Apparatus and method for measuring small increases in machine tool drive motor power
First Claim
1. A method for measuring the electrical power drawn by a cutting tool drive motor in a single operating cycle having idle and cutting states, the method comprising the steps of:
- measuring the power load on the drive motor continuously during each idle and cutting state;
offsetting the measured electrical power values during the cutting state with the measured power values during the idle state to yield the incremental power load attributable to the cutting tool on the motor during the cutting state;
amplifying the incremental power load by a variably selectable gain between two and 800;
setting the variably selectable gain by;
providing a plurality of settable switches outputting a combined binary code to a processor; and
, providing the processor accessing a lookup table containing gain values corresponding to the binary code defined by the plurality of switches; and
filter the amplified incremental power load by a median filter to generate an output signal.
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Accused Products
Abstract
An apparatus and method for measuring the electrical load on a motor driven tool operating in a cycle having idle and cutting or machining states. The electrical power is continuously measured and an average power value is established during the idle state of at least one cycle and used as an offset subtracted from the measured electrical power values to generate an output proportional to the incremental power drawn by the cutting tool during the cutting state. The offset value is recalculated at the start of each new cycle and/or just prior to the commencement of a cutting operation by a tool. At least one filter and/or an amplifier are used to improve the signal-to-noise ratio of the output signal.
15 Citations
15 Claims
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1. A method for measuring the electrical power drawn by a cutting tool drive motor in a single operating cycle having idle and cutting states, the method comprising the steps of:
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measuring the power load on the drive motor continuously during each idle and cutting state;
offsetting the measured electrical power values during the cutting state with the measured power values during the idle state to yield the incremental power load attributable to the cutting tool on the motor during the cutting state;
amplifying the incremental power load by a variably selectable gain between two and 800;
setting the variably selectable gain by;
providing a plurality of settable switches outputting a combined binary code to a processor; and
,providing the processor accessing a lookup table containing gain values corresponding to the binary code defined by the plurality of switches; and
filter the amplified incremental power load by a median filter to generate an output signal. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
establishing an average power value during the idle state of each operating cycle.
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3. The method of claim 1 wherein the offsetting step further comprises:
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measuring the electrical power values periodically over a predetermined time period during the idle state of the operating cycle;
accumulating all of the sampled electrical power values during the time period; and
determining the average electrical power value as an offset value over the time period.
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4. The method of claim 3 wherein an offset value is calculated at least once for each operating cycle.
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5. The method of claim 3 wherein an offset value is established once at the start of an operating cycle, and further including the step of:
using the offset value for each subsequent machine cycle until a new offset value is requested.
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6. The method of claim 1 further comprising the step of:
filtering the measured power load before calculating the offset.
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7. The method of claim 1 further comprising the steps of:
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filtering the measured power load;
converting the filtered measured power load to digital values before calculating the offset.
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8. The method of claim 7 further comprising the steps of:
after filtering the amplified incremental power load, converting the digital values to analog values.
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9. An apparatus for measuring the electric power load on a tool drive motor in a single operating cycle including idle and cutting states, the apparatus comprising;
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means for measuring the electrical power load on the motor continuously during one complete operating cycle;
means for calculating an offset value corresponding to the measured electrical power during the idle state of the operating cycle;
means for computing incremental power load adjusted by the offset value, attributable to the incremental load power drawn by the cutting tool during the cutting state;
means for setting a variably selectable gain including;
a plurality of settable switches outputting a combined binary code to a processor; and
,the processor accessing a lookup table containing gain values corresponding to the binary code defined by the plurality of switches;
means for amplifying the incremental power load by the variably selectable gain of between two and 800; and
means for filtering the amplified incremental power load by a median filter to form an amplified output signal. - View Dependent Claims (10, 11, 12, 13, 14, 15)
means for filtering the measured power signal, the output of the filtering means input to the calculating means.
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11. The apparatus of claim 9 further comprising:
means for converting the measured electrical power values to digital values.
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12. The apparatus of claim 11 wherein the converting means comprises an analog to digital converter.
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13. The apparatus of claim 11 further comprising:
a processor executing a stored control program, the output of the analog to digital converter being input to the processor.
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14. The apparatus of claim 11 further comprising:
a filter interposed between a power load input and the converting means.
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15. The apparatus of claim 9 further comprising:
a limiter limiting the maximum and minimum output incremental power load values to predetermined maximum and minimum values.
Specification