Automatic detection device for performance of standby power supply of transformer substation
By designing an automatic detection device and utilizing the combination of a mobile docking mechanism and a traction structure, the risks of power radiation and the high workload caused by manual operation in the detection of substation backup power supplies have been solved, realizing unmanned and automated detection and improving detection efficiency and safety.
Patent Information
- Application Number
- CN202310738148.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-21
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-06-21
AI Technical Summary
Existing methods for testing the performance of substation backup power supplies mainly rely on manual operation, which poses a risk of power radiation and involves a large amount of work, making it difficult to achieve unmanned and automated testing.
An automatic performance testing device for substation backup power supply was designed. By utilizing the cooperation of a mobile docking mechanism and a traction structure, the automatic movement of the testing components and the synchronous winding and unwinding of the power lines are realized. Through the coordinated work of the guiding components, winding and unwinding components and docking components, unmanned performance testing is completed.
It has enabled unmanned and automated testing of substation backup power supplies, reducing manual surveying and improving testing efficiency and safety.
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Figure CN116559718B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of power detection, in particular to a substation standby power performance automatic detection device. BACKGROUND
[0002] The substation standby power refers to a standby power system that can provide recovery load for the substation when the main power fails or is out of power.
[0003] It is mainly applied in the power system, which can ensure the reliable operation of the power grid and provide stable power supply for users. Common standby power types include independent generator sets, storage batteries, UPS, etc. According to the load characteristics, operation conditions and power supply requirements of the substation, the appropriate type and capacity of the standby power are determined, and the expandability of the capacity is considered. The standby power needs to have good stability, reliability, safety and easy maintenance, etc. to meet the needs of recovery load.
[0004] The substation standby power is widely used in various public utilities, enterprises and institutions, such as hospitals, banks, transportation, construction sites, automobile and train stations, and industries with high requirements for power supply quality, such as semiconductors, aviation and communication.
[0005] In order to ensure that the standby power can work normally in actual operation and meet the needs of recovery load, it is necessary to detect the standby power regularly to ensure the normal operation of the standby power.
[0006] From the above description, it can be seen that the substation standby power and its performance are described, and the necessity of detecting the standby power during storage is further known. However, in actual measurement process, the substation standby power performance detection device still has the following shortcomings: most of the existing detection methods are still based on manual detection, and the detection end of the detection component is inserted and detected between the standby power. However, due to the large number of power facilities in the substation, manual detection is easy to cause the power radiation to itself, and due to the large number of standby power, manual detection increases the work load and work process, and cannot better achieve unmanned and automatic detection work. SUMMARY
[0007] In view of the deficiencies of the prior art, the present application provides a substation standby power performance automatic detection device to solve the problems mentioned in the background art.
[0008] To achieve the above purpose, the present application is realized by the following technical scheme:
[0009] The utility model provides an automatic detection device for substation standby power performance, including detection mechanism and standby power main part, the bottom fixed mounting of detection mechanism one side has the traction structure, the top of traction structure slides and installs the movable butt joint mechanism, and the movable butt joint mechanism is rolled up with the electric wire in, the electric wire one end is connected with detection mechanism and inserts electrically, the movable butt joint mechanism with the corresponding cooperation between standby power main part, the movable butt joint mechanism includes installation cavity, guide component, take -out component, butt joint component, the installation cavity is conducted to the installation cavity on the top of traction structure, and the both sides in the inside of installation cavity are rotatably installed with guide component and take -out component, and the end of take -out component is butt -jointed with butt joint component, and the electric wire is rolled up with guide component.
[0010] Further, the bottom of the installation cavity is fixedly installed with a support seat, and the support seat is slidably connected with the installation cavity. The support seat is provided with a transmission port cooperating with the guide component. The installation cavity is provided with a wire port cooperating with the electric wire.
[0011] Further, the guide component includes a servo motor, a transmission shaft, a transmission gear, an installation plate, a winding rod, a wire shifting piece, a connecting shaft sleeve, a link gear, a guide gear, and an installation plate. The inner wall of the installation cavity is fixedly installed with the installation plate and the installation plate. The installation plate and the installation plate are located on both sides of the wire port.
