Superconducting motor quench detection method and apparatus based on rotational symmetry of motor
US-2025341577-A1 · Nov 6, 2025 · US
US9568569B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9568569-B2 |
| Application number | US-201514691306-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 20, 2015 |
| Priority date | Oct 24, 2012 |
| Publication date | Feb 14, 2017 |
| Grant date | Feb 14, 2017 |
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A device for detecting a quench in a superconducting coil according to one aspect of the invention includes a first superconducting coil and a second superconducting coil that are connected in series. The first superconducting coil and the second superconducting coil have the same shape. A first axis of the first superconducting coil and a second axis of the second superconducting coil are arranged at the same position and in the same direction, and the position of the first superconducting coil and the position of the second superconducting coil in the direction of the first and second axes are the same. The length of a winding wire of the first superconducting coil and the length of a winding wire of the second superconducting coil are equal to each other.
Opening claim text (preview).
What is claimed is: 1. A device for detecting a quench in a superconducting coil comprising: a first superconducting coil and a second superconducting coil that are connected in series, an intermediate tap that is provided between the first superconducting coil and the second superconducting coil, and a detector configured to measure a first voltage of the first superconducting coil, to measure a second voltage of the second superconducting coil, and to determine the presence or absence of the occurrence of a quench on the basis of a deviation between the first voltage and the second voltage, and on the basis of a stored threshold value, wherein the first superconducting coil and the second superconducting coil have the same shape, wherein a first axis of the first superconducting coil and a second axis of the second superconducting coil are arranged at the same position and in the same direction, and a position of the first superconducting coil and a position of the second superconducting coil in the direction of the first and second axes are the same, and wherein a length of a winding wire of the first superconducting coil and a length of a winding wire of the second superconducting coil are equal to each other. 2. The device for detecting a quench in a superconducting coil according to claim 1 , wherein the winding wire of the first superconducting coil and the winding wire of the second superconducting coil are adjacent to each other. 3. The device for detecting a quench in a superconducting coil according to claim 2 , wherein the winding wire of the first superconducting coil and the winding wire of the second superconducting coil are co-wound. 4. The device for detecting a quench in a superconducting coil according to claim 3 , wherein the winding wire of the first superconducting coil and the winding wire of the second superconducting coil have a flat shape and overlap each other. 5. The device for detecting a quench in a superconducting coil according to claim 4 , wherein the position of the winding wire of the first superconducting coil in a radial direction and the position of the winding wire of the second superconducting coil in the radial direction are switched. 6. The device for detecting a quench in a superconducting coil according to claim 3 , wherein the winding wire of the first superconducting coil and the winding wire of the second superconducting coil have a circular cross-sectional shape and are twisted together with each other. 7. The device for detecting a quench in a superconducting coil according to claim 2 , wherein the winding wire of the first superconducting coil and the winding wire of the second superconducting coil are formed such that a plurality of pancake coils are alternately laminated in the direction of the first and second axes.
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