An intelligent power grid stability controller

By designing the sliding mechanism and guiding/contacting device of the intelligent power grid stability controller, the problems of inconvenient installation and poor connection caused by the large size of the controller are solved, achieving the effects of simplifying wire connection, reducing installation risk and improving safety.

CN120955461BActive Publication Date: 2025-12-16TAIZHOU SUJI ELECTRIC POWER TECH CO LTD
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Patent Information

Application Number
CN202511474086.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2025-12-16
Estimated Expiration
2045-10-15

AI Technical Summary

Technical Problem

Existing smart power grid stability controllers are large in size, requiring workers to use external tools to adjust their height when connecting power lines, which increases installation difficulty and risk. Furthermore, if the connection is faulty, secondary adjustments are needed, affecting work efficiency and safety.

Method used

The design incorporates a sliding mechanism, a T-shaped frame, a control mechanism, a transmission plate, a threaded rod, and a T-shaped support plate. The sliding mechanism lowers the height between the control mechanism and the wire, facilitating wire connection. Furthermore, the guide device and abutment device reduce the risk of damage to the wire connection port, ensuring stability and safety.

Benefits of technology

It simplifies the wire connection process, reduces installation risks and the effort required from staff, improves the stability and safety of the installation process, and reduces damage to wire connection ports and the risk of fire.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a kind of intelligent power grid stabilizing controller, it is related to power grid technical field.The present application includes device main body, sliding mechanism is fixedly installed in device main body inner wall back, T-shaped carrier frame is slidably installed in sliding mechanism inside, control mechanism is fixedly installed in T-shaped carrier frame inside, two transmission plates are symmetrically and fixedly installed on the outer wall of T-shaped carrier frame, threaded rod is rotatably installed on the bottom of device main body inner wall, and the lower pressing block is movably installed on the outer wall of threaded rod and penetrates it.The present application reduces the height between control mechanism and wire by sliding mechanism, avoids the situation that device main body is relatively large, so that control mechanism is located at a relatively high position, and workers need to use external tools to change their height to connect, so that workers do not need to adjust again without using external tools when poor contact or other faults occur after installation, saving worker's energy and reducing installation risk.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power grid, in particular to a kind of intelligent power grid stabilizing controller. BACKGROUND

[0002] With the continuous progress of science and technology, the country in the field of power grid has also been rapid development, and when the power grid is arranged, in order to maintain the stability of voltage, generally need to set controller near transformer, and the power grid controller optimizes the safety of power use.

[0003] The patent with patent announcement No.CN216085861U discloses an intelligent power grid stabilizing controller, belonging to the technical field of stabilizing controller, including base, the base bottom four corners are all installed with self-locking universal wheel, the base one end is fixedly connected with handle, the base top one end is installed with telescopic device, the telescopic device top is connected with mounting plate through steering device, the mounting plate surface is installed with smoke sensor, temperature sensor, control panel and buzzer, the base top is installed with dry powder tank, the dry powder tank is connected with spray head through electromagnetic valve, supercharger and pipeline, the base top two sides are all installed with magnet, the base two sides are fixedly installed with limit strip, the limit strip inner side wall is slidably connected with L-shaped floor, the L-shaped floor one side is provided with slot, the intelligent power grid stabilizing controller is small in size and is provided with self-locking universal wheel at bottom, convenient to move and transport, and the height and angle of detection device are conveniently adjusted.

[0004] However, the device still has some shortcomings: the device is convenient for equipment movement and transportation through universal wheel, but when large controller is connected with required line, due to the large size of controller, the position of controller is higher, which easily increases the inconvenience of workers in the process of connecting line and controller, workers need to change their height with external tools, if poor contact or other faults occur after installation is completed, workers need to adjust twice, which easily accelerates the consumption of workers' energy and increases the installation risk. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides an intelligent power grid stabilizing controller, which solves the problems raised in the above background art.

[0006] In order to achieve the above object, the present application is realized by the following technical scheme: a kind of intelligent power grid stability controller, including device main body, sliding mechanism is fixedly installed on the inner wall back of device main body, T-shaped carrier frame is slidably installed in the sliding mechanism, control mechanism is fixedly installed in the T-shaped carrier frame, two transmission plates are symmetrically and fixedly installed on the outer wall of T-shaped carrier frame, threaded rod is rotatably installed on the inner wall bottom of device main body, lower block is movably installed in the threaded rod, T-shaped support plate is fixedly installed on the side of lower block close to sliding mechanism, T-shaped support plate is movably penetrated through the bottom of device main body, the back of T-shaped support plate is provided with guiding device for making electric wire move to the front end of device main body, resistance device for judging whether electric wire is connected with control mechanism is arranged around guiding device.