[0012] Further, the take-out component includes an extension arm, a toothed disc, a link gear, a transmission gear, and a servo motor. The inner wall of the installation cavity is rotatably installed with two sets of meshing link gears and toothed discs. The toothed disc is fixedly installed with the extension arm. The servo motor is fixedly installed in the installation cavity. The output end of the servo motor is rotatably installed with the transmission gear meshing with the link gear.
[0013] Further, the butt joint component includes a panel, an electric push rod, a wind speed sensor, a rubber gasket, and a plug. The end of the extension arm is fixedly installed with the panel. The top and bottom of the outer side of the panel are bonded with the rubber gaskets. The panel between the rubber gaskets is fixedly installed with the wind speed sensor. The back of the panel is fixedly installed with the electric push rod. The output end of the electric push rod is butt-jointed with the plug.
[0014] Further, the back of the standby power main body is fixedly installed with an assembly plate. The assembly plate is provided with a plug slot butt-jointed with the plug. The assembly plate on one side of the plug slot is provided with a power fan.
[0015] Further, the detection mechanism comprises a shell, a main machine, a function tester, a safety regulation detector, a display, an operation table, a placing partition one, a receiving opening, a placing partition two, and the end of the traction structure is fixedly installed with the shell, the shell is fixedly installed with the placing partition one and the placing partition two respectively, the main machine is placed on the placing partition one, the function tester and the safety regulation detector are respectively placed on the placing partition two, one side of the shell is fixedly installed with the operation table, and the top of the operation table is equipped with the display, and one side of the shell is provided with the receiving opening corresponding to the traction structure.
[0016] Further, the space below the placing partition two is a receiving chamber, and the receiving chamber is in communication with the receiving opening, and the receiving chamber is used for placing the mobile docking mechanism.
[0017] Further, the traction structure comprises a guide plate, a sliding groove assembly, a tooth plate and a mounting groove, one side of the shell is fixedly installed with the guide plate, the guide plate and the top of the receiving chamber are provided with the mounting groove in communication, and the mounting groove is uniformly distributed with the tooth plate, and the guide plate and the top of the receiving chamber are provided with the sliding groove assembly in sliding connection with the mobile docking mechanism.
[0018] Further, the sliding groove assembly is in sliding connection with the support seat, and the transmission gear is in meshing transmission with the tooth plate.
[0019] The application provides a substation standby power performance automatic detection device. Compared with the prior art, the following beneficial effects are achieved:
[0020] The mutual cooperation between the mobile docking mechanism and the traction structure ensures that the detection assembly can automatically and unmannedly move during detection, and can also synchronously perform the wire laying and winding operation, realizing the integration of mobile winding and laying;
[0021] Through the cooperation between the winding and laying assembly and the docking assembly, not only can the detection end be automatically swung outward and inward, but also the outwardly extended detection end can be automatically extended and docked, completing unmanned performance detection.
[0022] The detection mechanism and the mobile docking mechanism enable the device to realize unmanned detection, which can be completed through autonomous guiding and returning, reducing human surveying and detecting, and ensuring the quantitative detection of the standby power. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.
