Digital attack and defense environment simulation device for new energy station

By designing a retractable and deployable placement and transfer mechanism, the inconvenience of storing and transferring the digital attack and defense environment simulation device for new energy power stations and the equipment support problem were solved, improving the practicality and stability of the device and extending its lifespan.

CN223755013UActive Publication Date: 2026-01-02ENERGY CHINA YNPD
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Patent Information

Application Number
CN202422827362.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2026-01-02
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The existing digital attack and defense environment simulation device for new energy power stations is inconvenient to store and move, and cannot provide synchronous support for various simulation devices, which increases the cost of use.

Method used

A simulation device including a first placement mechanism and a second placement mechanism was designed. The simulation device can be flexibly folded and unfolded through a sliding groove, a U-shaped slide plate, a horizontal slide bar and a limiting mechanism. Combined with a transfer mechanism and a heat dissipation mechanism, it provides convenient operation and equipment support.

Benefits of technology

It enables the stable deployment and use of simulation equipment in different scenarios, reduces the floor space, reduces equipment wear and tear, extends the service life, and extends the service life of the equipment through the heat dissipation mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a digital attack and defense environment simulation device for a new energy station. The digital attack and defense environment simulation device comprises a first placement mechanism and a second placement mechanism, the first placing mechanism comprises a bottom plate, four L-shaped vertical plates are symmetrically arranged on the two sides of the bottom plate in pairs, sliding through grooves are formed in the top ends of the L-shaped vertical plates in a penetrating mode, U-shaped sliding plates are arranged in the sliding through grooves in a sliding and penetrating mode, and the top ends of the four U-shaped sliding plates are connected with a top plate; the second placing mechanism comprises a U-shaped clamping plate, the U-shaped clamping plate is arranged on the bottom plate in a bilateral symmetry mode, transverse sliding rods are slidably inserted between the U-shaped clamping plate and the bottom plate, the tail ends of the two transverse sliding rods are fixedly connected with an L-shaped placing plate, a sliding through groove is formed in the upper end of the L-shaped placing plate in a penetrating mode, and a T-shaped placing plate is slidably inserted into the sliding through groove. The first placing mechanism and the second placing mechanism can be flexibly and stably folded and unfolded according to the use requirements of the simulation equipment, so that the simulation equipment can be conveniently arranged and used in different use scenes, and the practicability is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to new energy station simulation device technical field, concretely is a new energy station digitization attack and defense environment simulation device. BACKGROUND

[0002] New energy station digitization attack and defense environment simulation test is the technical field that gradually arises along with the rapid development of new energy industry and the promotion of network security demand in recent years, and it aims at simulating the actual operation environment of new energy station through digitization means, and carries out attack and defense drill and test on this basis to improve the security protection ability and the ability of coping with network attack of new energy station.

[0003] But the existing new energy station digitization attack and defense environment simulation device has the defect that storage and transfer are inconvenient, is inconvenient for user operation and use, and the existing new energy station digitization attack and defense environment simulation device cannot synchronously support various simulation equipment, needs to purchase multiple support devices, thereby improve the use cost. UTILITY MODEL CONTENT

[0004] In view of the above problem, the utility model provides a new energy station digitization attack and defense environment simulation device to solve the problems of inconvenient storage and transfer of the existing new energy station digitization attack and defense environment simulation device and the inability to synchronously support various simulation equipment.

[0005] The specific technical scheme is: a new energy station digitization attack and defense environment simulation device, including first placing mechanism and second placing mechanism, the first placing mechanism includes bottom plate, the both sides of bottom plate are symmetrically provided with four L-shaped vertical boards, the top of L-shaped vertical board is penetrated and is provided with sliding slot, the U-shaped sliding plate is slidably arranged in the sliding slot, and the top of four U-shaped sliding plates is connected with top plate.

