Mobile energy supply communication iron tower
By designing mobile energy-supply communication towers and using natural energy sources such as solar panels and wind turbines to supply power, the paralysis of communication networks and power supply in remote areas or after disasters has been solved, and the flexibility of rapid deployment and energy supply has been achieved.
Patent Information
- Application Number
- CN202422502342.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-16
AI Technical Summary
Communication networks and power supply infrastructure are often paralyzed in remote areas or after disasters, affecting residents' lives and emergency rescue efficiency.
A mobile energy-supply communication tower is designed, equipped with a load-bearing chassis, telescopic tower, solar panels, wind turbines and antennas, which can be moved through a tractor, use natural energy to supply power and build a communication network.
It realizes rapid deployment of communication networks in remote areas or after disasters, provides self-powered energy and supplies energy to surrounding areas, ensuring the continuity of communication and power supply.
Smart Images

Figure CN223256567U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of communication iron towers, in particular to a mobile energy-supplying communication iron tower. Background Art
[0002] In modern society, the importance of communication networks and power supply is undeniable. They are the infrastructure that keeps daily life and economic activities running smoothly. However, in remote areas or after disasters, this infrastructure often becomes vulnerable or completely paralyzed. This not only affects residents' daily lives but also threatens the efficiency and safety of emergency rescue efforts. Therefore, it is necessary to develop a mobile tower that can provide both power and communication base station energy. Summary of the Invention
[0003] The utility model mainly solves the above problems and provides a mobile energy supply communication tower that can be towed by a tractor and is flexible to deploy. It is equipped with a generator that can meet the electrical energy required for the operation of its own communication base station and supply energy to the outside.
[0004] The technical solution adopted by the utility model to solve its technical problems is a mobile energy-supplying communication tower, comprising a load-bearing chassis, a support wall is provided on one side of the load-bearing chassis, a tower base is provided on the other side of the load-bearing chassis, a telescopic tower is rotatably provided on the tower base, hydraulic cylinders for driving the tower to fall and stand upright are provided on both sides of the tower base, the telescopic tower comprises an external sleeve and a lifting tower body slidably arranged in the external sleeve, a lifting mechanism is provided between the lower end of the lifting tower body and the external sleeve, a plurality of solar panels are provided on the side of the external sleeve, a wind turbine is provided on the upper end of the lifting tower body, and a plurality of antennas are provided on the side of the upper end of the lifting tower body.
[0005] As a preferred solution of the above solution, the upper end of the solar panel is fixedly connected to the electric control shaft, and the electric control shaft is installed on the side of the external sleeve.
[0006] As a preferred solution of the above scheme, grooves are provided on both sides of the support wall, a frame is provided in the groove, the upper and lower ends of the frame are slidingly connected to the groove, one side of the frame is rotatably connected to one end of the electric telescopic rod, and the other end of the electric telescopic rod is connected to the bottom surface of the groove, a flexible photovoltaic scroll is provided in the frame, and a plate is provided on the other side of the frame, and the plate is connected to the flexible photovoltaic scroll.
[0007] As a preferred solution of the above solution, lock buckles are provided at both ends of the plate body, and the plate body is fixed to the support wall through the lock buckles.
[0008] As a preferred embodiment of the above scheme, the flexible photovoltaic reel includes a shaft and a flexible photovoltaic panel rolled up on the shaft. One end of the shaft is rotatably connected to the frame, and the other end of the shaft is provided with a motor for driving the shaft to rotate.
[0009] As a preferred solution of the above solution, a hanging ring is provided on the plate body.
[0010] As a preferred solution of the above solution, it includes a lifting bracket, an upper end of which is provided with an adjustment plate, a hook is provided on the adjustment plate, and the angle of the adjustment plate is adjustable.
[0011] As a preferred solution of the above solution, a battery and a small generator are provided on the load-bearing chassis.
[0012] As a preferred embodiment of the above solution, the wind turbine is a vertical axis generator.
[0013] As a preferred solution of the above solution, the plate chassis is provided with supporting feet.
[0014] The advantages of the utility model are: the whole device is movable and flexible in deployment; it is equipped with a variety of generators to effectively utilize natural resources; and it can quickly build a communication network and supply energy to the surrounding areas. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a side view structural diagram of a mobile power supply communication tower.
[0016] Figure 2 Schematic diagram of the cross-sectional structure of the support wall.
[0017] 1-Configuration chassis 2-Tower base 3-Support wall 4-External sleeve 5-Solar panel 6-Lifting tower body 7-Antenna 8-Wind turbine 9-Hydraulic cylinder 10-Support foot 11-Tire 12-Groove 13-Frame 14-Flexible photovoltaic reel 15-Panel body 16-Lock 17-Hanging ring 18-Electric telescopic rod. DETAILED DESCRIPTION
[0018] The technical solution of the present invention will be further described below with reference to the embodiments and the accompanying drawings.
[0019] Example:
[0020] This embodiment is a mobile power supply communication tower, such as Figure 1As shown, the structure comprises a load-bearing chassis 1 with support legs 10. The chassis 1 is equipped with a battery and a small generator, which can be gasoline or diesel. A support wall 3 is located on one side of the chassis 1, and a tower base 2 is located on the other side. A telescopic tower is rotatably mounted on the tower base 2. Hydraulic cylinders 9 are located on either side of the tower base 2 to drive the tower in both directions. The telescopic tower comprises an outer sleeve 4 and a lifting tower body 6 that slides within the outer sleeve. A lifting mechanism is located between the lower end of the lifting tower body 6 and the outer sleeve 4. This lifting mechanism can be a hydraulic lifting mechanism or a cylinder-type lifting mechanism. Several solar panels 5 are mounted on the side of the outer sleeve 4. The upper ends of the solar panels 5 are fixedly connected to an electrically controlled rotating shaft mounted on the side of the outer sleeve. The electrically controlled rotating shaft can be used to adjust the angle of the solar panels. A wind turbine 8 is located on the upper end of the lifting tower body 6. The wind turbine is a vertical-axis wind turbine. Several antennas 7 are located on the side of the upper end of the lifting tower body 6.