[0024] Figure 1 The first overall state structure schematic diagram of the detection device of the present application is shown;
[0025] Figure 2 The second overall state structure schematic diagram of the detection device of the present application is shown;
[0026] Figure 3 The overall assembly state structure schematic diagram of the detection mechanism of the present application is shown;
[0027] Figure 4 The back assembly state structure schematic diagram of the main body of the backup power supply of the present application is shown;
[0028] Figure 5 The overall composition structure schematic diagram of the mobile docking mechanism of the present application is shown;
[0029] Figure 6 The internal assembly state structure schematic diagram of the mobile docking mechanism of the present application is shown;
[0030] Figure 7 The assembly state structure schematic diagram of the retractable assembly and the docking assembly of the present application is shown;
[0031] Figure 8 The assembly state structure schematic diagram of the guide assembly of the present application is shown;
[0032] As shown in the figure: 1, detection mechanism; 11, shell; 12, main machine; 13, function tester; 14, safety detector; 15, display; 16, operation table; 17, placement partition one; 18, storage port; 19, placement partition two; 2, mobile docking mechanism; 21, installation cavity; 211, wire port; 212, support seat; 213, transmission port; 22, guide assembly; 221, servo motor one; 222, transmission shaft; 223, transmission gear one; 224, installation plate one; 225, retraction rod; 226, wire shifting piece; 227, connecting shaft sleeve; 228, engagement gear one; 229, guide gear; 2210, installation plate two; 23, retractable assembly; 231, extension arm; 232, toothed disc; 233, engagement gear two; 234, transmission gear two; 235, servo motor two; 24, docking assembly; 241, panel; 242, electric push rod; 243, wind speed sensor; 244, rubber gasket; 245, plug; 3, backup power supply main body; 31, power fan; 32, assembly plate; 33, plug slot; 4, traction structure; 41, guide plate; 42, sliding groove assembly; 43, toothed plate; 44, installation slot; 5, power line. DETAILED DESCRIPTION
[0033] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application are described clearly and completely. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0034] Embodiment one
[0035] To solve the technical problems in the background art, the following substation standby power performance automatic detection device is given:
[0036] In combination with Figures 1-8 The substation standby power performance automatic detection device provided by the present application comprises a detection mechanism 1 and a standby power main body 3. A traction structure 4 is fixedly installed at the bottom of one side of the detection mechanism 1. A movable docking mechanism 2 is slidably installed at the top of the traction structure 4. An electrical connection wire 5 is wound in the movable docking mechanism 2. One end of the electrical connection wire 5 is electrically connected to a plug-in end of the detection mechanism 1. The movable docking mechanism 2 and the standby power main body 3 correspond to each other.
[0037] The movable docking mechanism 2 comprises an installation cavity 21, a guide assembly 22, a winding and unwinding assembly 23, and a docking assembly 24. The installation cavity 21 is conductively installed on the traction structure 4. The guide assembly 22 and the winding and unwinding assembly 23 are rotatably installed at both sides inside the installation cavity 21. The docking assembly 24 is dockingly installed at the end of the winding and unwinding assembly 23. The electrical connection wire 5 is wound on the guide assembly 22.
[0038] The detection mechanism 1, the standby power main body 3 and the traction structure 4 are assembled to realize the assembly relationship between the devices, ensure the working conditions among them, realize the linear motion of the movable docking mechanism 2 by the traction structure 4, make the detection assembly of the device effectively reach the designated detection position, make the device have the prior condition of real-time detection, realize the assembly detection between the device and the standby power main body 3 by the movable docking mechanism 2, detect at the required detection position by moving the movable docking mechanism 2 on the traction structure 4, and realize the detection operation of the power supply by the transmission structure in the movable docking mechanism 2.
[0039] The installation cavity 21 realizes the built-in installation of the guide assembly 22, the winding and unwinding assembly 23 and the docking assembly 24. The guide assembly 22 realizes the transmission cooperation with the traction structure 4, ensures that the detection assembly can smoothly move on the traction structure 4, and can also synchronously perform the wire laying operation, and realizes the integrated operation of the movement and the winding and unwinding.
[0040] Through the cooperation between the retractable assembly 23 and the docking assembly 24, the detection end can not only be swung outward and inward, but also be extended and docked, and the electrical connection with the power supply is completed, so that the device can collect, transport and analyze the electrical signal of the power supply, and the detection mechanism 1 can detect and compare.
[0041] Embodiment two
[0042] As Figure 1 and Figure 2 、 Figure 6 、 Figure 7 、 Figure 8 As shown in the above embodiment, the present embodiment further gives the following contents:
[0043] In the present embodiment, the bottom of the installation cavity 21 is fixedly installed with a support seat 212, and the support seat 212 is slidingly connected with the installation cavity 21. The support seat 212 is provided with a transmission port 213 cooperating with the guide assembly 22. The installation cavity 21 is provided with a wire port 211 cooperating with the power line 5.
[0044] During the period, the installation cavity 21 is supported and seated by the support seat 212, so that the installation cavity 21 can be stably placed on the traction structure 4. The transmission port 213 realizes the communication of the support seat 212 below, and the wire port 211 ensures that the detection assembly of the device can be real-time pay-off and winding during the guiding period.
