Unit state monitoring device
By designing display layer, operation layer and equipment layer components, the problems of misconnected cables and inconvenient equipment grouping in wind turbine status monitoring devices were solved, and orderly classification and convenient use of equipment were achieved.
Patent Information
- Application Number
- CN202422810582.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-18
AI Technical Summary
In the prior art, wind turbine status monitoring devices do not fully consider the carrier design of the monitoring module, resulting in incorrect cable connections and inconvenience in equipment classification and collection.
The design adopts display layer components, operation layer components and equipment layer components, and uses slide rails and partition structures to achieve classification, collection and storage of operating equipment and monitoring equipment, avoid misconnection of cables, and connect with monitoring equipment through communication components.
It realizes the orderly classification and storage of operating equipment and monitoring equipment, avoids wrong connection of cables, facilitates equipment observation and use, and meets the status monitoring needs of different units.
Smart Images

Figure CN223452217U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to equipment monitoring field, concretely relates to a unit state monitoring device. BACKGROUND
[0002] The utility model discloses a patent with the theme name of wind turbine generator system state monitoring device for patent number CN219474676U, and its IPC classification number is G01D21 / 02, and its technical scheme discloses "wind turbine generator system state monitoring device includes: monitoring module 110, first wireless communication module 120, control module 130, processing module 140.In this embodiment, monitoring module 110 is used to monitor and gather the working condition parameters of each part of the wind turbine generator to be monitored, wherein the working condition parameters can include, for example: current, voltage, acceleration, temperature and humidity, etc., and monitoring module 110 includes at least one monitoring sensor, and the at least one monitoring sensor is arranged at at least one monitoring position in the wind turbine generator to be monitored".
[0003] It can be seen from the above that the above utility model patent has disclosed one of the technical schemes of the unit state monitoring device in the wind power field.However, the above utility model patent focuses on showing several functional modules such as monitoring module in the form of block diagram, and does not further involve the carrier of the functional modules such as monitoring module, which needs to be further improved. UTILITY MODEL CONTENT
[0004] The utility model provides a unit state monitoring device aiming at the condition of prior art, overcomes the above-mentioned defects.
[0005] The utility model adopts the following technical scheme, unit state monitoring device, including display layer assembly, operation layer assembly, equipment layer assembly and communication assembly, display layer assembly, operation layer assembly and equipment layer assembly are connected in turn, and communication assembly is located at one side of display layer assembly and is fixedly connected with display layer assembly, wherein:
[0006] The operation layer assembly includes an operation layer side plate, and the operation layer assembly has an operation layer inner cavity, and a sliding plate and a sliding rail are built-in the operation layer assembly, the sliding rail is arranged on both sides of the sliding plate, the sliding plate is slidably connected with the sliding rail, and the sliding rail is fixedly connected with the operation layer side plate.
[0007] The equipment layer assembly includes an equipment layer side plate, an equipment layer top plate and an equipment layer bottom plate, the equipment layer side plate has an equipment layer inner cavity, and a plurality of partition plates are built-in the equipment layer assembly, the partition plates are fixedly connected with the equipment layer side plate, there is a spacing between adjacent two partition plates, there is a gap between the partition plates and the equipment layer top plate, and there is a gap between the partition plates and the equipment layer bottom plate.
[0008] The operation layer inner cavity and the equipment layer inner cavity are not communicated.
[0009] As a preferred technical scheme of the above technical scheme, the display layer assembly comprises a display layer panel, a display layer side plate and a display layer back plate, the display layer side plate is arranged on two sides of the display layer panel, one side of the display layer side plate is fixedly connected with the display layer panel, and the other side of the display layer side plate is fixedly connected with the display layer back plate.
[0010] As a preferred technical scheme of the above technical scheme, the operation layer assembly further comprises an operation layer top plate, the display layer panel has a display layer first cavity, and the display layer panel and the operation layer top plate have a display layer second cavity, and the display layer first cavity and the display layer second cavity are communicated.
[0011] As a preferred technical scheme of the above technical scheme, the communication assembly comprises a communication antenna, a support rod and a support frame, one end of the support rod is fixedly connected with the communication antenna, the other end of the support rod is fixedly connected with one end of the support frame, and the other end of the support frame is fixedly connected with the display layer side plate.
[0012] As a preferred technical scheme of the above technical scheme, the equipment layer side plate is provided with a plurality of transparent plates, and the transparent plates are embedded in the equipment layer side plate.