[0006] The second placing mechanism includes U-shaped clamping plate, the U-shaped clamping plate is symmetrically arranged on the bottom plate, and the U-shaped clamping plate and the bottom plate are slidably connected with the horizontal sliding rod, the end of two horizontal sliding rods is fixedly connected with L-shaped placing plate, and the upper end of L-shaped placing plate is penetrated and is provided with sliding slot, the T-shaped placing plate is slidably connected in the sliding slot.

[0007] Further preferably, the bottom of the U-shaped sliding plate is provided with a first limiting mechanism, the first limiting mechanism comprises a first frame body connected to the bottom end of the U-shaped sliding plate, a fixed sliding plate is slidably arranged in the inner cavity of the first frame body, one side of the fixed sliding plate is connected with a fixed insertion rod, the other side is connected with a first spring and a T-shaped pull rod, the fixed insertion rod and the T-shaped pull rod are respectively slidably inserted into the two sides of the first frame body, the first spring is sleeved on the outer surface of the T-shaped pull rod, and the end of the first spring is connected to the inner wall of the first frame body; the lower end and the upper end of the L-shaped vertical plate 12 are both provided with a fixed counterbore, and the fixed insertion rod can be slidably inserted into the fixed counterbore.

[0008] Further preferably, the bottom of the T-shaped placement plate is provided with a second limiting mechanism, the second limiting mechanism comprises a second frame body arranged at the middle of the bottom end of the T-shaped placement plate, a fixed sliding disc is slidably arranged in the second frame body, one side of the fixed sliding disc is connected with a fixed insertion column, the other side is connected with a second spring, and the end of the second spring is connected to the inner wall of the second frame body; a fixed insertion hole is formed in the upper end of the L-shaped placement plate, and the fixed insertion column can be slidably inserted into the fixed insertion hole; an operation counterbore is also formed in the upper end of the L-shaped placement plate and communicates with the fixed insertion hole, and the inner diameter of the operation counterbore is greater than that of the fixed insertion hole.

[0009] Further preferably, the top plate is provided with a limiting insertion rod at the lower end of one side near the T-shaped placement plate, and the T-shaped placement plate and the L-shaped placement plate are correspondingly provided with left and right symmetrical limiting through holes and limiting through holes at the upper end, and the limiting insertion rod can be slidably inserted into the limiting through holes and the limiting through holes.

[0010] Further preferably, the end of the horizontal sliding rod away from the L-shaped placement plate is connected with a limiting sliding block, and the top end of the U-shaped clamping plate is provided with a limiting sliding groove, and the limiting sliding block is slidably inserted into the limiting sliding groove.

[0011] Further preferably, the two T-shaped pull rods on the same side are connected with a pull rod.

[0012] Further preferably, the middle of the bottom plate is provided with a connecting groove.

[0013] Further preferably, the four corners of the bottom plate are provided with a moving mechanism, the moving mechanism comprises a U-shaped support frame, a lifting lead screw is threadedly inserted into the U-shaped support frame, a driving hand wheel is installed at the top end of the lifting lead screw, a universal wheel is installed at the other end of the lifting lead screw and penetrates through a lifting sliding plate, and the lifting sliding plate is slidably clamped on the inner side of the U-shaped support frame.

[0014] Further preferably, the outer wall of the driving hand wheel is provided with a layer of anti-skid lines.

[0015] Further, preferably, the outer side of the L-shaped placement plate is provided with a heat dissipation mechanism, the heat dissipation mechanism comprises a wind collecting cylinder body, the wind collecting cylinder body is installed in the mounting insertion hole formed in the L-shaped placement plate, one end of the wind collecting cylinder body is provided with a fixed perforation, a driving motor is inserted and mounted in the fixed perforation, the other end of the wind collecting cylinder body is provided with a rotating through hole, the output end of the driving motor is sleeved with a wind fan blade and then is rotatably inserted in the rotating through hole, and a plurality of air inlet perforations and air outlet through holes are symmetrically formed on the two sides of the wind collecting cylinder body.