[0007] According to the above technical scheme, the bottom of one end of the back of the device main body is provided with a threading groove, the two sides of the device main body are provided with ventilation grooves, the corners of the bottom of the device main body are provided with moving assemblies, the top center of the device main body is provided with an intelligent module, two fire extinguishing mechanisms are symmetrically arranged on the top of the device main body, the bottom of the fire extinguishing mechanism penetrates the inside of the device main body, and the fire extinguishing mechanism is intelligently driven by the intelligent module and sprays carbon dioxide gas.

[0008] According to the above technical scheme, the bottom connecting end of the control mechanism penetrates the bottom end of the T-shaped carrier frame, the control mechanism is used for adjusting power operation, the T-shaped carrier frame changes the connection height between the control mechanism and the electric wire through the sliding mechanism, the outer wall of the threaded rod is a non-self-locking thread groove, the threaded rod is movably installed in the transmission plate, the device main body is moved to the installation place through the moving assembly, then the top end of the electric wire connected with the control mechanism is inserted into the inside of the device main body through the threading groove, then the sliding mechanism is started, the sliding mechanism drives the T-shaped carrier frame to slide downward, the T-shaped carrier frame drives the control mechanism to move synchronously, the control mechanism moves to the top end of the electric wire, the worker connects the electric wire with the bottom connecting end of the control mechanism, then the sliding mechanism resets the control mechanism, when the device main body catches fire during operation, the intelligent module drives the fire extinguishing mechanism to start after sensing, the fire extinguishing mechanism sprays carbon dioxide gas into the inside of the device main body to extinguish the fire, so as to ensure stable operation and safety; when the T-shaped carrier frame moves downward, the transmission plate moves synchronously, when the transmission plate slides downward along the outer wall of the threaded rod, the threaded rod rotates along the inner wall bottom of the device main body through the drive of the non-self-locking thread groove, the threaded rod drives the lower block to move downward along the outer wall of the threaded rod through the thread groove, the lower block drives the T-shaped support plate to slide downward along the bottom of the device main body, the T-shaped support plate is limited by the ground and lifts the device main body, at this time the moving assembly is separated from the ground.

[0009] According to the technical scheme, the guide device comprises an L-shaped rod, the L-shaped rod is fixedly installed on the back of the T-shaped support plate on the front side, a trapezoidal frame is slidably installed on the bottom of the inner wall of the device body through a spring, the trapezoidal frame is fixedly installed on the front side of the U-shaped frame, and the guide roller is rotatably installed in the U-shaped frame.

[0010] According to the technical scheme, the back of the inner wall of the L-shaped rod is designed in an arc shape, the inclined surface of the trapezoidal frame is located on the motion track of the arc surface of the L-shaped rod, the guide roller is located on the periphery of the threading groove, the guide roller causes the connection end of the wire to bend towards the front of the device body, the T-shaped support plate drives the L-shaped rod to move synchronously downward, the L-shaped rod contacts and abuts against the inclined surface of the trapezoidal frame when moving downward, the trapezoidal frame moves horizontally along the bottom of the inner wall of the device body under the force, the trapezoidal frame drives the U-shaped frame to move synchronously, and the U-shaped frame drives the guide roller to move synchronously, at this time, the guide roller pushes the connection end of the wire towards the front of the device body, and when the circuit passes through the threading groove, the guide roller is rotatably installed to reduce the knocking and friction between the connection end of the circuit and the surrounding structure.

[0011] According to the technical scheme, the limiting rod is fixedly installed in the ventilation groove of the device body, the limiting rod is rotatably installed through a torsion spring and has a light shielding plate, the hollow frame is fixedly installed on the side of the L-shaped rod away from the trapezoidal frame, the end of the hollow frame close to the light shielding plate is designed in an arc shape, the outer wall of the light shielding plate contacts the arc surface of the light shielding plate, and the hollow frame moves synchronously downward when the L-shaped rod moves downward, the hollow frame contacts and presses the inclined surface of the light shielding plate, at this time, the light shielding plate rotates, the light shielding plate starts to flip around the limiting rod as the axis, the light shielding plate blocks the device body after flipping, the inside of the device body is in a dark environment, and the light shielding plate is opened after the fault is reset, so that the air in the device body flows.