[0013] The utility model discloses the following technical scheme, unit state monitoring device, including display layer assembly, operation layer assembly, equipment layer assembly and communication assembly, display layer assembly, operation layer assembly and equipment layer assembly are in turn and connect, and communication assembly is located one side of display layer assembly and is connected with display layer assembly fixedly, wherein:
[0014] The operation layer assembly comprises an operation layer side plate, the operation layer assembly has an operation layer inner cavity, and the operation layer assembly is internally provided with a sliding plate and a sliding rail, the sliding rail is arranged on two sides of the sliding plate, the sliding plate is slidably connected with the sliding rail, and the sliding rail is fixedly connected with the operation layer side plate.
[0015] The equipment layer assembly comprises an equipment layer side plate, an equipment layer top plate and an equipment layer bottom plate, the equipment layer side plate has an equipment layer inner cavity, and the equipment layer assembly is internally provided with a plurality of partition plates, the partition plates are fixedly connected with the equipment layer side plate, there is a spacing between adjacent two partition plates, there is a gap between the partition plates and the equipment layer top plate, and there is a gap between the partition plates and the equipment layer bottom plate.
[0016] The unit state monitoring device has the advantages that the cables of the operation equipment and the cables of the monitoring equipment are prevented from being connected with each other, and the corresponding equipment can be conveniently classified, collected and stored according to the operation layer and the equipment layer. DRAWINGS
[0017] Figure 1 It is the front view of the application.
[0018] Figure 2 It is the side view of the application.
[0019] Figure 3is a top view of the present application.
[0020] Figure 4 is a perspective view of one view of the present application.
[0021] Figure 5 is a perspective view of another view of the present application.
[0022] Figure 6 is a perspective view along the AA direction of Figure 1 .
[0023] Figure 7 is a partial structural schematic view of the present application.
[0024] Figure 8 is a partial enlarged view of the A area of Figure 7 .
[0025] The reference signs include: 100 - display layer assembly; 101 - display layer first cavity; 102 - display layer second cavity; 110 - display layer panel; 120 - display layer side plate; 130 - display layer back plate; 200 - operation layer assembly; 201 - operation layer side plate; 202 - operation layer top plate; 202 - operation layer inner cavity; 210 - slide rail; 220 - slide plate; 300 - equipment layer assembly; 301 - equipment layer side plate; 302 - equipment layer inner cavity; 303 - equipment layer top plate; 304 - equipment layer bottom plate; 310 - partition plate; 320 - transparent plate; 330 - moving wheel; 400 - communication assembly; 410 - communication antenna; 420 - support rod; 430 - support frame. DETAILED DESCRIPTION
[0026] The utility model discloses a unit state monitoring device, below combining preferred embodiment (example 1), referring to the Figures 1 to 8 , the specific implementation of the utility model is further described.
[0027] Referring to the Figures 1 to 8 , Figures 1 to 6 different view unit state monitoring device is shown respectively, Figure 7 and Figure 8 partial structure of unit state monitoring device is shown respectively.
[0028] Example 1.
[0029] Preferably, unit state monitoring device, including display layer assembly 100, operation layer assembly 200, equipment layer assembly 300 and communication assembly 400, display layer assembly 100, operation layer assembly 200 and equipment layer assembly 300 ( from top to bottom ) are connected in turn, and communication assembly 400 is located at one side of display layer assembly 100 and is fixedly connected with display layer assembly 100, wherein:
[0030] The operation layer assembly 200 includes (two) operation layer side plates 201, the operation layer assembly 200 has an operation layer inner cavity 202 for accommodating operation devices (as an example, a keyboard, not shown in the figure), the operation layer assembly 200 is built-in with a sliding plate 210 and (two) slide rails 220, the slide rails 220 are separately arranged on both sides of the sliding plate 210, the sliding plate 210 is in sliding connection with the slide rails 220, and the slide rails 220 are fixedly connected with the operation layer side plates 201; so that the sliding plate 220 can slide relative to the operation layer side plates 201, and the sliding plate 220 can support the keyboard and other operation devices, so that the sliding plate 220 and the like can be slid out of the operation layer inner cavity 202 by the operator when needed, and the operator can conveniently use the operation devices;
[0031] The device layer assembly 300 includes (two) device layer side plates 301, a device layer top plate 303 and a device layer bottom plate 304, the device layer side plates 301 have a device layer inner cavity 302 for accommodating the partition plates 310 and monitoring devices (not shown in the figure), the device layer assembly 300 is built-in with a plurality of partition plates 310, the partition plates 310 are fixedly connected with the device layer side plates 301, there is a spacing between adjacent two partition plates 310, there is a gap between the partition plates 310 and the device layer top plate 303, and there is a gap between the partition plates 310 and the device layer bottom plate 304; so that the partition plates 310 can be hung with monitoring devices such as control modules;
[0032] The operation layer inner cavity 202 and the device layer inner cavity 302 are not communicated; the cables of the operation devices and the cables of the monitoring devices are prevented from being connected with each other, and the corresponding devices can be conveniently classified and stored according to the operation layer and the device layer.