[0045] In the present embodiment, the guide assembly 22 includes a servo motor 221, a transmission shaft 222, a transmission gear 223, an installation plate 224, a winding rod 225, a wire pushing piece 226, a connecting shaft sleeve 227, a connecting gear 228, a guide gear 229, and an installation plate 2210. The inner wall of the installation cavity 21 is fixedly installed with the installation plate 224 and the installation plate 2210, and the installation plate 224 and the installation plate 2210 are located on both sides of the wire port 211.
[0046] During the operation, the servo motor 221 is started first. The servo motor 221 drives the transmission gear 223 to rotate through the transmission shaft 222. At this time, the transmission gear 223 can achieve two transmission effects.
[0047] Effect one: the transmission gear 223 drives the connecting shaft sleeve 227 to rotate through the transmission shaft 222, and the connecting shaft sleeve 227 is connected with the winding rod 225 in a sleeved manner. Therefore, when the transmission shaft 222 rotates, it does not affect the winding rod 225. The transmission shaft 222 drives the wire pushing piece 226 to rotate synchronously through its own rotation. At this time, the wire pushing piece 226 can push the power line 5, so that the power line 5 can be smoothly wound on the winding rod 225, and the synchronous winding and pay-off operation is completed.
[0048] Effect 2: The transmission gear 223 is driven to rotate through the transmission shaft 222, and at the same time drives the connecting gear 228 to rotate. Then, through the transmission of the connecting gear 228, the guide gear 229 is driven to rotate. At that time, the guide gear 229 meshes with the traction structure 4, and through the force, the support 212 moves to the detection position.
[0049] In this embodiment, the retractable assembly 23 includes an extension arm 231, a gear disk 232, a connecting gear 233, a transmission gear 234, and a servo motor 235. Two sets of meshing connecting gears 233 and gear disk 232 are rotatably mounted on the inner wall of the mounting cavity 21. The extension arm 231 is fixedly mounted on the gear disk 232. The servo motor 235 is fixedly mounted inside the mounting cavity 21, and the output end of the servo motor 235 is rotatably mounted with a transmission gear 234 that meshes with the connecting gear 233.
[0050] During operation, upon reaching the detection point, servo motor 235 is activated. Servo motor 235 drives transmission gear 234 to rotate, which in turn drives connecting gear 233 to rotate. Simultaneously, connecting gear 233 drives gear disk 232 to perform transmission, causing the extension arm 231 on gear disk 232 to extend to the outside until it descends to a horizontal position with the detection end, ready for the corresponding detection operation.
[0051] In this embodiment, the docking assembly 24 includes a panel 241, an electric push rod 242, a wind speed sensor 243, a rubber gasket 244, and a connector 245. The panel 241 is fixedly installed at the end of the extension arm 231. Rubber gaskets 244 are bonded to the top and bottom of the outer side of the panel 241. The wind speed sensor 243 is fixedly installed on the panel 241 between the rubber gaskets 244. The electric push rod 242 is fixedly installed on the back of the panel 241, and the output end of the electric push rod 242 is docked with the connector 245.
[0052] During testing, the rubber pad 244 on the panel 241 is aligned with the testing surface. The electric push rod 242 is activated, which pushes the connector 245. The connector 245 is inserted into the testing end to complete the connection and transmit electrical signals. Meanwhile, the fan exhaust on the power supply is detected and sensed by the wind speed sensor 243.
[0053] Example 3
[0054] like Figures 1-8 As shown, based on the above embodiments, this embodiment further provides the following:
[0055] In the embodiment, the back of the backup power supply body 3 is fixedly installed with an assembly plate 32, the assembly plate 32 is provided with a plug-in slot 33 matched with the plug-in head 245, and the assembly plate 32 on one side of the plug-in slot 33 is provided with a power supply fan 31;
[0056] The plug-in slot 33 and the power supply fan 31 are carried and assembled by the assembly plate 32, during which the plug-in slot 33 is connected with the plug-in head 245, and the power supply fan 31 corresponds to the air speed sensor 243, so as to ensure the mutual connection and correspondence between the device and the power supply.
[0057] In the embodiment, the detection mechanism 1 comprises a shell 11, a host 12, a function tester 13, a safety detector 14, a display 15, an operation table 16, a placing partition plate one 17, a receiving opening 18, and a placing partition plate two 19. The shell 11 is fixedly installed at the end of the traction structure 4, the placing partition plate one 17 and the placing partition plate two 19 are respectively fixedly installed in the shell 11, the host 12 is placed on the placing partition plate one 17, the function tester 13 and the safety detector 14 are respectively placed on the placing partition plate two 19, the operation table 16 is fixedly installed on one side of the shell 11, the display 15 is assembled on the top of the operation table 16, and the receiving opening 18 corresponding to the traction structure 4 is arranged on one side of the shell 11.
