A security protection structure for a wind farm data center

By installing unlocking mechanisms and multiple unlocking protection measures on the security doors of wind farm data centers, the problem of low security levels in existing security doors has been solved, achieving higher data security and equipment stability.

CN224282239UActive Publication Date: 2026-05-26XINTIAN ZHIHUI ENERGY TECHNOLOGY (XIONGAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINTIAN ZHIHUI ENERGY TECHNOLOGY (XIONGAN) CO LTD
Filing Date
2025-04-18
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing protective doors of wind farm data center warehouses have low security levels, making it difficult to effectively guarantee data security.

Method used

A security door has been designed with an unlocking mechanism that includes a controller, a keypad area, and a fingerprint sensor area. Combined with a concealed valve plate and an electric telescopic rod, it achieves multiple unlocking protections through pressure sensors and a built-in motor, enhancing security.

Benefits of technology

It improves the data security of the data center warehouse, prevents unauthorized access, enhances the protection level, and ensures stable equipment operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This utility model relates to the field of protective structure technology, and in particular to a security protection structure for a wind farm data center. It includes a wind farm data center warehouse with a doorway. A security door is rotatably installed inside the doorway, and the security door is equipped with a handle mechanism, an unlocking mechanism, and a locking mechanism. The unlocking mechanism includes an unlocking compartment located outside the security door. A controller, an alarm, and a battery are fixedly installed inside the unlocking compartment. The controller has a password keypad and a fingerprint sensor area. An inner groove is provided inside the unlocking compartment, and a hidden valve plate is slidably installed inside the inner groove. The unlocking mechanism of this utility model employs protective measures, making it difficult to open the door even if the password or fingerprint is obtained by unauthorized personnel, thus strengthening the protection level of the security door and significantly improving the data security of the wind farm data center warehouse.
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Description

Technical Field

[0001] This utility model relates to the field of protective structure technology, and in particular to a safety protection structure for a wind farm data center. Background Technology

[0002] A wind farm data center is a facility system that uses wind energy resources to provide energy support for a data center.

[0003] The wind farm data center provides real-time monitoring of various equipment within the wind farm, including wind turbines, transformers, transmission lines, and switchgear. It acquires operating parameters and status information such as current, voltage, power factor, oil temperature, and winding temperature. Monitoring this data allows for the timely detection of potential faults and anomalies, enabling early warnings and maintenance to ensure stable equipment operation. The data security of this data center directly impacts the stable operation of the power plant; therefore, routine maintenance by qualified professionals is essential.

[0004] The security level of the protective doors in existing data center warehouses is low. In order to ensure the data security of data center warehouses, we propose a security protection structure for wind farm data centers. Utility Model Content

[0005] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a safety protection structure for wind farm data centers.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A security protection structure for a wind farm data center includes a wind farm data center warehouse. The warehouse has a doorway, and a security door is rotatably installed inside the doorway. The security door is equipped with a handle mechanism, an unlocking mechanism, and a locking mechanism. The unlocking mechanism includes an unlocking compartment located outside the security door. A controller, an alarm, and a battery are fixedly installed inside the unlocking compartment. The controller has a password keypad and a fingerprint sensor area. An inner sliding groove is provided inside the unlocking compartment, and a hidden valve plate is slidably installed inside the inner sliding groove. An electric telescopic rod is fixedly installed at the bottom of the inner side of the inner sliding groove, and the output end of the electric telescopic rod is fixedly connected to the hidden valve plate.

[0008] Furthermore, two sets of the electric telescopic rods are symmetrically arranged along the back of the concealed valve plate.

[0009] Furthermore, the handle mechanism includes a grip, which is fixedly installed on the front side of the safety door.

[0010] Furthermore, a groove is provided on the upper inner side of the grip, a slider is slidably installed inside the groove, a pressure sensor is fixedly installed at the top of the inner side of the groove, and a spring is fixedly connected between the bottom of the pressure sensor and the slider.

[0011] Furthermore, the pressure sensor is electrically connected to the controller.

[0012] Furthermore, the locking mechanism includes a mounting groove, which is located on the side of the safety door. A built-in motor is fixedly installed inside the mounting groove, and a threaded rod is fixedly installed on the output end of the built-in motor. A lock block is slidably installed at the outer port of the mounting groove, and a lock groove adapted to the lock block is provided inside the door opening.

[0013] Furthermore, the threaded rod is screwed through into the interior of the locking block.

[0014] Furthermore, the built-in motor is electrically connected to the controller.