[0033] The display layer assembly 100 includes a display layer panel 110, (two) display layer side plates 120 and a display layer back plate 130, the display layer side plates 120 are separately arranged on both sides of the display layer panel 110, one side of the display layer side plates 120 is fixedly connected with the display layer panel 110, and the other side of the display layer side plates 120 is fixedly connected with the display layer back plate 130.
[0034] The operation layer assembly 200 further includes an operation layer top plate 202, the display layer panel 110 has a display layer first cavity 101, there is a display layer second cavity 102 between the display layer panel 110 and the operation layer top plate 202, and the display layer first cavity 101 and the display layer second cavity 102 are communicated; so that the display layer first cavity 101 and the display layer second cavity 102 can accommodate display devices (not shown in the figure) such as displays.
[0035] The communication assembly 400 comprises a communication antenna 410, a supporting rod 420 and a supporting frame 430. One end of the supporting rod 420 is fixedly connected with the communication antenna 410, the other end of the supporting rod 420 is fixedly connected with one end of the supporting frame 430, and the other end of the supporting frame 430 is fixedly connected with the display layer side plate 120. Thus, the communication antenna 410 is in communication with the monitoring device built in the equipment layer assembly 300.
[0036] The equipment layer side plate 301 is provided with a plurality of transparent plates 320, and the transparent plates 320 are embedded in the equipment layer side plate 301. Thus, the transparent plates 320 are used as observation windows, and the operating personnel can observe the running state of the monitoring device in the equipment layer assembly 300 without opening the equipment layer side plate 301.
[0037] The equipment layer assembly 300 further comprises a plurality of moving wheels 330, and the moving wheels 330 are fixedly connected with the equipment layer bottom plate 304.
[0038] Embodiment 2.
[0039] Preferably, the unit state monitoring device comprises a display layer assembly 100, an operation layer assembly 200, an equipment layer assembly 300 and a communication assembly 400. The display layer assembly 100, the operation layer assembly 200 and the equipment layer assembly 300 are sequentially connected from top to bottom, and the communication assembly 400 is located at one side of the display layer assembly 100 and fixedly connected with the display layer assembly 100. The display layer assembly 100 comprises a display layer side plate 101, a display layer top plate 103 and a display layer bottom plate 104. The display layer side plate 101 is provided with a plurality of display layer transparent plates 110, and the display layer transparent plates 110 are embedded in the display layer side plate 101. The display layer top plate 103 is fixedly connected with the display layer side plate 101, and the display layer bottom plate 104 is fixedly connected with the display layer side plate 101.
[0040] The operation layer assembly 200 comprises (two) operation layer side plates 201. The operation layer assembly 200 has an operation layer inner cavity 202 for accommodating operation devices (for example, a keyboard, not shown in the figure). The operation layer assembly 200 is built in with a sliding plate 210 and (two) sliding rails 220. The sliding rails 220 are separately arranged on both sides of the sliding plate 210. The sliding plate 210 is slidingly connected with the sliding rails 220, and the sliding rails 220 are fixedly connected with the operation layer side plates 201. Thus, the sliding plate 220 can slide relative to the operation layer side plates 201. The sliding plate 220 can support the operation devices such as the keyboard, so that the sliding plate 220 can be slid out of the operation layer inner cavity 202 by the operating personnel when needed, and the operating personnel can use the operation devices.
[0041] The equipment layer assembly 300 comprises (two) equipment layer side plates 301, an equipment layer top plate 303 and an equipment layer bottom plate 304. The equipment layer side plate 301 has an equipment layer inner cavity 302 for accommodating the partition plates 310 and the monitoring devices (not shown in the figure). The equipment layer assembly 300 is built in with a plurality of partition plates 310. The partition plates 310 are fixedly connected with the equipment layer side plates 301. Adjacent two partition plates 310 have a spacing. The partition plates 310 have a gap with the equipment layer top plate 303 and a gap with the equipment layer bottom plate 304. Thus, the partition plates 310 can mount the monitoring devices such as the control module.
[0042] The display layer assembly 100 comprises a display layer panel 110, two display layer side plates 120 and a display layer back plate 130, the two display layer side plates 120 are arranged on both sides of the display layer panel 110, one side of the display layer side plate 120 is fixedly connected with the display layer panel 110, and the other side of the display layer side plate 120 is fixedly connected with the display layer back plate 130.
[0043] The operation layer assembly 200 further comprises an operation layer top plate 202, the display layer panel 110 has a display layer first cavity 101, and the display layer panel 110 and the operation layer top plate 202 have a display layer second cavity 102, and the display layer first cavity 101 and the display layer second cavity 102 are communicated; so that the display layer first cavity 101 and the display layer second cavity 102 can accommodate display devices (not shown in the figure) such as displays.
