Base station system with dormancy protection structure
Through the base station system with dormant protection structure, the power consumption and traffic waste caused by the non-intermittent operation of the fixed base station is solved, and the mapper is protected and maintenance costs are reduced.
Patent Information
- Application Number
- CN202421699567.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing fixed base stations do not work intermittently, resulting in unnecessary power consumption and traffic waste. At the same time, the mapper is easily damaged in bad weather, which makes it very costly to maintain.
Design a base station system with a dormant protective structure, including a box, a lift, a mapper and a controller. The lift is controlled by a server to store the mapper in the box at night or non-working hours, and the mapper is deployed during the day or working hours, and the mapper is protected by a lifting device and a sealing structure.
Save power consumption of fixed base stations, reduce traffic costs, avoid damage to the mapper in severe weather, and reduce maintenance and replacement costs.
Smart Images

Figure CN223168422U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of surveying and mapping equipment, in particular to a base station system with a sleep protection structure. Background Art
[0002] Surveying and mapping operations are a common means of map operations in fields such as engineering, infrastructure, and national defense. With the rapid development of technology, more and more surveying and mapping equipment has emerged, with a very diverse range of applications. During the development process of surveying and mapping equipment, the base station is an important device. To facilitate users, some large enterprises such as design institutes choose to set up signal towers on their own sites as base stations.
[0003] With the continuous development of the modern economy, the scale of cities is constantly expanding. People have higher requirements for aspects such as the rapid update of surveying and mapping data, improving the currency of data, and realizing the rapid update of geographical information. More and more unmanned aerial vehicles (UAVs) have joined surveying and mapping operations. However, UAVs usually communicate with fixed base stations using 4G networks or radio stations. In this way, in order to ensure that UAVs can obtain differential data at any time, the fixed base station will be in a working state at all times. But in fact, there are very few UAVs working at night and during non-operating seasons, which results in a lot of unnecessary power consumption and waste of 4G traffic for the fixed base station. At the same time, the functional components of existing fixed base stations are exposed to the environment. Once they encounter windy and rainy weather, their resistance is poor, they are easily damaged, and the cost of later replacement and maintenance is high.
[0004] It can be seen that the existing technology still needs to be improved. Summary of the Utility Model
[0005] In view of the deficiencies of the above-mentioned existing technology, the purpose of the present utility model is to provide a base station system with a sleep protection structure to solve the problems of unnecessary power consumption and waste of traffic caused by the non-stop operation of existing fixed base stations, and the easy damage of surveying and mapping devices due to exposure.
[0006] To achieve the above purpose, the present utility model adopts the following technical solutions:
[0007] A base station system with a sleep protection structure includes a server, a fixed base station, and a mobile base station that are respectively communicatively connected to the server. The fixed base station includes a box body, a lifting seat, a surveying and mapping device, a controller, and a plurality of gateways. A communication hole is provided on the box body. The lifting seat is movably arranged in the communication hole. The surveying and mapping device is arranged in the lifting seat. The lifting seat, the surveying and mapping device, and the plurality of gateways are respectively electrically connected to the controller. The controller is communicatively connected to the server through any one of the gateways.
[0008] The base station system with a sleep protection structure as described above, the fixed base station further includes a sleeve disposed inside the box body, one end of the sleeve is communicated with the communication hole, the lifting seat includes a sliding block and a lifting device, the sliding block is disposed through the sleeve, the lifting device is disposed inside the box body, and the sliding block is connected to the output end of the lifting device.
[0009] The base station system with a sleep protection structure as described above, the lifting device includes a fixed seat, a driving component and a plurality of lifting components, the fixed seat is fixed to the inner side of the box body, the driving component is disposed at the center of the fixed seat, and a plurality of the lifting components are disposed around the driving component and are disposed through the fixed seat, and the input ends of the plurality of lifting components are respectively connected to the output end of the driving component.
[0010] The base station system with a sleep protection structure as described above, the driving component includes a driving motor disposed on the fixed seat and a first helical gear connected to the output end of the driving motor, the structures of the plurality of lifting components are the same, the lifting component includes a moving rod, a screw rod and a second helical gear, one end of the moving rod is connected to the sliding block, one end of the screw rod is disposed through the other end of the moving rod, the screw rod is threadedly connected to the moving rod, the other end of the screw rod is rotatably connected to the box body, the second helical gear is disposed on the screw rod, and the second helical gear is meshed and connected to the first helical gear.