[0058] During operation, the detection mechanism 1 is placed at a suitable position through the shell 11, during which the electrical connection between the host 12 and the function tester 13, the safety detector 14, the display 15, and the operation table 16 is achieved through the power line 5, and the electrical connection with the plug-in head 245 is also achieved.
[0059] The host 12 integrates and analyzes the values detected by the function tester 13 and the safety detector 14 through a program, a person operates and controls through the operation table 16, and displays the operation through the display 15.
[0060] The host 12 edits and sets the movement stroke of the motor and the electric push rod 242, so that the movement of the motor meets the movement demand of the actual detection point, and the placement position of the power supply meets the movement logic set by the host 12.
[0061] The placing partition plate one 17 and the placing partition plate two 19 place the host 12, the function tester 13, and the safety detector 14 one by one.
[0062] In the embodiment, the space below the placing partition plate one 17 is a receiving chamber, the receiving chamber is in communication with the receiving opening 18, and the receiving chamber is used for placing the mobile docking mechanism 2.
[0063] The accommodation chamber is arranged inside the shell 11, which is a separate space for placing the mobile docking mechanism 2, so that the device can be accommodated in the accommodation chamber in a non-working state, and good protection effect is achieved.
[0064] In the embodiment, the traction structure 4 includes a guide plate 41, a sliding groove assembly 42, a tooth plate 43, and a mounting groove 44.
[0065] During the period, the guide gear 229 is engaged with the tooth plate 43 inside the mounting groove 44, and as the guide gear 229 rotates, an acting force is generated, and the mobile docking mechanism 2 is moved;
[0066] And the mobile docking mechanism 2 can ensure the smoothness and smoothness of the sliding on the guide plate 41 through the sliding groove assembly 42.
[0067] In the embodiment, the sliding groove assembly 42 is in sliding connection with the support seat 212, and the guide gear 229 is in mutual engagement transmission with the tooth plate 43.
[0068] The sliding groove assembly 42 is composed of a sliding groove and a sliding block to complete the transmission, and the guide gear 229 realizes the mutual engagement with the tooth plate 43 through the transmission port 213 to realize the transmission.
[0069] During operation,
[0070] The working principle and use process of the application are as follows:
[0071] During operation,
[0072] The detection mechanism 1, the standby power supply main body 3 and the traction structure 4 are assembled to realize the assembly relationship between the devices and ensure the operation conditions of the three.
[0073] First, start the servo motor one 221, and the servo motor one 221 drives the transmission gear one 223 to rotate through the transmission shaft 222.
[0074] Effect one: transmission gear one 223 through the transmission shaft 222 with connecting shaft sleeve 227 for rotation, and the connecting shaft sleeve 227 and the winding rod 225 between the sleeve connection, so when the transmission shaft 222 for rotation at the same time and does not affect the winding rod 225, transmission shaft 222 through the rotation of the dial sheet 226 driven synchronous rotation, the dial sheet 226 can be connected to the wire 5 for dial, so that the power line 5 can be smoothly wound on the winding rod 225, complete synchronous winding and pay-off operation;
[0075] Effect two: transmission gear one 223 through the transmission shaft 222 for rotation, and at the same time drive the engagement gear one 228 for rotation, through the engagement gear one 228 retransmission, realize drive guide gear 229 for rotation, the guide gear 229 and traction structure 4 between the meshing transmission, through the factor of force, prompting the support seat 212 for movement operation, reach the detection position;
[0076] After reaching the detection point, start servo motor two 235, servo motor two 235 drive transmission gear two 234 for rotation, through the transmission gear two 234 drive the engagement gear two 233 for rotation, through the engagement gear two 233 synchronous drive gear plate 232 for transmission, prompting the extension arm 231 on the gear plate 232 for external probe, until the decline to the detection end level state, ready for the corresponding detection work, detection, rubber gasket 244 on the panel 241 and the detection surface corresponding to the fit, start electric push rod 242, electric push rod 242 push plug 245, plug 245 inserted into the detection end, complete the butt joint, for electric signal transmission,
[0077] The host 12 through the program to complete the function test instrument 13, the value of the safety detector 14 detection integration analysis, personnel through the operation platform 16 for operation control, and through the display 15 for display operation, complete, and then in this way for subsequent detection, after the completion of the start motor for reverse rotation, drive assembly for recycling, storage in the storage room.