[0044] The communication assembly 400 comprises a communication antenna 410, a support rod 420 and a support frame 430, one end of the support rod 420 is fixedly connected with the communication antenna 410, the other end of the support rod 420 is fixedly connected with one end of the support frame 430, and the other end of the support frame 430 is fixedly connected with the display layer side plate 120; so that the communication antenna 410 is in communication with the monitoring device built in the equipment layer assembly 300.
[0045] The equipment layer side plate 301 is provided with a plurality of transparent plates 320, and the transparent plates 320 are embedded in the equipment layer side plate 301; so as to take the transparent plates 320 as observation windows, and facilitate the operation personnel to observe the running state of the monitoring device in the equipment layer assembly 300 without opening the equipment layer side plate 301.
[0046] The equipment layer assembly 300 further comprises a plurality of moving wheels 330, and the moving wheels 330 are fixedly connected with the equipment layer bottom plate 304.
[0047] As an illustration, the unit state monitoring device disclosed in the embodiment can be used as a carrier of communication equipment, display equipment and monitoring equipment, and can mount monitoring equipment such as control modules in each functional assembly according to actual needs, so as to better meet different unit state monitoring requirements.
[0048] It is worth mentioning that the specific model and other technical features of the communication antenna involved in the utility model patent application should be regarded as prior art, and the specific structure, working principle and possible control mode and spatial arrangement mode involved in the technical features can be selected by using the conventional selection in the field, and should not be regarded as the invention point of the utility model patent, and the utility model patent will not be further expanded and described in detail.
[0049] Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A unit status monitoring device, characterized in that: It includes a display layer component, an operation layer component, a device layer component, and a communication component. The display layer component, the operation layer component, and the device layer component are connected in sequence. The communication component is located on one side of the display layer component and is fixedly connected to the display layer component. The operating layer assembly includes an operating layer side panel, an operating layer inner cavity, a slide plate and a slide rail built into the operating layer assembly, the slide rails are arranged on both sides of the slide plate, the slide plate is slidably connected to the slide rails, and the slide rails are fixedly connected to the operating layer side panel; The equipment layer assembly includes an equipment layer side plate, an equipment layer top plate and an equipment layer bottom plate. The equipment layer side plate has an equipment layer inner cavity. The equipment layer assembly has a plurality of partitions built in. The partitions are fixedly connected to the equipment layer side plates. There is a spacing between two adjacent partitions, a gap between the partition and the equipment layer top plate, and a gap between the partition and the equipment layer bottom plate. The inner cavity of the operation layer is not connected to the inner cavity of the equipment layer.
2. The unit status monitoring device according to claim 1, characterized in that: The display layer assembly includes a display layer panel, a display layer side panel and a display layer back panel. The display layer side panels are arranged on both sides of the display layer panel. One side of the display layer side panel is fixedly connected to the display layer panel, and the other side of the display layer side panel is fixedly connected to the display layer back panel.
3. The unit state monitoring device according to claim 2, characterized in that: The operating layer assembly further includes an operating layer top plate. The display layer panel has a first display layer cavity. A second display layer cavity is provided between the display layer panel and the operating layer top plate. The first display layer cavity is communicated with the second display layer cavity.
4. The unit state monitoring device according to claim 2, characterized in that: The communication component includes a communication antenna, a support rod and a support frame. One end of the support rod is fixedly connected to the communication antenna, the other end of the support rod is fixedly connected to one end of the support frame, and the other end of the support frame is fixedly connected to the display layer side panel.
5. The unit status monitoring device according to claim 1, characterized in that: The side panels of the equipment layer are provided with a plurality of transparent panels, which are embedded in the side panels of the equipment layer.
6. A unit status monitoring device, characterized in that: It includes a display layer component, an operation layer component, a device layer component, and a communication component. The display layer component, the operation layer component, and the device layer component are connected in sequence. The communication component is located on one side of the display layer component and is fixedly connected to the display layer component. The operating layer assembly includes an operating layer side panel, an operating layer inner cavity, a slide plate and a slide rail built into the operating layer assembly, the slide rails are arranged on both sides of the slide plate, the slide plate is slidably connected to the slide rails, and the slide rails are fixedly connected to the operating layer side panel; The equipment layer assembly includes an equipment layer side panel, an equipment layer top panel and an equipment layer bottom panel. The equipment layer side panel has an equipment layer inner cavity. The equipment layer assembly has several partitions built in. The partitions are fixedly connected to the equipment layer side panels. There is a spacing between adjacent partitions, a gap between the partition and the equipment layer top panel, and a gap between the partition and the equipment layer bottom panel.
Citation Information
Patent Citations
Wind turbine generator state monitoring device
CN219474676U