[0012] According to the technical scheme, the abutting device comprises a friction wheel, the friction wheel is rotatably installed on the outer wall of the hollow frame away from the L-shaped rod, the outer wall of the friction wheel contacts the back of the inner wall of the device body, the L-shaped plate is fixedly installed on the side of the friction wheel close to the L-shaped rod, the L-shaped plate is rotatably installed through a torsion spring and has a circular rod, the circular rod is rotatably installed in the T-shaped frame through a torsion spring, the outer wall of the circular rod is fixedly installed with a swing frame, and the back of the bottom of the swing frame is fixedly installed with an angular block.

[0013] According to the technical scheme, the outer wall of the lead screw is a non-self-locking spiral groove, the front surface of the L-shaped plate is slidingly installed on the back surface of the L-shaped rod, the swing frame is in contact with the wire connecting end after swinging, the inclined surface of the angular block is located on the top movement track of the L-shaped plate, during the downward movement of the hollow frame and the friction wheel along the inner wall of the device body, the friction wheel generates friction and starts to rotate, the friction wheel drives the lead screw to rotate, the lead screw is limited by the non-self-locking spiral groove on the outer wall of the lead screw during rotation, and the L-shaped plate moves horizontally along the outer wall of the L-shaped rod, the L-shaped plate in horizontal movement is in contact with the inclined surface of the angular block, at this time, the angular block generates a movement force, the angular block causes the swing frame to be synchronously stressed, the swing frame drives the round rod to move synchronously, at this time, the round rod starts to rotate in the T-shaped frame, and the swing frame is in contact with the wire connecting end.

[0014] According to the technical scheme, the bottom end of the swing frame is hinged with a inclined rod through a torsion spring, the top end of the inclined rod is hinged with an insulating plate, the top of the insulating plate is slidingly installed on the bottom of the T-shaped frame, and the insulating plate is used for spacing the multiple lines and the connecting end, the swing frame drives the inclined rod to move synchronously when the swing frame swings, the inclined rod is limited by the insulating plate, the hinged shaft of the inclined rod generates a rotating force and starts to rotate, then the top end of the inclined rod pushes the insulating plate to slide horizontally along the bottom of the T-shaped frame, and the insulating plate is used for spacing the lines through the wave surface.

[0015] The application provides a kind of intelligent power grid stability controller.It has the following beneficial effects:

[0016] (1) the application is through sliding mechanism, T-shaped frame, control mechanism, transmission plate, threaded rod, lower pressing block and T-shaped support plate cooperation, the height between control mechanism and wire is reduced by sliding mechanism, avoid the device body size is larger, so that the orientation of control mechanism is higher, workers need to change their height by external tools for connection, prevent the installation is completed, when contact is poor or other faults occur, workers do not need to adjust twice under the premise of external tools, save the worker's energy and reduce the installation risk; the top of T-shaped support plate drives the moving assembly to separate from the ground, prevent displacement when workers accidentally collide with the device body during installation, avoid the wire and control mechanism from being pulled during installation due to the displacement of the device body, improve the stability during installation and enhance the protection of the line.

[0017] (2) The application is provided with a guide device, T-shaped support plates, L-shaped rods, trapezoidal frames, U-shaped racks, guide rollers, limiting rods, light shielding plates and hollow frames cooperate, the guide rollers guide and push, reduce the risk of internal battery damage of the wire connection port caused by bumping, and the device main body is closer to the front direction, which is convenient for workers to grab and process the connection port of the wire, workers do not need to stick to the front of the device main body and put their upper body into the device main body, and the preparation work before the line connection is simplified; the light shielding plate blocks, in the power-on self-checking process after the line and the control mechanism are connected, the device main body is in a fully dark environment, which is more convenient for workers to observe whether the connection end of the line and the control mechanism generates sparks due to poor connection, and the drawbacks can be found in time during the power-on detection to improve, and the control mechanism can be further ensured to operate stably.