[0016] The first placement mechanism and the second placement mechanism can be flexibly and stably folded and unfolded according to the use requirements of the simulation equipment, the arrangement and use of the simulation equipment in different use scenarios are facilitated, the folded state during the idle period of the simulation device can reduce the floor area, the unfolded state can meet the synchronous support requirements when multiple types of simulation equipment need to be arranged and used at the same time, multiple support devices do not need to be purchased, and the practicability is high. Moreover, the transfer mechanism further provides convenience for the transfer of the simulation device, especially the liftable transfer mechanism can be recycled during the simulation work, the stability of the device is ensured, and the loss of the universal wheel is reduced; the heat dissipation mechanism can realize real-time heat dissipation and cooling of the simulation equipment, and is beneficial to prolonging the service life of the simulation equipment. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a folding structure schematic view of the new energy station digital attack and defense environment simulation device;

[0018] Figure 2 It is an unfolding structure schematic view of the new energy station digital attack and defense environment simulation device;

[0019] Figure 3 It is Figure 2 It is an enlarged schematic view of the first limiting mechanism at A in the middle;

[0020] Figure 4 It is Figure 2 It is an enlarged schematic view of the second limiting mechanism at B in the middle;

[0021] Figure 5 It is Figure 2 It is an enlarged schematic view of the structure at C in the middle;

[0022] Figure 6 It is Figure 2 It is an enlarged schematic view of the structure at D in the middle;

[0023] Figure 7 It is Figure 2 It is an enlarged schematic view of the transfer mechanism at E in the middle;

[0024] Figure 8 It is Figure 2An enlarged schematic view of the heat dissipation mechanism at F;

[0025] In the figure: 1 - first placing mechanism, 11 - bottom plate, 12 - L-shaped vertical plate, 13 - sliding slot, 14 - U-shaped sliding plate, 15 - top plate, 16 - first frame body, 17 - fixed sliding plate, 18 - first spring, 19 - fixed insertion rod, 110 - fixed counterbore, 111 - T-shaped pull rod, 112 - pull rod, 113 - connecting groove;

[0026] 2 - transfer mechanism, 21 - U-shaped support frame, 22 - lifting lead screw, 23 - driving hand wheel, 24 - lifting sliding plate, 25 - universal wheel;

[0027] 3 - second placing mechanism, 31 - U-shaped clamping plate, 32 - horizontal sliding rod, 33 - L-shaped placing plate, 34 - sliding slot, 35 - T-shaped placing plate, 36 - limiting insertion rod, 37 - limiting through hole, 38 - limiting through hole, 39 - second frame body, 310 - fixed sliding disc, 311 - second spring, 312 - fixed insertion column, 313 - fixed insertion hole, 314 - limiting sliding block, 315 - limiting sliding groove, 316 - operating counterbore, 317 - mounting insertion hole;

[0028] 4 - heat dissipation mechanism, 41 - air collecting cylinder body, 42 - fixed through hole, 43 - driving motor, 44 - rotating through hole, 45 - air conveying fan blade, 46 - air inlet through hole, 47 - air outlet through hole. DETAILED DESCRIPTION

[0029] In order to make the technical problems and technical solutions solved by the utility model more clear and explicit, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0030] In the description of the utility model, it should be understood that the orientation or position relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or position relationship based on the orientation or position relationship shown in the drawings, and is only used to facilitate the description of the utility model, and does not indicate or imply that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0031] In the description of the utility model, still need to explain, unless another explicit provision and limitation, term "arrangement" "installation" "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integral connection, can be mechanical connection, also can be electrical connection, can be direct connection, also can be indirectly connected through intermediate medium, can be two element internal communication. For ordinary skilled in the art, can understand the specific meaning of the above terms in the utility model according to specific circumstances.

[0032] As Figure 1 Figure 2 The utility model provides a new energy field station digitization attack and defense environment simulation device, including first placing mechanism 1 and second placing mechanism 3, first placing mechanism 1 and second placing mechanism 3 can be according to the need of simulation equipment use flexibly and stably and fold and unfold, the arrangement and use of simulation equipment under different use scenarios are convenient, and the occupation area can be reduced during the idle period of simulation device, and the unfolded state can meet the synchronous support needs when multiple simulation equipment needs to be arranged and used simultaneously, without purchasing multiple support devices, and the practicability is high.