[0021] like Figure 2 The support wall 3 is provided with grooves 12 on both sides. A frame 13 is disposed within the grooves 12. The upper and lower ends of the frame 13 are slidably connected to the grooves 12. One side of the frame 13 is rotatably connected to one end of an electric telescopic rod 18, the other end of which is connected to the bottom surface of the groove. A flexible photovoltaic reel 14 is disposed within the frame. The flexible photovoltaic reel 14 comprises a shaft and a flexible photovoltaic panel wound around the shaft. One end of the shaft is rotatably connected to the frame 13, and the other end of the shaft is provided with a motor for driving the shaft. A plate 15 is disposed on the other side of the frame 13. The plate 15 is connected to the flexible photovoltaic reel 14. Locks 16 are provided at both ends of the plate 15, securing the plate to the support wall via the locks 16. A hanging ring 17 is also provided on the plate. Accordingly, this embodiment also includes a lifting mechanism. An adjustment plate is provided at the upper end of the lifting bracket, and a hook is provided on the adjustment plate. The angle of the adjustment plate is adjustable.
[0022] In this embodiment, the counterweight chassis can be mounted on a tractor and moved by the tractor. When deploying the mobile power supply communication tower, the support legs on the counterweight chassis extend and extend to support the chassis. The hydraulic cylinder then operates to erect the outer sleeve, and the lifting mechanism then drives the tower body out of the sleeve, controlling the deployment of the solar panels on the sides of the outer sleeve. At this point, the wind turbine at the top of the tower, the solar panels on the sides of the outer sleeve, and the small generator on the chassis can all generate electricity, providing energy to the surrounding area. Simultaneously, the antenna on the tower body operates to establish a communication network. Furthermore, if the area surrounding the mobile power supply communication tower is relatively open, the locking latch between the panel body and the supporting wall can be loosened, and the electric telescopic rod can be extended to push the frame out. The frame angle can then be adjusted according to the sun's angle. The motor can then be controlled to rotate to deploy the flexible solar panels to the desired length. It is best to hook the panel's hanging ring onto the hook on the adjustment plate of the lifting bracket, with the adjustment plate's angle matching that of the tower body.
[0023] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Persons skilled in the art may make various modifications, additions, or substitutions to the described specific embodiments without departing from the spirit of the present invention or exceeding the scope of the appended claims.
Claims
1. A mobile energy supply communication tower, including a load-bearing chassis, characterized by: A supporting wall is provided on one side of the load-bearing chassis, and an iron tower base is provided on the other side of the load-bearing chassis. A telescopic iron tower is rotatably provided on the iron tower base. Hydraulic cylinders for driving the iron tower to fall down and stand upright are provided on both sides of the iron tower base. The telescopic iron tower includes an external sleeve and a lifting tower body slidably arranged in the external sleeve. A lifting mechanism is provided between the lower end of the lifting tower body and the external sleeve. A plurality of solar panels are provided on the side of the external sleeve. A wind turbine is provided on the upper end of the lifting tower body, and a plurality of antennas are provided on the side of the upper end of the lifting tower body.
2. The mobile power supply communication tower according to claim 1 is characterized in that: The upper end of the solar panel is fixedly connected to the electric control shaft, and the electric control shaft is installed on the side of the external sleeve.
3. The mobile power supply communication tower according to claim 1 is characterized in that: Grooves are provided on both sides of the support wall, and a frame is provided in the groove. The upper and lower ends of the frame are slidably connected to the groove. One side of the frame is rotatably connected to one end of the electric telescopic rod, and the other end of the electric telescopic rod is connected to the bottom surface of the groove. A flexible photovoltaic scroll is provided in the frame, and a plate is provided on the other side of the frame, and the plate is connected to the flexible photovoltaic scroll.
4. The mobile power supply communication tower according to claim 3 is characterized in that: Lock buckles are provided at both ends of the plate body, and the plate body is fixed to the supporting wall through the lock buckles.
5. The mobile power supply communication tower according to claim 3 is characterized in that: The flexible photovoltaic reel comprises a shaft and a flexible photovoltaic panel rolled up on the shaft. One end of the shaft is rotatably connected to the frame, and the other end of the shaft is provided with a motor for driving the shaft to rotate.
6. The mobile power supply communication tower according to claim 3, characterized in that: A hanging ring is provided on the plate body.
7. The mobile power supply communication tower according to claim 6, characterized in that: It comprises a lifting bracket, an upper end of which is provided with an adjustment plate, a hook is provided on the adjustment plate, and the angle of the adjustment plate is adjustable.
8. The mobile power supply communication tower according to claim 1, characterized in that: The load-bearing chassis is provided with a storage battery and a small generator.
9. The mobile power supply communication tower according to claim 1, characterized in that: The wind turbine is a vertical axis turbine.
10. The mobile power supply communication tower according to claim 1, characterized in that: The load-bearing chassis is provided with supporting feet.