[0018] (3) The application is provided with a contact device, hollow frames, friction wheels, lead screws, L-shaped plates, round rods, swing racks, angle blocks, inclined rods and insulating plates cooperate, the swing rack contacts, when the line and the control mechanism are connected and the worker releases his hand, the swing rack contacts to detect whether the connection end of the line and the control mechanism is fastened, so as to avoid the line from falling off in the subsequent use process, thereby reducing the risk of fire; the insulating plate is spaced apart, in the power-on self-checking process, effectively avoiding the single line from generating sparks due to poor connection, which interferes with the connection end of the surrounding line and the control mechanism, preventing the surrounding line and the connection end from generating sparks synchronously due to the spatter of sparks, thereby improving the protection of the connection end of the control mechanism and reducing the damage probability. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a schematic diagram of the whole application;

[0020] Figure 2 It is a sectional view schematic diagram of the whole application;

[0021] Figure 3 It is a schematic diagram of the internal structure of the device main body of the application;

[0022] Figure 4 It is a schematic diagram of the left side view of the internal structure of the device main body of the application;

[0023] Figure 5 It is a schematic diagram of the guide device of the application;

[0024] Figure 6 It is a schematic diagram of the left side view of the guide device of the application;

[0025] Figure 7 It is a schematic diagram of the contact device of the application;

[0026] Figure 8 It is a schematic diagram of the left side view of the back of the contact device of the application;

[0027] Figure 9 The bottom perspective view of the device of the application.

[0028] In the figure: 1, device body; 2, threading slot; 3, moving assembly; 4, intelligent module; 5, fire extinguishing mechanism; 6, sliding mechanism; 7, T-shaped carrier frame; 8, control mechanism; 9, transmission plate; 10, threaded rod; 11, lower pressing block; 12, T-shaped support plate; 13, guiding device; 131, L-shaped rod; 132, trapezoidal frame; 133, U-shaped frame; 134, guide roller; 135, limiting rod; 136, sun visor; 137, hollow frame; 14, abutting device; 141, friction wheel; 142, lead screw; 143, L-shaped plate; 144, round rod; 145, swing frame; 146, angular block; 147, inclined rod; 148, insulating plate. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application.

[0030] Please refer to Figures 1-9 An embodiment of the application is as follows: an intelligent power grid stability controller, comprising a device body 1, a sliding mechanism 6 fixedly installed on the inner wall back of the device body 1, a T-shaped carrier frame 7 slidingly installed in the sliding mechanism 6, a control mechanism 8 fixedly installed in the T-shaped carrier frame 7, two transmission plates 9 symmetrically and fixedly installed on the outer wall of the T-shaped carrier frame 7, a threaded rod 10 rotationally installed at the bottom of the inner wall of the device body 1, a lower pressing block 11 movably installed through the threaded rod 10, a T-shaped support plate 12 fixedly installed on the side of the lower pressing block 11 close to the sliding mechanism 6, the T-shaped support plate 12 movably penetrating through the bottom of the device body 1, a guiding device 13 arranged on the back of the T-shaped support plate 12 and used for promoting the movement of the electric wire to the front end of the device body 1, and an abutting device 14 arranged around the guiding device 13 and used for judging whether the electric wire is tightly connected with the control mechanism 8.

[0031] A threading slot 2 is formed at the bottom of one end of the back of the device body 1, ventilation slots are formed on the two sides of the device body 1, moving assemblies 3 are arranged at the bottom corners of the device body 1, an intelligent module 4 is arranged at the center of the top of the device body 1, two fire extinguishing mechanisms 5 are symmetrically arranged on the top of the device body 1, the fire extinguishing mechanisms 5 penetrate through the inside of the device body 1, and the fire extinguishing mechanisms 5 are intelligently driven by the intelligent module 4 and spray carbon dioxide gas.

[0032] The bottom connecting end of the control mechanism 8 penetrates the bottom end of the T-shaped carrier frame 7, the control mechanism 8 is used for adjusting the power operation, the T-shaped carrier frame 7 changes the connecting height between the control mechanism 8 and the electric wire through the sliding mechanism 6, the outer wall of the threaded rod 10 is a non-self-locking threaded groove, and the outer wall of the threaded rod 10 penetrates and is movably installed in the transmission plate 9.