[0033] The folding and unfolding structure of the first placing structure 1 and the second placing mechanism 2 is specifically as follows:

[0034] The first placing mechanism 1 includes a bottom plate 11, four L-shaped vertical plates 12 are symmetrically arranged on both sides of the bottom plate 11, a sliding slot 13 is formed at the top end of the L-shaped vertical plate 12, a U-shaped sliding plate 14 is slidably arranged in the sliding slot 13, and the top end of the four U-shaped sliding plates 14 is connected with a top plate 15.

[0035] The second placing mechanism 3 includes a U-shaped clamping plate 31, the U-shaped clamping plate 31 is symmetrically arranged on the bottom plate 11, a horizontal sliding rod 32 is slidably connected between the U-shaped clamping plate 31 and the bottom plate 11, an L-shaped placing plate 33 is fixedly connected to the ends of the two horizontal sliding rods 32, a sliding slot 34 is formed at the upper end of the L-shaped placing plate 33, and a T-shaped placing plate 35 is slidably connected in the sliding slot 34.

[0036] When in use, horizontally pull the L-shaped placing plate 33 away from the bottom plate 11, drive the transverse sliding rod 32 to move synchronously with the T-shaped placing plate 35, make the second placing mechanism 3 slide to the side of the first placing mechanism 1, then vertically pull the T-shaped placing plate 35, make the T-shaped placing plate 35 slide upward along the sliding through slot 34, completely unfold the T-shaped placing plate 35 and the L-shaped placing plate 33 stacked together. Then vertically pull the top plate 15, make the U-shaped sliding plate 14 connected with the top plate 15 slide upward along the sliding through slot 13, completely unfold the first placing mechanism 1. When the top plate 15 and the T-shaped placing plate 35 slide into place, any limiting mechanism can be used to limit them, stabilize the unfolded state of the first placing mechanism 1 and the second placing mechanism 3. Thereafter, the simulation equipment can be installed and placed on the bottom plate 11, the top plate 15, the L-shaped placing plate 33 and the T-shaped placing plate 35 to carry out modeling and simulation test work.

[0037] As a preferred embodiment of the present embodiment, the first limiting mechanism is arranged at the bottom of the U-shaped sliding plate 14, and the second limiting mechanism is arranged at the bottom of the T-shaped placing plate 35.

[0038] As shown in Figure 3 The first limiting mechanism includes a first frame body 16 connected at the bottom end of the U-shaped sliding plate 14, a fixed sliding plate 17 slidably arranged in the inner cavity of the first frame body 16, a fixed insertion rod 19 connected at one side of the fixed sliding plate 17, a first spring 18 and a T-shaped pull rod 111 connected at the other side of the fixed sliding plate 17, the fixed insertion rod 19 and the T-shaped pull rod 111 are respectively slidably inserted in the two sides of the first frame body 16, the first spring 18 is sleeved on the outer surface of the T-shaped pull rod 111, and the end of the first spring 18 is connected to the inner wall of the first frame body 16; the lower end and the upper end of the L-shaped vertical plate 12 are both provided with a fixed counterbore 110, and the fixed insertion rod 19 can be slidably inserted in the fixed counterbore 110. At the same time, in order to facilitate pulling the T-shaped pull rod, a pull rod 112 is connected between the two T-shaped pull rods 111 at the same side.

