Control device and error correction methods
US-2020116531-A1 · Apr 16, 2020 · US
US11245556B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11245556-B2 |
| Application number | US-202017018208-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 11, 2020 |
| Priority date | Oct 8, 2019 |
| Publication date | Feb 8, 2022 |
| Grant date | Feb 8, 2022 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
To provide a correction method of resolver correction device and resolver correction device that can reduce rotation angle (the rotation speed) detection error caused by resolver. An excitation signal supply circuit supplies an excitation signal of an excitation frequency to the resolver during a normal operation, for supplying the excitation signals of a plurality of frequencies including the excitation frequency to the first phase shifter or the second phase shifter during a calibration operation. A shift amount searching circuit searches the first shift amount setting value for each frequency of the excitation signal such that the first shift amount becomes 45 degrees, and the second shift amount setting value for each frequency of the excitation signal such that the second shift amount becomes 135 degrees, while referring to the detection result of the phase difference detection circuit during the calibration operation, and stores in the correction table.
Opening claim text (preview).
What is claimed is: 1. A resolver correction device comprising: a first phase shifter for outputting a first phase signal by shifting a phase of a first detection signal is one of quadrature detection signals of the resolver by a first shift amount in accordance with a first shift amount setting value; a second phase shifter for outputting a second phase signal by shifting a phase of a second detection signal is the other of the quadrature detection signals by a second shift amount in accordance with a second shift amount setting value; an add circuit for outputting a third phase signal by adding the first phase signal and the second phase signal; an excitation signal supply circuit for supplying an excitation signal of an excitation frequency to the resolver during a normal operation, for supplying the excitation signals of a plurality of frequencies including the excitation frequency to the first phase shifter or the second phase shifter during a calibration operation; a phase difference detection circuit detecting a rotation angle of the resolver during the normal operation, and detecting the first shift amount or the second shift amount during the calibration operation, by detecting an phase difference between the excitation signal from the excitation signal supply circuit and the third phase signal from the add circuit; a shift amount searching circuit for searching the first shift amount setting value for each frequency of the excitation signal such that the first shift amount becomes a first specified amount, and for searching the second shift amount setting value for each frequency of the excitation signal such that the second shift amount becomes a second specified amount different by 90 degrees from the first specified amount, while referring to the detection result of the phase difference detection circuit during the calibration operation; and a storage circuit for storing the first shift amount setting value and the second shift amount setting value for each frequency of the excitation signal obtained by a search result of the shift amount searching circuit as a correction table. 2. The resolver correction device according to claim 1 , further comprising: a speed detector for detecting a rotation speed of the resolver based on a change rate of the rotation angle of the resolver detected by the phase difference detection circuit during the normal operation; and a shift amount correction circuit for calculating an output frequency of the first detection signal or the second detection signal based on the rotation speed detected by the speed detector and the excitation frequency of the excitation signal, for obtaining the first shift amount setting value and the second shift amount setting value by referring to the correction table by the output frequency as a search key, for setting the first shift amount setting value to the first phase shifter and for setting the second shift amount setting value to the second phase shifter during the normal operation. 3. The resolver correction device according to claim 2 , wherein the first phase shifter and the second phase shifter include an RC circuit comprising a capacitance and a plurality of resistors, respectively, wherein the first phase shifter controls the shift amount by switching enable or disable for a portion of the plurality of resistors in the RC circuit of the first phase shifter by a first PWM signal, wherein the second phase shifter controls the shift amount by switching enable or disable for a portion of the plurality of resistors in the RC circuit of the second phase shifter by a second PWM signal, wherein the first shift amount setting value is a duty cycle of the first PWM signal, and wherein the second shift amount setting value is a duty cycle of the second PWM signal. 4. The resolver correction device according to claim 1 , wherein the excitation signal supply circuit supplies the excitation signal to the resolver, the rotation of the resolver is controlled to a stopped state, the add circuit outputs the first phase signal or the second phase signal as the third phase signal by the second phase signal or the first phase signal is disabled, during the calibration operation. 5. The resolver correction device according to claim 1 , further comprising: a selection switch for selecting whether to supply the excitation signal from the excitation signal supply circuit to the resolver, the first phase shifter, or to any of the second phase shifter. 6. The resolver correction device according to claim 1 , further comprising: a shift amount error detection circuit for detecting the first shift amount error remaining in the first shift amount detected by the phase difference detection circuit and a second shift amount error remaining in the second shift amount for each frequency of the excitation signal, after reflecting the first shift amount setting value and the second shift amount setting value which are a search result of the shift amount searching circuit, during the calibration operation; and a detection result corrector, wherein the correction table of the storage circuit further stores the first shift amount error and the second shift amount error for each frequency of the excitation signals detected by the shift amount error detection circuit, and wherein the detection result corrector corrects the rotation angle of the resolver detected by the phase difference detection circuit based on a storing content of the correction table and a predetermined arithmetic expression during the normal operation. 7. The resolver correction device according to claim 6 , further comprising: a speed detector for detecting a rotation speed of the resolver based on a change rate of the rotation angle of the resolver detected by the phase difference detection circuit during the normal operation; and a shift amount correction circuit for calculating an output frequency of the first detection signal or the second detection signal based on the rotation speed detected by the speed detector and the excitation frequency of the excitation signal, for obtaining the first shift amount setting value and the second shift amount setting value by referring to the correction table by the output frequency as a search key, for setting the first shift amount setting value to the first phase shifter and for setting the second shift amount setting value to the second phase shifter during the normal operation. 8. The resolver correction device according to claim 7 , wherein the detection result corrector calculates the output frequency of the first detection signal or the output frequency of the second detection signal based on the rotation speed detected by the speed detector and the excitation frequency of the excitation signal, obtains the first shift amount error and the second shift amount error by referring to the correction table using the output frequency as a search key, and corrects the rotation angle of the resolver based on the arithmetic expression as parameters which are the first shift amount error, the second shift amount error, and the rotation angle of the resolver detected by the phase difference detection circuit. 9. The resolver correction device according to claim 7 , further comprising: a correction necessity determination circuit for detecting the first shift amount error and the second shift amount error corresponding to the excitation frequency in the shift amount error detection circuit, for comparing the first shift amount error and the second shift amount error as a detection result, and the first shift amount error and the second shift amount error stored in the correction table, and for selecting whether to perform the calibration operation or the normal
by influencing the mutual induction between two or more coils (G01D5/22 takes precedence) · CPC title
Detecting coils · CPC title
Synchronisation information channels, e.g. clock distribution lines · CPC title
with calibration coefficients stored in memory · CPC title
using a variable number of pulses in a train · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.