[0033] In use, the device body 1 is moved to the installation position through the moving assembly 3, then the top end of the electric wire connected with the control mechanism 8 is inserted into the device body 1 through the wire slot 2, then the sliding mechanism 6 is started, the sliding mechanism 6 drives the T-shaped carrier frame 7 to slide downward, the T-shaped carrier frame 7 drives the control mechanism 8 to move synchronously, the control mechanism 8 moves towards the top end of the electric wire, then the worker connects the electric wire with the bottom connecting end of the control mechanism 8, then the sliding mechanism 6 drives the control mechanism 8 to reset, when the device body 1 catches fire during operation, the intelligent module 4 drives the fire extinguishing mechanism 5 to start after sensing, the fire extinguishing mechanism 5 sprays carbon dioxide gas into the device body 1 to extinguish the fire, so as to ensure stable operation and safety; when the T-shaped carrier frame 7 moves downward, the transmission plate 9 moves synchronously, when the transmission plate 9 slides downward along the outer wall of the threaded rod 10, the threaded rod 10 rotates along the bottom inner wall of the device body 1 through the driving of the non-self-locking threaded groove of the threaded rod 10, the lower pressing block 11 moves downward along the outer wall of the threaded rod 10 through the driving of the threaded groove during rotation, the T-shaped support plate 12 slides downward along the bottom of the device body 1 under the driving of the lower pressing block 11, the T-shaped support plate 12 is limited by the ground and lifts the device body 1, at this time, the moving assembly 3 is separated from the ground.

[0034] According to the above embodiment, the height between the control mechanism 8 and the electric wire is lowered through the sliding mechanism 6, so that the device body 1 is prevented from being too large to make the control mechanism 8 be located at a high position, the worker needs to change the height by using external tools for connection, when poor contact or other faults occur after installation, the worker does not need to adjust again under the premise of using external tools, so that the worker's energy is saved and the installation risk is reduced; the moving assembly 3 is separated from the ground through the lifting of the T-shaped support plate 12, so that the device body 1 is prevented from being displaced when the worker accidentally collides with the device body 1 during installation, the electric wire and the control mechanism 8 are prevented from being pulled during installation due to displacement of the device body 1, and the stability during installation is improved and the protection of the line is enhanced.

[0035] Please refer to Figures 1-9 On the basis of the above embodiment, the device further comprises a guide device 13 in another embodiment of the present application.

[0036] The guiding device 13 comprises an L-shaped rod 131 fixedly installed on the back of the T-shaped supporting plate 12 on the front side, a trapezoidal frame 132 slidingly installed on the inner wall bottom of the device main body 1 through a spring, a U-shaped frame 133 fixedly installed on the front side of the trapezoidal frame 132, and a guiding roller 134 rotatably installed in the U-shaped frame 133.

[0037] The back inner wall of the L-shaped rod 131 is arc-shaped, the inclined surface of the trapezoidal frame 132 is located on the arc surface movement track of the L-shaped rod 131, and the guiding roller 134 is located on the outer periphery of the threading groove 2. The guiding roller 134 promotes the wire connection end to bend towards the front side of the device main body 1.

[0038] The device main body 1 is internally fixedly installed with a limiting rod 135, the limiting rod 135 is penetratingly and rotatably installed with a light shield plate 136 through a torsion spring, the L-shaped rod 131 is fixedly installed with a hollow frame 137 on the side away from the trapezoidal frame 132, the end of the hollow frame 137 close to the light shield plate 136 is arc-shaped, and the outer wall of the light shield plate 136 is in contact with the arc surface of the light shield plate 136.

[0039] In use, the T-shaped supporting plate 12 moves downward to drive the L-shaped rod 131 to move synchronously. When the L-shaped rod 131 moves downward, it will contact and resist the inclined surface of the trapezoidal frame 132. The trapezoidal frame 132 generates a movement force and slides horizontally along the inner wall bottom of the device main body 1. The trapezoidal frame 132 drives the U-shaped frame 133 to move synchronously, and the U-shaped frame 133 drives the guiding roller 134 to move synchronously. At this time, the guiding roller 134 pushes the wire connection end towards the front side of the device main body 1. At the same time, when the circuit passes through the threading groove, the guiding roller 134 is rotatably installed to reduce the knocking and friction between the circuit connection end and the surrounding structure. At the same time, the L-shaped rod 131 moves downward to drive the hollow frame 137 to move synchronously. When the hollow frame 137 moves downward, it will contact and press the inclined surface of the light shield plate 136. At this time, the light shield plate 136 generates a rotating force, and the light shield plate 136 starts to overturn around the limiting rod 135 as the axis. The overturned light shield plate 136 blocks the device main body 1 to ensure that the inner back end part of the device main body 1 is a fully dark environment. After fault reset, the light shield plate 136 is opened to block, facilitating the air circulation in the device main body 1.