[0015] Compared with related technologies, the wind farm data center security protection structure proposed in this utility model has the following beneficial effects:

[0016] This utility model discloses a security protection structure for a wind farm data center. It incorporates an unlocking mechanism on the security door, controlled by a controller. The controller includes a password keypad and a fingerprint sensor, supporting both password and fingerprint unlocking methods. The unlocking compartment features a hidden valve plate cover. When the security door is closed, the hidden valve plate is in the closed state, with its opening area located on a slider inside the handle. Pressing the slider activates a pressure sensor inside the groove, triggering the controller to control an electric telescopic rod that opens the hidden valve plate, allowing for subsequent unlocking and door opening. The unlocking mechanism incorporates protective features, making it difficult for non-wind farm data center management personnel to know its opening area. Even if unauthorized personnel obtain the password or fingerprint, they cannot open the unlocking mechanism to open the door, thus enhancing the security level of the security door and significantly improving the data security of the wind farm data center warehouse. Attached Figure Description

[0017] Figure 1 A three-dimensional structural diagram of a security protection structure for a wind farm data center proposed in this utility model. Figure 1 ;

[0018] Figure 2 A three-dimensional structural diagram of a security door;

[0019] Figure 3 A three-dimensional disassembly diagram of a security door;

[0020] Figure 4A three-dimensional structural diagram of a concealed valve plate;

[0021] Figure 5 This is a three-dimensional structural diagram of the locking mechanism;

[0022] Figure 6 This is a three-dimensional structural diagram of the handle mechanism;

[0023] Figure 7 This is a three-dimensional disassembly diagram of the handle mechanism.

[0024] In the diagram: 1. Wind farm data center warehouse; 2. Doorway; 3. Security door; 4. Handle mechanism; 41. Grip; 42. Slider; 43. Slide rail; 44. Pressure sensor; 45. Spring; 5. Unlocking mechanism; 51. Unlocking compartment; 52. Controller; 53. Password keypad area; 54. Fingerprint sensing area; 55. Inner slide rail; 56. Alarm; 57. Battery; 58. Concealed valve plate; 59. Electric telescopic rod; 6. Locking mechanism; 61. Mounting slot; 62. Lock block; 63. Threaded rod; 64. Built-in motor. Detailed Implementation

[0025] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0026] Reference Figure 1-7 A security protection structure for a wind farm data center includes a wind farm data center warehouse 1. A doorway 2 is provided in the warehouse 1. A security door 3 is rotatably installed inside the doorway 2. The security door 3 is equipped with a handle mechanism 4, an unlocking mechanism 5, and a locking mechanism 6. The unlocking mechanism 5 includes an unlocking compartment 51, located outside the security door 3. A controller 52, an alarm 56, and a battery 57 are fixedly installed inside the unlocking compartment 51. The controller 52 has a password keypad area 53 and a fingerprint sensor area 54. An inner sliding groove 55 is provided inside the unlocking compartment 51. A hidden valve plate 58 is slidably installed inside the inner sliding groove 55. An electric telescopic rod 59 is fixedly installed at the bottom inside the inner sliding groove 55, and the output end of the electric telescopic rod 59 is fixedly connected to the hidden valve plate 58.

[0027] With the above-described configuration, the controller 52 can control the electric telescopic rod 59 to retract or extend. When the electric telescopic rod 59 extends, it drives the hidden valve plate 58 to seal and close the front side of the unlocking chamber 51. When the electric telescopic rod 59 retracts, it drives the hidden valve plate 58 to slide inward into the inner groove 55, opening the front side of the unlocking chamber 51. At this time, subsequent unlocking work can be carried out. At the same time, an alarm 56 is also installed inside the unlocking chamber 51. When the number of password outputs exceeds the limit, the alarm 56 will be activated.

[0028] In this method, the handle mechanism 4 includes a grip 41, which is fixedly installed on the front side of the safety door 3. A groove 43 is provided on the upper inner side of the grip 41. A slider 42 is slidably installed on the inner side of the groove 43. A pressure sensor 44 is fixedly installed on the top inner side of the groove 43. A spring 45 is fixedly connected between the bottom of the pressure sensor 44 and the slider 42.

[0029] With the above-described configuration, when the slider 42 is manually pressed, the pressure value on the slider 42 is transmitted to the pressure sensor 44 by the spring 45, and the pressure sensor 44 can detect the pressure signal. The slider 42 is located on the inner top of the handle 41 and is very concealed, making it difficult for non-wind farm management personnel to know about it.

[0030] In this configuration, pressure sensor 44 is electrically connected to controller 52.

[0031] With the above-described configuration, the pressure sensor 44 can transmit the pressure signal to the controller 52. When the controller 52 senses the pressure signal, it opens or closes the unlocking chamber 51, preventing accidental opening or closing operations. In this invention, a pressure preset value is set inside the controller 52. Setting this pressure preset value to a high level can prevent accidental opening or closing of the unlocking chamber 51 caused by accidentally touching the slider 42 during daily use.