[0011] The base station system with a sleep protection structure as described above, a limiting sleeve is disposed inside the box body, a clamping groove is disposed inside the limiting sleeve, and the end of the screw rod away from the moving rod is clamped with the clamping groove.
[0012] The base station system with a sleep protection structure as described above, a clamping edge protrudes from one end of the sliding block away from the lifting device, a groove is disposed corresponding to the clamping edge at the edge of the communication hole, and a sealing ring is disposed between the groove and the clamping edge.
[0013] The base station system with a sleep protection structure as described above, a power supply part is disposed adjacent to the lifting seat on the box body.
[0014] The base station system with a sleep protection structure as described above, a plurality of ventilation structures are further disposed on the periphery of the box body, the ventilation structure includes a ventilation hole, a shielding edge and a dustproof net, the ventilation hole is disposed on the box body, the shielding edge is disposed outside the box body, the shielding edge is disposed corresponding to the upper side of the ventilation hole, and the dustproof net is disposed inside the ventilation hole.
[0015] Beneficial effects:
[0016] The base station system with a sleep protection structure disclosed by the present utility model includes a server, a fixed base station, and a mobile base station. The fixed base station includes a box body, a lifting seat, a mapping device, a controller, and a plurality of gateways. During nighttime or other non-working hours, when the mobile base station pauses operation and the server does not receive the mapping signal sent by the mobile base station within a set time, the server closes the other gateways through any one of the gateways and the controller, and controls the lifting seat to descend, driving the mapping device to move into the box body. Conversely, when the server receives the mapping signal sent by the mobile base station within the set time, the server re-opens all the other gateways through any one of the gateways and the controller, and controls the lifting seat to ascend, driving the mapping device to move out of the box body. The base station system disclosed in this application saves the power consumption of the fixed base station, reduces the traffic cost, and at the same time avoids damage to the mapping device caused by bad weather or animals, reducing the maintenance and replacement cost. Description of the Drawings
[0017] Figure 1 It is a schematic structural diagram of the fixed base station provided by the present utility model;
[0018] Figure 2 It is an exploded view of the fixed base station provided by the present utility model;
[0019] Figure 3 It is a sectional view of the fixed base station provided by the present utility model.
[0020] Reference Numerals: 1, box body; 11, communication hole; 2, lifting seat; 21, sliding block; 22, lifting device; 23, clamping edge; 24, groove; 25, sealing ring; 221, fixed seat; 222, driving component; 223, lifting component; 224, driving motor; 225, first helical gear; 226, moving rod; 227, screw rod; 228, second helical gear; 3, mapping device; 4, sleeve; 5, limiting sleeve; 51, clamping groove; 6, power supply unit; 7, ventilation structure; 71, ventilation hole; 72, shielding edge; 73, dust-proof net. Detailed Description of the Embodiments
[0021] The present utility model provides a base station system with a sleep protection structure. To make the purpose, technical solution, and effects of the present utility model clearer and more definite, the following examples are given with reference to the accompanying drawings to further elaborate on the present utility model in detail.
[0022] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "top" and "bottom" is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, and should not be construed as a limitation to the present utility model; in addition, terms such as "installation" and "connection" should be understood in a broad sense, and for those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0023] As Figures 1-3 shown, the embodiment of the present application provides a base station system with a sleep protection structure, which includes a server, a fixed base station and a mobile base station that are respectively communicatively connected to the server. The fixed base station includes a box body 1, a lifting seat 2, a surveying instrument 3, a controller and a plurality of gateways. A communication hole 11 is provided on the box body 1. The lifting seat 2 is movably arranged in the communication hole 11. The surveying instrument 3 is arranged in the lifting seat 2. The lifting seat 2, the surveying instrument 3 and the plurality of gateways are respectively electrically connected to the controller. The controller is communicatively connected to the server through any one of the gateways.
