Apparatus and method for controlling pressure vessel
Disclosed is an apparatus for controlling a pressure vessel including a clamp that surrounds an outer peripheral surface of the pressure vessel fixed to a subject target, a driver that provides a driving force for adjusting a fastening force of the clamp according to an internal pressure of the pressure vessel, and a controller that performs a control such that rotation of the driver is prevented during an abnormal operation of the driver.
1. An apparatus for controlling a pressure vessel, the apparatus comprising:
a clamp configured to surround an outer peripheral surface of the pressure vessel fixed to a subject target;
a first fastening member disposed in the clamp to be linearly movable along a lengthwise direction of the first coupling member;
a driver configured to provide a driving force for adjusting a fastening force of the clamp according to an internal pressure of the pressure vessel;
a coupler that connects the driver and the first fastening member and transmits the driving force of the driver to the first fastening member;
a stopper selectively coupled to the coupler at different locations in the lengthwise direction to restrict rotation of the driver; and
a controller configured to perform a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver.
2. The apparatus of claim 1 , wherein the clamp includes:
a first clamp configured to surround a portion of the outer peripheral surface of the pressure vessel; and
a second clamp configured to surround another portion of the outer peripheral surface of the pressure vessel.
3. The apparatus of claim 1 , wherein the controller is configured to control the stopper to be movable in a radial direction, different from the lengthwise direction, to selectively restrict the rotation of the driver.
4. An apparatus for controlling a pressure vessel, the apparatus comprising:
a clamp configured to surround an outer peripheral surface of the pressure vessel fixed to a subject target;
a driver configured to provide a driving force for adjusting a fastening force of the clamp according to an internal pressure of the pressure vessel; and
a controller configured to perform a control such that rotation of the driver is prevented during an abnormal operation of the driver,
wherein the clamp includes:
a first clamp configured to surround a portion of the outer peripheral surface of the pressure vessel; and
a second clamp configured to surround another portion of the outer peripheral surface of the pressure vessel,
wherein the first clamp includes a first force sensor that senses a force applied to the first clamp, and
wherein the second clamp includes a second force sensor that senses a force applied to the second clamp.
5. The apparatus of claim 4 , wherein the controller includes:
a main controller and a sub controller each configured to calculate the fastening force of the clamp, and
wherein the controller determines that the driver is in a normal operation when the fastening force of the clamp calculated by the main controller coincides with the fastening force of the clamp calculated by the sub controller while a difference between the fastening force of the clamp measured through the first force sensor and the fastening force of the clamp calculated by the main controller is within a specific range.
6. The apparatus of claim 5 , wherein, the controller determines that the driver is in the normal operation when the fastening force of the clamp calculated by the main controller coincides with the fastening force of the clamp calculated by the sub controller while a difference between the fastening force of the clamp measured through the second force sensor and the fastening force of the clamp calculated by the main controller is within the specific range, in a condition that the difference between the fastening force of the clamp measured through the first force sensor and the fastening force of the clamp calculated by the main controller deviates from the specific range.
7. The apparatus of claim 6 , wherein the controller determines that the driver is in the abnormal operation when the difference between the fastening force of the clamp measured through the second force sensor and the fastening force of the clamp calculated by the main controller deviates from the specific range or the fastening force of the clamp calculated by the main controller does not coincide with the fastening force of the clamp calculated by the sub controller.
8. A method for controlling a pressure vessel, the method comprising:
providing a driver configured to provide a driving force for adjusting a fastening force of a clamp according to an internal pressure of the pressure vessel configured to surround an outer peripheral surface of the pressure vessel through a clamp;
providing a first fastening member in the clamp to be linearly movable along a lengthwise direction of the first coupling member;
providing a coupler to connect the driver and the first fastening member and to transmit the driving force of the driver to the first fastening member;
providing a stopper and selectively coupling the stopper with the coupler at different locations in the lengthwise direction to restrict rotation of the driver; and
performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver.
9. The method of claim 8 , wherein the providing a driver configured to provide a driving force for adjusting a fastening force of a clamp according to an internal pressure of the pressure vessel configured to surround an outer peripheral surface of the pressure vessel through a clamp includes:
providing a driving force for adjusting a fastening force between a first clamp configured to surround a portion of the outer peripheral surface of the pressure vessel and a second clamp configured to surround another portion of the outer peripheral surface of the pressure vessel.
10. The method of claim 9 , wherein the performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver includes:
receiving a measurement value of a force applied to the first clamp from a first force sensor included in the first clamp; and
receiving a measurement value of a force applied to the second clamp from a second force sensor included in the second clamp.
11. The method of claim 10 , wherein the performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver includes:
calculating a fastening force of the clamp through each of a main controller and a sub controller, and
wherein the method includes determining that the driver is in a normal operation when the fastening force of the clamp calculated by the main controller coincides with the fastening force of the clamp calculated by the sub controller while a difference between the fastening force of the clamp measured through the first force sensor and the fastening force of the clamp calculated by the main controller is within a specific range.
12. The method of claim 11 , wherein the performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver includes:
determining that the driver is in the normal operation when the fastening force of the clamp calculated by the main controller coincides with the fastening force of the clamp calculated by the sub controller while a difference between the fastening force of the clamp measured through the second force sensor and the fastening force of the clamp calculated by the main controller is within the specific range, in a condition that the difference between the fastening force of the clamp measured through the first force sensor and the fastening force of the clamp calculated by the main controller deviates from the specific range.
13. The method of claim 12 , wherein the performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver includes:
determining that the driver is in the abnormal operation when the difference between the fastening force of the clamp measured through the second force sensor and the fastening force of the clamp calculated by the main controller deviates from the specific range or the fastening force of the clamp calculated by the main controller does not coincide with the fastening force of the clamp calculated by the sub controller.
14. The method of claim 8 , wherein the performing a control of the stopper such that the rotation of the driver is prevented via the stopper during an abnormal operation of the driver includes:
controlling the stopper to be movable in a radial direction, different from the lengthwise direction, to selectively restrict the rotation of the driver.