[0032] In this method, the locking mechanism 6 includes a mounting groove 61, which is opened on the side of the safety door 3. A built-in motor 64 is fixedly installed inside the mounting groove 61. A threaded rod 63 is fixedly installed on the output end of the built-in motor 64. A locking block 62 is slidably installed at the outer port of the mounting groove 61. A locking groove adapted to the locking block 62 is opened inside the door opening 2. The threaded rod 63 is screwed through to the inside of the locking block 62.

[0033] With the above configuration, when the built-in motor 64 rotates, it can drive the threaded rod 63 to rotate, and then the threaded rod 63 and the locking block 62 are screwed together, so that the locking block slides inside the mounting groove 61 to unlock or lock the safety door 3.

[0034] In this configuration, the built-in motor 64 is electrically connected to the controller 52.

[0035] With the above configuration, the rotation of the built-in motor 64 is directly controlled by the controller 52.

[0036] In this configuration, two sets of electric telescopic rods 59 are symmetrically arranged along the back of the concealed valve plate 58.

[0037] By setting it up in the above manner, the two sets of electric telescopic rods 59 synchronously drive the concealed valve plate 58, making the sliding of the concealed valve plate 58 more stable.

[0038] The working principle of the safety protection structure for a wind farm data center provided by this utility model is as follows:

[0039] When using the security door 3, place your finger inside the handle 41 and press it firmly against the slider 42. The pressure on the slider 42 is transmitted to the pressure sensor 44 by the spring 45. The pressure sensor 44 feeds back the pressure signal to the controller 52. When the pressure value reaches the preset pressure value, the controller 52 controls the electric telescopic rod 59 to retract, which drives the hidden valve plate 58 to open, opening the front of the unlocking chamber 51. At this time, you can enter the unlocking password or press your fingerprint on the controller 52. When the unlocking password or fingerprint matches, the controller 52 controls the built-in motor 64 to drive the threaded rod 63 to rotate, which drives the lock block 62 to retract into the mounting groove 61, thus completing the unlocking of the security door 3. When the number of unlocking password or fingerprint inputs exceeds the limit, the alarm 56 will be activated.

[0040] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A wind farm data center security structure, characterized in that, The wind farm data center warehouse (1) is provided with a door opening (2), and a safety protection door (3) is rotatably installed inside the door opening (2). The safety protection door (3) is provided with a handle mechanism (4), an unlocking mechanism (5) and a locking mechanism (6). The unlocking mechanism (5) includes an unlocking compartment (51), which is located outside the security door (3). A controller (52), an alarm (56), and a battery (57) are fixedly installed inside the unlocking compartment (51). The controller (52) is provided with a password keypad area (53) and a fingerprint sensing area (54). An inner sliding groove (55) is provided inside the unlocking compartment (51). A hidden valve plate (58) is slidably installed inside the inner sliding groove (55). An electric telescopic rod (59) is fixedly installed at the bottom inside the inner sliding groove (55). The output end of the electric telescopic rod (59) is fixedly connected to the hidden valve plate (58).

2. The security protection structure for a wind farm data center according to claim 1, characterized in that, Two sets of the electric telescopic rods (59) are symmetrically arranged along the back of the concealed valve plate (58).

3. The security protection structure for a wind farm data center according to claim 1, characterized in that, The handle mechanism (4) includes a grip (41), which is fixedly installed on the front side of the safety door (3).

4. The security protection structure for a wind farm data center according to claim 3, characterized in that, A groove (43) is provided on the upper inner side of the grip (41). A slider (42) is slidably installed on the inner side of the groove (43). A pressure sensor (44) is fixedly installed on the top inner side of the groove (43). A spring (45) is fixedly connected between the bottom of the pressure sensor (44) and the slider (42).

5. A security protection structure for a wind farm data center according to claim 4, characterized in that, The pressure sensor (44) is electrically connected to the controller (52).

6. The security protection structure for a wind farm data center according to claim 1, characterized in that, The locking mechanism (6) includes a mounting groove (61), which is located on the side of the safety door (3). A built-in motor (64) is fixedly installed inside the mounting groove (61). A threaded rod (63) is fixedly installed on the output end of the built-in motor (64). A lock block (62) is slidably installed at the outer port of the mounting groove (61). A lock groove that matches the lock block (62) is provided inside the door opening (2).

7. A security protection structure for a wind farm data center according to claim 6, characterized in that, The threaded rod (63) is screwed through into the lock block (62).

8. A security protection structure for a wind farm data center according to claim 6, characterized in that, The built-in motor (64) is electrically connected to the controller (52).