[0040] According to the above embodiment, through the guidance and pushing of the guide roller 134, the risk of damage to the internal battery of the wire connection port caused by bumping is reduced, and the device main body 1 is moved towards the front, which facilitates the worker to grasp and process the connection port of the wire. The worker does not need to be close to the front of the device main body 1 and the upper body to be inserted into the inside of the device main body 1, which simplifies the preparation work before the line connection; through the blocking of the light shield plate 136, in the power-on self-checking process after the connection of the line and the control mechanism 8, the device main body 1 is in a fully dark environment, which is more convenient for the worker to observe whether the connection end of the line and the control mechanism 8 generates sparks due to poor connection. In the process of power-on detection, the drawbacks can be found in time to improve, further ensuring the stable operation of the control mechanism 8.

[0041] Please refer to Figures 1-9 On the basis of the above embodiment, another embodiment of the present application further comprises a resisting device 14.

[0042] The resisting device 14 comprises a friction wheel 141, which is rotatably installed on the outer wall of the hollow frame 137 away from the L-shaped rod 131. The outer wall of the friction wheel 141 is in contact with the inner wall of the device main body 1. A lead screw 142 is fixedly installed on the side of the friction wheel 141 close to the L-shaped rod 131. An L-shaped plate 143 is movably installed on the outer wall of the lead screw 142. A circular rod 144 is rotatably installed in the T-shaped carrier frame 7 through a torsion spring. A swing frame 145 is fixedly installed on the outer wall of the circular rod 144. An angular block 146 is fixedly installed on the bottom end of the swing frame 145.

[0043] The outer wall of the lead screw 142 is a non-self-locking spiral groove. The L-shaped plate 143 is slidingly installed on the back of the L-shaped rod 131. The swing frame 145 resists the wire connection end after swinging. The inclined surface of the angular block 146 is located on the top of the L-shaped plate 143.

[0044] The swing frame 145 is hingedly connected to an inclined rod 147 through a torsion spring at the front of the bottom end. The inclined rod 147 is hingedly connected to an insulating plate 148 at the top end. The insulating plate 148 is slidingly installed on the bottom of the T-shaped carrier frame 7. The insulating plate 148 is spaced apart from the multiple lines and connection ends.

[0045] In use, when the hollow frame 137 drives the friction wheel 141 to move downward along the inner wall of the device body 1, the friction wheel 141 generates friction and starts to rotate, the friction wheel 141 drives the lead screw 142 to rotate, and the lead screw 142 is limited by the non-self-locking spiral groove on the outer wall thereof to drive the L-shaped plate 143 to move horizontally along the outer wall of the L-shaped rod 131. The L-shaped plate 143 in horizontal movement will abut against the inclined surface of the angular block 146, at this time the angular block 146 generates a movement force, the angular block 146 promotes the synchronous force of the swing frame 145, the swing frame 145 drives the synchronous movement of the round rod 144, at this time the round rod 144 starts to rotate in the T-shaped carrier frame 7, promotes the swing frame 145 to present an arc trajectory to the direction of the connecting end of the control mechanism 8, that is, the swing frame 145 abuts against the line connecting end; the swing frame 145 drives the inclined rod 147 to move synchronously when swinging, the inclined rod 147 is limited by the insulating plate 148, promotes the rotation force of the hinge shaft thereof and starts to rotate, and then the top end of the inclined rod 147 pushes the insulating plate 148 to slide horizontally along the bottom of the T-shaped carrier frame 7, and the insulating plate 148 is spaced apart from the lines by the wave surface.

[0046] According to the above embodiment, through the abutment of the swing frame 145, when the line is connected with the control mechanism 8 and the worker releases his hand, the swing frame 145 is relied on to detect whether the line is fastened with the connecting end of the control mechanism 8, so as to avoid the line from falling off in the subsequent use process, thereby reducing the risk of fire; through the spacing of the insulating plate 148, in the power-on self-checking process, the single line is effectively prevented from causing interference to the surrounding lines and the connecting end of the control mechanism 8 when sparks are generated due to poor connection, so as to prevent the surrounding lines and the connecting end from generating sparks synchronously due to the spatter of sparks, thereby improving the protection of the connecting end of the control mechanism 8 and reducing the damage probability.

