said signal source and said reference frequency signal generator, operative to compare said modulation frequency signal and said reference frequency signal, said comparator generating an error signal as a function of any phase difference between said modulation frequency signal and said reference frequency signal;
- a first filter operative to remove distortions at the carrier frequency of said error signal;
- a second filter operative to remove distortions at the third frequency harmonic and higher order frequency harmonics of said error signal;
- a third filter operative to remove dc distortions produced by said encoder; and
- a fourth filter operative to remove viscous effects of said error signal.
- 2. The system of claim 1, wherein:
- said first filter further includes a high pass filter and a neural network.
- 3. The system of claim 1, wherein:
- said second filter further includes a high pass filter and a neural network.
- 4. The system of claim 1, wherein:
- said third filter further includes a band pass filter and a neural network.
- 5. The system of claim 1, wherein:
- said fourth filter further includes at least one high pass filter and at least one neural network.
- 6. The system of claim 4, wherein said third filter is cascaded.
- 7. A speed control system, comprising:
- a modulation signal source for producing a modulation frequency signal;
- a brushless dc motor having a shaft, said motor being coupled to said modulation signal source;
- a magneto resistive encoder coupled to said motor, said encoder generating a phase variable signal having a phase which is varied as a function of motor shaft position;
- a reference signal generator coupled to said modulation signal source, said reference signal generator operative to produce a variable reference frequency signal which may differ in frequency or phase from said modulation frequency signal;
- a comparator coupled to said modulation signal source and said reference signal generator, said comparator generating an error signal based on any difference between said modulation signal and said reference signal;
- a first filter operative to remove distortions at the carrier frequency of said error signal;
- a second filter operative to remove distortions at harmonics of said error signal frequency;
- a third filter operative to remove dc distortions produced by said encoder; and
- a fourth filter operative to remove viscous distortions from said error signal.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application is related to the following U.S. patent applications, all filed concurrently with or prior to the present application:
1. "Arcuate Scan Read/Write Assembly", inventors Gary Nelson and Stephen J. Crompton, Ser. No. 08/337,255, filed Nov. 10, 1994.
2. "Arcuate Scan Tape Drive", inventors John M. Rothenberg, Joseph Lin, Robert H. Peirce, Richard Milo and Michael Andrews, Ser. No. 08/113,996, filed Aug. 30, 1993.
3. "Method And Apparatus To Maximize The Top Speed Of Brushless DC Motors", inventor Martyn A. Lewis, Ser. No. 08/336,751 filed Nov. 10, 1994.
4. "System and Method For Accurate Arcuate Scan Head Positioning," inventors Martyn A. Lewis and Paul Stavish, Ser. No. 08/337,093, filed Nov. 10, 1994.
The above applications are all assigned to the assignee of the present invention and are all expressly incorporated herein by reference.
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