[0024] The base station system with a sleep protection structure disclosed by the present utility model includes a server, a fixed base station and a mobile base station. The fixed base station includes a box body 1, a lifting seat 2, a surveying instrument 3, a controller and a plurality of gateways. At night or other non-working hours, when the mobile base station suspends operation and the server does not receive the surveying signal sent by the mobile base station within a set time, the server closes the other gateways through any one of the gateways and the controller, and controls the lifting seat 2 to descend, driving the surveying instrument 3 to move into the box body 1. On the contrary, when the server receives the surveying signal sent by the mobile base station within the set time, the server re-opens all the other gateways through any one of the gateways and the controller, and controls the lifting seat 2 to rise, driving the surveying instrument 3 to move outside the box body 1. The base station system disclosed in the present application saves the power consumption of the fixed base station, reduces the traffic cost, and at the same time avoids damage to the surveying instrument 3 caused by bad weather or animals, reducing the maintenance and replacement cost.
[0025] The fixed base station further includes a sleeve 4 arranged in the box body 1. One end of the sleeve 4 is communicated with the communication hole 11. The lifting seat 2 includes a sliding block 21 and a lifting device 22. The sliding block 21 passes through the sleeve 4. The lifting device 22 is arranged in the box body 1. The sliding block 21 is connected to the output end of the lifting device 22. The lifting device 22 drives the sliding block 21 to move along the sleeve 4. The sleeve 4 plays a certain guiding role to ensure that the sliding block 21 rises and falls vertically, avoiding deviation of the relative position of the surveying instrument 3 caused by inclination.
[0026] The lifting device 22 includes a fixed seat 221, a driving assembly 222 and a plurality of lifting assemblies 223. The fixed seat 221 is fixed inside the box body 1. The driving assembly 222 is arranged at the center of the fixed seat 221. A plurality of the lifting assemblies 223 are arranged around the driving assembly 222 and penetrate through the fixed seat 221. The input ends of the plurality of lifting assemblies 223 are respectively connected to the output end of the driving assembly 222. The driving assembly 222 includes a driving motor 224 arranged on the fixed seat 221 and a first bevel gear 225 connected to the output end of the driving motor 224. The structures of the plurality of lifting assemblies 223 are the same. The lifting assembly 223 includes a moving rod 226, a screw rod 227 and a second bevel gear 228. One end of the moving rod 226 is connected to the sliding block 21. One end of the screw rod 227 penetrates through the other end of the moving rod 226. The screw rod 227 is threadedly connected to the moving rod 226. The other end of the screw rod 227 is rotatably connected to the box body 1. The second bevel gear 228 is arranged on the screw rod 227. The second bevel gear 228 is meshed and connected to the first bevel gear 225. The moving rod 226 is fixedly connected to the sliding block 21. Driven by the driving motor 224, through the meshing transmission of the first bevel gear 225 and the second bevel gear 228, the screw rod 227 is driven to rotate inside the moving rod 226, so as to realize lifting. The structure is simple. And a plurality of the lifting assemblies 223 are arranged around the driving assembly 222, and the lifting is more stable.
[0027] A limiting sleeve 5 is arranged inside the box body 1. A clamping groove 51 is arranged inside the limiting sleeve 5. The end of the screw rod 227 away from the moving rod 226 is clamped with the clamping groove 51. There is no need to set a hole on the box body 1 for the screw rod 227 to penetrate through. And for the abrasion caused by the rotation of the screw rod 227, only the limiting sleeve 5 needs to be replaced, and there is no need to replace the whole box body 1, which saves the cost of later maintenance and replacement.
[0028] A clamping edge 23 protrudes from one end of the sliding block 21 away from the lifting device 22. A groove 24 is arranged at the edge of the communication hole 11 corresponding to the clamping edge 23. The groove 24 is connected with the clamping edge 23 in a matching manner, and a sealing ring 25 is arranged at the connection part. Through the clamping and matching of the clamping edge 23 and the groove 24, the moving position of the sliding block 21 is limited, and the sealing ring 25 is arranged to prevent rainwater from entering, ensuring the normal operation of the components inside the box body 1.
[0029] A power supply unit 6 electrically connected to the controller is provided adjacent to the lifting seat 2 on the box body 1. The mobile base station includes a handheld mapping device, an unmanned aerial vehicle (UAV) mapping device, etc. The power supply unit 6 is provided to supply power to the UAV mapping device, which is more convenient.