[0039] In use, when the first placing mechanism 1 needs to be unfolded, the two pull rods 112 on the sides are pulled to move towards each other, thereby driving the fixed sliding plate 17 to move towards each other, further compressing the corresponding first spring 18, until the fixed insertion rod 19 is separated from the lower end fixed counterbore 110, and then the top plate 15 is moved upwards, thereby driving the U-shaped sliding plate 14 to move upwards, at this time, the two connecting pull rods 112 are loosened; in the process of moving upwards, due to the restoring force of the first spring 18, the top end of the fixed insertion rod 19 slides upwards along the L-shaped vertical plate 12, when the top plate 15 moves to the highest position, the fixed insertion rod 19 moves back under the restoring force of the first spring 18, and is inserted into the corresponding fixed counterbore 110 at the upper end, thereby limiting and stabilizing the top plate 15 at the highest position. When the first placing mechanism 1 needs to be folded, the two pull rods 112 on the sides are pulled to move towards each other, so that the fixed insertion rod 19 is separated from the fixed counterbore 110 at the upper end, and the limiting of the top plate 15 is released, and the top plate 15 can slide downwards along the L-shaped vertical plate 12, when the top plate 15 moves to the lowest position, the fixed insertion rod 19 moves back under the restoring force of the first spring 18, and is inserted into the corresponding fixed counterbore 110 at the lower end, thereby completing the homing of the top plate 15.

[0040] As shown in Figure 4 The second limiting mechanism includes a second frame body 39 arranged at the bottom end of the T-shaped placing plate 35, a fixed sliding disc 310 is arranged to slide in the second frame body 39, one side of the fixed sliding disc 310 is connected with a fixed insertion column 312, the other side is connected with a second spring 311, and the end of the second spring 311 is connected to the inner wall of the second frame body 39; a fixed insertion hole 313 is arranged at the upper end of the L-shaped placing plate 33, and the fixed insertion column 312 can be slidably arranged in the fixed insertion hole 313; an operation counterbore 316 is arranged at the upper end of the L-shaped placing plate 33 and communicates with the fixed insertion hole 313, and the inner diameter of the operation counterbore 316 is greater than that of the fixed insertion hole 313. The arrangement of the operation counterbore 316 provides convenience for the convenient separation of the fixed insertion column 312 and the fixed insertion hole 313.

[0041] In use, when the second placing mechanism 3 needs to be unfolded, the T-shaped placing plate 35 moves upwards, thereby driving the second frame body 39 to move upwards, in the process of moving upwards, the restoring force generated by the compression of the second spring 311 can make the fixed insertion column 312 slide upwards along the L-shaped placing plate 33, when the T-shaped placing plate 35 moves to the highest position, the fixed insertion column 312 is inserted into the fixed insertion hole 313 under the restoring force of the second spring 311, thereby limiting and stabilizing the T-shaped placing plate 35 at the highest position. When the second placing mechanism 3 needs to be folded, the fixed insertion column 312 is pushed through the operation counterbore 316, until the fixed insertion column 312 is separated from the fixed insertion hole 313, thereby releasing the limiting of the T-shaped placing plate 35, and the T-shaped placing plate 15 can slide downwards along the L-shaped placing plate 33 to the homing position.

[0042] As shown in Figure 5As shown, in a preferred embodiment of this invention, a limiting mechanism is provided between the second placement mechanism 3 and the first placement mechanism 1 to ensure stability when both are retracted. Specifically, limiting rods 36 are symmetrically arranged on the lower end of the top plate 15 near the T-shaped placement plate 35. The T-shaped placement plate 35 and the L-shaped placement plate 33 are correspondingly provided with symmetrical limiting through holes 37 and limiting perforations 38. When the second placement mechanism 3 retracts into the first placement mechanism 1, the first limiting rod 36 on the inner side of the top plate 15 slides into the limiting through hole 37 on the T-shaped placement plate 35 and the limiting perforation 38 on the L-shaped placement plate 33, thus ensuring the two placement mechanisms are securely retracted.

[0043] like Figure 6 As shown in the preferred embodiment, to prevent the transverse slide bar 32 from derailing when the second placement mechanism 3 slides to the side of the first placement mechanism 1, a limiting slider 314 is connected to the end of the transverse slide bar 32 away from the L-shaped placement plate 33. A limiting groove 315 is formed at the top of the U-shaped clamping plate 31, and the limiting slider 314 is slidably inserted into the limiting groove 315. When the L-shaped placement plate 33 is pulled, the limiting slider 314 can limit the transverse slide bar 32, preventing the transverse slide bar 32 from sliding away from the limiting groove 315.