[0078] It is to be noted that, in the present text, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0079] The above examples are merely used to illustrate the technical solutions of the present application, but not to limit it; although the present application has been described in detail with reference to the foregoing examples, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A device for automatic detection of performance of a standby power source of a substation, characterized in that: The utility model provides a detection mechanism and standby power supply body, one side bottom of detection mechanism is fixedly installed with traction structure, the top of traction structure is slidably installed with mobile docking mechanism, and mobile docking mechanism is rolled with electricity -supplying wire, one end of electricity -supplying wire is electrically connected with detection mechanism, mobile docking mechanism and standby power supply body correspond with each other between the cooperation, The mobile docking mechanism includes installation cavity, guide assembly, take -out assembly, docking assembly, the installation cavity is installed on the traction structure, the both sides in the installation cavity are rotatably installed with guide assembly and take -out assembly respectively, the end of take -out assembly is docked and installed with docking assembly, and the electricity -supplying wire is rolled on the guide assembly, The bottom of installation cavity is fixedly installed with support seat, and the support seat is slidably connected between the bottom, the support seat is provided with the transmission port that cooperates with guide assembly, and the installation cavity is provided with the wire port that cooperates with electricity -supplying wire, The guide assembly includes servo motor one, transmission shaft, transmission gear one, mounting plate one, winding rod, wire pushing piece, connecting shaft sleeve, link gear one, guide gear, mounting plate two, the inner wall of installation cavity is fixedly installed with mounting plate one and mounting plate two respectively, and mounting plate one and mounting plate two are located on the both sides of wire port, The take -out assembly includes extension arm, toothed disc, link gear two, transmission gear two, servo motor two, the inner wall of installation cavity is rotatably installed with two groups of meshing link gear two and toothed disc respectively, the extension arm is fixedly installed on the toothed disc, the servo motor two is fixedly installed in the installation cavity, and the output end of servo motor two is rotatably installed with transmission gear two that meshes with link gear two, The docking assembly includes panel, electric push rod, wind speed sensor, rubber pad, plug, the end of extension arm is fixedly installed with panel, the top and bottom of panel outside are all bonded with rubber pad, the panel between rubber pad is fixedly installed with wind speed sensor, the back of panel is fixedly installed with electric push rod, and the output end of electric push rod is docked and installed with plug, The traction structure includes guide plate, sliding groove assembly, toothed plate, installation groove, one side of shell is fixedly installed with guide plate, the top of guide plate and storage chamber is provided with the communication installation groove, and the installation groove is evenly distributed with toothed plate, and the top of guide plate and storage chamber is provided with sliding groove assembly that is slidably connected with mobile docking mechanism, The sliding groove assembly is slidably connected between the support seat, and the guide gear and toothed plate are meshed with each other.
2. The substation backup power performance automatic detection device according to claim 1, characterized in that: The back of standby power supply body is fixedly installed with assembly plate, the assembly plate is provided with the plug slot that is docked with plug, and the assembly plate on one side of plug slot is provided with power fan.
3. The substation backup power performance automatic detection device according to claim 2, characterized in that: The detection mechanism includes shell, mainframe, function tester, safety testing instrument, display, operation table, placing partition one, storage opening, placing partition two, the end of traction structure is fixedly installed with shell, placing partition one and placing partition two are fixedly installed in shell respectively, mainframe is placed on placing partition one, function tester and safety testing instrument are placed on placing partition two respectively, one side of shell is fixedly installed with operation table, and the top of operation table is provided with display, and one side of shell is provided with storage opening that corresponds with traction structure.
4. The substation backup power performance automatic detection device according to claim 3, characterized in that: The space below the partition is a receiving chamber, and the receiving chamber is in communication with the receiving opening. The receiving chamber is used for placing the mobile docking mechanism.
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