[0047] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A smart power grid stability controller comprising a device body (1), characterized in that: The sliding mechanism (6) is internally and slidably installed with a T-shaped carrier frame (7), the T-shaped carrier frame (7) is internally and fixedly installed with a control mechanism (8), the outer wall of the T-shaped carrier frame (7) is symmetrically and fixedly installed with two transmission plates (9), the inner wall bottom of the device body (1) is rotatably installed with a threaded rod (10), the outer wall of the threaded rod (10) penetrates and movably installs a pressing block (11), the side close to the sliding mechanism (6) of the pressing block (11) is fixedly installed with a T-shaped supporting plate (12), the bottom of the T-shaped supporting plate (12) movably penetrates the bottom of the device body (1), the back of the T-shaped supporting plate (12) is provided with a guide device (13) for moving the electric wire to the front end direction of the device body (1), and the periphery of the guide device (13) is provided with a resistance device (14) for judging whether the electric wire is connected with the control mechanism (8) tightly. The L-shaped rod (131) is fixedly installed on the back of the T-shaped supporting plate (12), the inner wall bottom of the device body (1) is slidably installed with a trapezoidal frame (132) through a spring, and the front of the trapezoidal frame (132) is fixedly installed with a U-shaped frame (133). The back of the L-shaped rod (131) is arc-shaped, the inclined surface of the trapezoidal frame (132) is located on the arc surface movement track of the L-shaped rod (131), the guide roller (134) is located on the periphery of the threading groove (2), and the guide roller (134) makes the line connection end bend to the front direction of the device body (1). The inner wall of the device body (1) is fixedly installed with a limiting rod (135), the limiting rod (135) penetrates and rotatably installs a light shielding plate (136) through a torsion spring, the side away from the trapezoidal frame (132) of the L-shaped rod (131) is fixedly installed with a hollow frame (137), the end close to the light shielding plate (136) of the hollow frame (137) is arc-shaped, and the outer wall of the light shielding plate (136) is in contact with the arc surface of the light shielding plate (136). The resistance device (14) comprises a friction wheel (141), the friction wheel (141) is rotatably installed on the outer wall of the hollow frame (137) away from the L-shaped rod (131), the outer wall of the friction wheel (141) is in contact with the back of the inner wall of the device body (1), the side close to the L-shaped rod (131) of the friction wheel (141) is fixedly installed with a lead screw (142), the outer wall of the lead screw (142) penetrates and movably installs an L-shaped plate (143), the inner wall of the T-shaped carrier frame (7) penetrates and rotatably installs a round rod (144) through a torsion spring, the outer wall of the round rod (144) is fixedly installed with a swing frame (145), and the back of the bottom of the swing frame (145) is fixedly installed with an angular block (146). The outer wall of the lead screw (142) is a non-self-locking spiral groove, the L-shaped plate (143) is slidingly installed on the back surface of the L-shaped rod (131), the swing frame (145) is in contact with the wire connecting end after swinging, and the inclined surface of the angular block (146) is located on the top movement track of the L-shaped plate (143). The bottom end of the swing frame (145) is hinged with the inclined rod (147) through the torsion spring, the top end of the inclined rod (147) is hinged with the insulating plate (148), the insulating plate (148) is slidingly installed on the bottom of the T-shaped carrier frame (7), and the insulating plate (148) is used for spacing a plurality of lines and connecting ends.

2. A smart grid stabilizer controller according to claim 1, characterized in that: The back surface of the device body (1) is provided with a threading groove (2) at one end of the bottom, ventilation grooves are formed on both sides of the device body (1), the device body (1) is provided with a mobile assembly (3) at the bottom corner, the device body (1) is provided with an intelligent module (4) at the top center, the device body (1) is provided with two fire extinguishing mechanisms (5) symmetrically arranged at the top, the fire extinguishing mechanism (5) penetrates the inside of the device body (1) at the bottom, and the fire extinguishing mechanism (5) is intelligently driven by the intelligent module (4) and sprays carbon dioxide gas.

3. A smart grid stabilizer controller according to claim 2, wherein: The bottom connecting end of the control mechanism (8) penetrates the bottom end of the T-shaped carrier frame (7), the control mechanism (8) is used for adjusting power operation, the T-shaped carrier frame (7) changes the connection height between the control mechanism (8) and the wire through the sliding mechanism (6), the outer wall of the threaded rod (10) is a non-self-locking threaded groove, and the threaded rod (10) penetrates and movably installs in the transmission plate (9).

Citation Information

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