[0044] like Figure 1 As shown, in a preferred embodiment of this invention, a connecting groove 113 is provided in the middle of the base plate 11. The connecting groove 113 facilitates the installation of the operating chair.

[0045] like Figure 7 As shown in the preferred embodiment, to facilitate the movement of the simulation device, a transfer mechanism 2 is provided at each of the four corners of the base plate 11. The transfer mechanism 2 includes a U-shaped support frame 21, on which a lifting screw 22 is threadedly inserted. A drive handwheel 23 is installed at the top of the lifting screw 22, and a caster wheel 25 is installed at the other end after passing through a lifting slide plate 24. The lifting slide plate 24 is slidably engaged inside the U-shaped support frame 21. A layer of anti-slip texture radiates from the outer wall of the drive handwheel 23.

[0046] When in use, the universal wheels 25 greatly facilitate the movement of the device. After moving to a suitable position, the four drive handwheels 23 can be rotated in sequence to drive the corresponding lifting screws 22 to rotate, thereby driving the universal wheels 25 to move up away from the ground. At the same time, the base plate 11 moves down relatively and slowly touches the ground, making the entire device stable on the ground, and then the rotation of the four drive handwheels 23 can be stopped.

[0047] like Figure 8As shown, as a preferred embodiment of the present embodiment, the outer side of the L-shaped placement plate 33 is provided with a heat dissipation mechanism 4, which comprises a wind collecting barrel 41 installed in the mounting socket 317 of the L-shaped placement plate 33, one end of the wind collecting barrel 41 is provided with a fixing hole 42, a driving motor 43 is inserted into the fixing hole 42, the other end of the wind collecting barrel 41 is provided with a rotating hole 44, the output end of the driving motor 43 is sleeved with a wind fan blade 45 and is inserted into the rotating hole 44, and a plurality of air inlet holes 46 and air outlet holes 47 are symmetrically arranged on both sides of the wind collecting barrel 41.

[0048] In use, when the simulation device is working, the driving motor 43 is started to drive the wind fan blade 45 to rotate, and then air is quickly sucked into the wind collecting barrel 41 through the air inlet holes 46 and is guided to the simulation device through the air outlet holes 47 to dissipate heat.

[0049] The present application has been described in detail through specific and preferred embodiments, but those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and any modification, equivalent replacement, etc. made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A digital attack and defense environment simulation device for new energy power stations, characterized in that: The utility model provides a kind of first placing mechanism (1) and second placing mechanism (3);The first placing mechanism (1) includes bottom plate (11), and the bottom plate (11) both sides two two symmetrically arranged four L-shaped vertical plate (12), the top of L-shaped vertical plate (12) is penetrated and is provided with sliding slot (13), U-shaped slide plate (14) is slidably arranged in sliding slot (13), and the top of four U-shaped slide plate (14) is connected with top plate (15); The second placing mechanism (3) includes U-shaped clamping plate (31), and the U-shaped clamping plate (31) is symmetrically arranged on bottom plate (11), and slidingly inserted with horizontal slide bar (32) between U-shaped clamping plate (31) and bottom plate (11), the end of two horizontal slide bars (32) is fixedly connected with L-shaped placing plate (33), and the upper end of L-shaped placing plate (33) is penetrated and is provided with sliding slot (34), and the sliding slot (34) is slidably inserted with T-shaped placing plate (35).

2. The new energy station digital attack and defense environment simulation device according to claim 1, characterized in that: The bottom of the U-shaped slide plate (14) is provided with a first limiting mechanism, the first limiting mechanism includes a first frame (16) connected to the bottom end of the U-shaped slide plate (14), a fixed slide plate (17) slidably arranged in the inner cavity of the first frame (16), a fixed insertion rod (19) connected to one side of the fixed slide plate (17), a first spring (18) and a T-shaped pull rod (111) connected to the other side of the fixed slide plate (17), the fixed insertion rod (19) and the T-shaped pull rod (111) are slidably inserted into the two sides of the first frame (16), the first spring (18) is sleeved on the outer surface of the T-shaped pull rod (111), and the end of the first spring (18) is connected to the inner wall of the first frame (16); the lower end and the upper end of the L-shaped vertical plate (12) are provided with a fixed counterbore (110), and the fixed insertion rod (19) can be slidably inserted into the fixed counterbore (110).