[0030] A plurality of ventilation structures 7 are further provided on the peripheral side of the box body 1. The ventilation structure 7 includes a ventilation hole 71, a shielding edge 72, and a dust-proof net 73. The ventilation hole 71 is provided on the box body 1. The shielding edge 72 is provided outside the box body 1 and above the ventilation hole 71. The dust-proof net 73 is provided in the ventilation hole 71. Cooling air is introduced into the box body 1 through the ventilation hole 71. The shielding edge 72 prevents rainwater from directly flowing into the ventilation hole 71, and the dust-proof net 73 prevents dust or insects from entering the box body 1, ensuring the normal operation of the components inside the box body 1 while achieving cooling and heat exchange.
[0031] The controller includes a computer of the STM system.
[0032] It can be understood that for those of ordinary skill in the art, equivalent substitutions or changes can be made according to the technical solution and the inventive concept of the present utility model, and all such changes or substitutions should fall within the protection scope of the present utility model.
Claims
1. A base station system with a sleep protection structure, characterized in that It includes a server, a fixed base station and a mobile base station that are respectively communicatively connected to the server. The fixed base station includes a box body (1), a lifting seat (2), a surveying instrument (3), a controller and a plurality of gateways. A communication hole (11) is provided on the box body (1). The lifting seat (2) is movably arranged in the communication hole (11). The surveying instrument (3) is arranged in the lifting seat (2). The lifting seat (2), the surveying instrument (3) and the plurality of gateways are respectively electrically connected to the controller. The controller is communicatively connected to the server through any one of the gateways.
2. The base station system with a sleep protection structure according to claim 1, characterized in that, The fixed base station further includes a sleeve (4) arranged in the box body (1). One end of the sleeve (4) is communicated with the communication hole (11). The lifting seat (2) includes a sliding block (21) and a lifting device (22). The sliding block (21) is arranged through the sleeve (4). The lifting device (22) is arranged in the box body (1). The sliding block (21) is connected to the output end of the lifting device (22).
3. The base station system with a sleep protection structure according to claim 2, characterized in that, The lifting device (22) includes a fixed seat (221), a driving component (222) and a plurality of lifting components (223). The fixed seat (221) is fixed to the inner side of the box body (1). The driving component (222) is arranged at the center of the fixed seat (221). The plurality of lifting components (223) are arranged around the driving component (222) and are arranged through the fixed seat (221). The input ends of the plurality of lifting components (223) are respectively connected to the output end of the driving component (222).
4. The base station system with a sleep protection structure according to claim 3, wherein, The driving component (222) includes a driving motor (224) arranged on the fixed seat (221) and a first helical gear (225) connected to the output end of the driving motor (224). The structures of the plurality of lifting components (223) are the same. The lifting component (223) includes a moving rod (226), a screw rod (227) and a second helical gear (228). One end of the moving rod (226) is connected to the sliding block (21). One end of the screw rod (227) is arranged through the other end of the moving rod (226). The screw rod (227) is threadedly connected to the moving rod (226). The other end of the screw rod (227) is rotatably connected to the box body (1). The second helical gear (228) is arranged on the screw rod (227). The second helical gear (228) is meshed and connected to the first helical gear (225).
5. The base station system with a sleep protection structure according to claim 4, characterized in that, A limiting sleeve (5) is arranged in the box body (1). A clamping groove (51) is arranged in the limiting sleeve (5). The end of the screw rod (227) far from the moving rod (226) is clamped with the clamping groove (51).
6. The base station system with a sleep protection structure according to claim 2, characterized in that, A clamping edge (23) protrudes from one end of the sliding block (21) far from the lifting device (22). A groove (24) corresponding to the clamping edge (23) is arranged at the edge of the communication hole (11). The groove (24) is in fit connection with the clamping edge (23), and a sealing ring (25) is arranged at the connection part.
7. The base station system with a sleep protection structure according to claim 1, characterized in that, On the box body (1), adjacent to the lifting seat (2), there is a power supply part (6) electrically connected to the controller.
8. The base station system with a sleep protection structure according to claim 1, characterized in that, On the periphery of the box body (1), there are also a plurality of ventilation structures (7). The ventilation structure (7) includes a ventilation hole (71), a shielding edge (72) and a dust-proof net (73). The ventilation hole (71) is arranged on the box body (1), the shielding edge (72) is arranged on the outer side of the box body (1), the shielding edge (72) is arranged above the ventilation hole (71), and the dust-proof net (73) is arranged in the ventilation hole (71).