Direct-axis voltage based angular offset calibration in an electric motor
US-2024424911-A1 · Dec 26, 2024 · US
US9716452B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9716452-B2 |
| Application number | US-201615092719-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 7, 2016 |
| Priority date | Apr 8, 2015 |
| Publication date | Jul 25, 2017 |
| Grant date | Jul 25, 2017 |
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An ECU has a function of calculating a rotation angle, which is used for torque control, based on amplitude-modulated signals SIN and COS outputted from an angle sensor and a synchronous detection signal. Frequency components generated at the time of switching operation of switching elements of an inverter connected to a motor-generator is included in an output voltage of the inverter. The ECU has a function of shifting frequencies of the frequency components and an excitation frequency of an excitation signal from each other so that noise having the frequencies of the frequency components are not superimposed on the amplitude-modulated signals SIN and COS.
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What is claimed is: 1. A rotation angle calculation device for a system including a control part for controlling a rotary electric machine by switching operations of switching elements of a power converter electrically connected to the rotary electric machine, and a rotation angle detector, which receives an excitation signal variable with an excitation frequency and outputs an amplitude-modulated signal by modulating an amplitude of the excitation signal with a rotation angle of the rotary electric machine, the rotation angle calculation device comprising: an angle calculation part for calculating the rotation angle, which is used to control the rotary electric machine, based on the amplitude-modulated signal outputted from the rotation angle detector and a synchronous detection signal; and a shift part for performing shift processing for shifting frequencies of frequency components, which are included in an output voltage of the power converter and generated by switching operations of the switching elements, and the excitation frequency from each other, wherein the shift part is an excitation frequency varying part for varying the excitation frequency, as the shift processing, by an excitation signal generation part, which generates the excitation signal and outputs the excitation signal to the rotation angle detector. 2. The rotation angle calculation device according to claim 1 , wherein the excitation frequency varying part varies the excitation frequency based on at least one of a control state of the power converter and a rotation speed of the rotary electric machine. 3. The rotation angle calculation device according to claim 2 , further comprising: a speed calculation part for calculating the rotation speed, wherein the excitation frequency varying part varies the excitation frequency based on the rotation speed calculated by the speed calculation part, and the excitation frequency varying part, the excitation signal generation part, the angle calculation part and the speed calculation part are formed in a same integrated circuit. 4. The rotation angle calculation device according to claim 1 , further comprising: an excitation frequency grasping part for grasping the excitation frequency; and an output frequency grasping part for grasping frequencies of the frequency components, wherein the excitation frequency varying part varies the excitation frequency to increase a difference between the excitation frequency grasped by the excitation frequency grasping part and the frequencies of the frequency components grasped by the output frequency grasping part to be equal to or larger than a predetermined value. 5. The rotation angle calculation device according to claim 4 , wherein the excitation frequency varying part, the excitation signal generation part and the angle calculation part are formed on a same integrated circuit. 6. The rotation angle calculation device according to claim 1 , further comprising: an amplitude regulation part for regulating an amplitude of the amplitude-modulated signal based on the excitation frequency. 7. The rotation angle calculation device according to claim 1 , further comprising: a phase regulation part for regulating a phase of the amplitude-modulated signal based on the excitation frequency. 8. A rotation angle calculation device for a system including a control part for controlling a rotary electric machine by switching operations of switching elements of a power converter electrically connected to the rotary electric machine, and a rotation angle detector, which receives an excitation signal variable with an excitation frequency and outputs an amplitude-modulated signal by modulating an amplitude of the excitation signal with a rotation angle of the rotary electric machine, the rotation angle calculation device comprising: an angle calculation part for calculating the rotation angle, which is used to control the rotary electric machine, based on the amplitude-modulated signal outputted from the rotation angle detector and a synchronous detection signal; and a shift part for performing shift processing for shifting frequencies of frequency components, which are included in an output voltage of the power converter and generated by switching operations of the switching elements, and the excitation frequency from each other, wherein the shift part is an output frequency varying part for varying frequencies of the frequency components, as the shift processing, by varying a control state of the power converter. 9. The rotation angle calculation device according to claim 8 , wherein the output frequency varying part varies the frequencies of the frequency components based on at least one of the excitation frequency and a rotation speed of the rotary electric machine. 10. The rotation angle calculation device according to claim 8 , further comprising: an excitation frequency grasping part for grasping the excitation frequency; and an output frequency grasping part for grasping frequencies of the frequency components, wherein the output frequency varying part varies the frequencies of the frequency components to increase a difference between the excitation frequency grasped by the excitation frequency grasping part and the frequencies of the frequency components grasped by the output frequency grasping part to be equal to or larger than a predetermined value. 11. The rotation angle calculation device according to claim 8 , further comprising: an amplitude regulation part for regulating an amplitude of the amplitude-modulated signal based on the excitation frequency. 12. The rotation angle calculation device according to claim 8 , further comprising: a phase regulation part for regulating a phase of the amplitude-modulated signal based on the excitation frequency.
Circuit arrangements for detecting position · CPC title
Indexing scheme relating to controlling arrangements characterised by the means for detecting the position of the rotor · CPC title
by movement of a single coil with respect to two or more coils · CPC title
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