3. The new energy station digitized attack and defense environment simulation device according to claim 1, characterized in that: The bottom of the T-shaped placing plate (35) is provided with a second limiting mechanism, the second limiting mechanism includes a second frame (39) arranged at the bottom end of the T-shaped placing plate (35), a fixed slide plate (310) slidably arranged in the second frame (39), a fixed insertion column (312) connected to one side of the fixed slide plate (310), a second spring (311) connected to the other side of the fixed slide plate (310), and the end of the second spring (311) is connected to the inner wall of the second frame (39); the upper end of the L-shaped placing plate (33) is provided with a fixed insertion hole (313), and the fixed insertion column (312) can be slidably inserted into the fixed insertion hole (313); the upper end of the L-shaped placing plate (33) is also provided with an operation counterbore (316) in communication with the fixed insertion hole (313), and the inner diameter of the operation counterbore (316) is greater than the inner diameter of the fixed insertion hole (313).

4. The new energy station digitized attack and defense environment simulation device according to claim 1, characterized in that: The side lower end of the top plate (15) close to the T-shaped placing plate (35) is symmetrically provided with a limiting insertion rod (36), and the T-shaped placing plate (35) and the L-shaped placing plate (33) are correspondingly provided with left and right symmetric limiting through holes (37) and limiting through holes (38), and the limiting insertion rod (36) can be slidably inserted into the limiting through holes (37) and the limiting through holes (38).

5. The new energy station digital attack and defense environment simulation device according to claim 1, characterized in that: The transverse slide rod (32) is connected with a limiting sliding block (314) at one end away from the L-shaped placing plate (33), and the top end of the U-shaped clamping plate (31) is provided with a limiting sliding groove (315), and the limiting sliding block (314) is slidingly inserted into the limiting sliding groove (315).

6. The new energy station digitized attack and defense environment simulation device according to claim 2, characterized in that: Two T-shaped pull rods (111) are connected with a pull rod (112).

7. The new energy station digitized attack and defense environment simulation device according to claim 1, characterized in that, The middle part of the bottom plate (11) is provided with a connecting groove (113).

8. The new energy station digitized attack and defense environment simulation device according to any one of claims 1-7, characterized in that: The bottom plate (11) is provided with a moving mechanism (2) at each corner, the moving mechanism (2) comprises a U-shaped support frame (21), a lifting lead screw (22) is threadedly inserted into the U-shaped support frame (21), a driving hand wheel (23) is installed at the top end of the lifting lead screw (22), a universal wheel (25) is installed at the other end of the lifting lead screw (22) after penetrating through a lifting sliding plate (24), and the lifting sliding plate (24) is slidingly clamped on the inner side of the U-shaped support frame (21).

9. The new energy station digitized attack and defense environment simulation device according to claim 8, characterized in that: The outer wall of the driving hand wheel (23) is provided with a layer of anti-skid lines.

10. The new energy station digitized attack and defense environment simulation device according to any one of claims 1-7, characterized in that: The L-shaped placing plate (33) is provided with a heat dissipation mechanism (4) on the outer side, the heat dissipation mechanism (4) comprises a wind collecting cylinder (41), the wind collecting cylinder (41) is installed in a mounting insertion hole (317) provided on the L-shaped placing plate (33), one end of the wind collecting cylinder (41) is provided with a fixing perforation (42), a driving motor (43) is inserted into the fixing perforation (42), the other end of the wind collecting cylinder (41) is provided with a rotating through hole (44), the output end of the driving motor (43) is sleeved with a wind fan blade (45) and then is rotatably inserted into the rotating through hole (44), and a plurality of air inlet perforations (46) and air outlet through holes (47) are symmetrically provided on the two sides of the wind collecting cylinder (41).