Intelligent alarm device and communication electric pole
By installing an intelligent alarm device on the communication pole and detecting the pole displacement by magnetic field changes, the problem of difficulty in timely discovering pole abnormalities in the existing technology is solved, and real-time monitoring and fault warning of pole are achieved.
Patent Information
- Application Number
- CN202422275191.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Communication poles are susceptible to natural and external forces, causing cracks or collapses. It is difficult to detect abnormal situations in a timely manner in the existing management model, which affects network security and stability.
An intelligent alarm device is installed on the communication pole, including an annular mounting part, magnetic part, electromagnetic inductor, microprocessor and communication module, and the pole displacement is detected through magnetic field changes and timely feedback to the backend monitoring center.
Real-time detection of electric poles is realized, potential faults are discovered in a timely manner, and management efficiency and network security are improved.
Smart Images

Figure CN223137434U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of communication poles, in particular to an intelligent warning device and a communication pole. Background Art
[0002] Communication poles are an important part of the operator's transmission network, playing a role in carrying and protecting transmission cables. Inevitably, they are interfered by various natural phenomena such as wind, rain, thunder, and temperature, and are also easily affected by external force factors. There is a risk that the poles are prone to cracks or even collapse, seriously affecting the safety and stability of the optical transmission network. At present, the management and inspection of communication poles are still in the traditional operation and maintenance mode that relies on manual inspection. Facing the growing contradiction between the increasing number of telecommunication poles and the limited outdoor management personnel, this management mode is increasingly difficult to support the safety and inspection requirements, and is even less conducive to timely handling the risks of abnormal situations such as pole cracking and tilting. Content of the Utility Model
[0003] In view of this, the purpose of the utility model is to provide an intelligent warning device and a communication pole.
[0004] To achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0005] An intelligent warning device includes an annular mounting member, and a magnetic member, an electromagnetic inductor, a microprocessor, and a communication module respectively arranged on the mounting member; a plurality of the magnetic members are evenly spaced along the ring of the mounting member, and all the magnetic members are within the induction range of the electromagnetic inductor. The electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with the background monitoring center.
[0006] Further, a receiving groove is provided on the inner side wall corresponding to the ring of the mounting member, and the electromagnetic inductor, the microprocessor, and the communication module are all arranged in the receiving groove.
[0007] Further, a placement groove is formed on the mounting member, and the opening direction of the placement groove is the same as the axial direction of the ring corresponding to the mounting member, and the magnetic member is placed in the placement groove.
[0008] Further, the number of the magnetic members is ten.
[0009] Further, the magnetic member is a permanent magnet.
[0010] Further, the mounting member is composed of two semi-circular hoop members spliced with each other, and the two hoop members are fixedly connected to each other by bolts.
[0011] Further, the communication module is a radio frequency module.
[0012] A communication pole, comprising a pole body, and the intelligent warning device as described above is installed on the pole body.
[0013] Furthermore, the installation sleeve is sleeved on the pole body.
[0014] Furthermore, two or more intelligent warning devices are installed on each pole body, and the two or more intelligent warning devices are vertically and spaced apart along the axial direction of the pole body, and a communication connection is established between the communication modules in adjacent intelligent warning devices.
[0015] The beneficial effects of the present utility model are as follows:
[0016] An intelligent warning device provided by the present utility model includes an annular installation member, and a magnetic member, an electromagnetic inductor, a microprocessor and a communication module respectively arranged on the installation member; a plurality of the magnetic members are evenly spaced along the ring of the installation member, and a plurality of the magnetic members are all within the induction range of the electromagnetic inductor, the electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with a background monitoring center. Through the above structure, the electromagnetic inductor can detect the magnetic field change within its induction range and feedback it to the microprocessor, and the microprocessor judges whether displacement occurs and the degree of displacement according to the magnetic field change. Once the degree of displacement reaches a predetermined value, it can be timely fed back to the background monitoring center so that the background management personnel can timely handle abnormal situations. Applying the intelligent warning device to the communication pole can detect the pole and timely discover potential faults existing in the pole. Description of the Drawings
[0017] Figure 1 Shown is a schematic structural diagram of a communication pole of the present utility model;
[0018] Figure 2 Shown is a schematic radial cross-sectional view of a communication pole of the present utility model;
[0019] Explanation of the Reference Numerals in the Drawings:
[0020] 1. Installation member; 11. Accommodating groove; 12. Placing groove; 13. Hoop; 14. Bolt; 2. Magnetic member; 3. Electromagnetic inductor; 4. Microprocessor; 5. Communication module; 6. Pole body. Specific Embodiments
[0021] The following further describes the present utility model in conjunction with the drawings and specific embodiments:
[0022] As Figure 1 - Figure 2As shown in the figure, an intelligent warning device provided by the present utility model includes an annular mounting member, and a magnetic member, an electromagnetic inductor, a microprocessor, and a communication module respectively arranged on the mounting member; a plurality of the magnetic members are evenly spaced along the ring of the mounting member, and a plurality of the magnetic members are all within the induction range of the electromagnetic inductor. The electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with a background monitoring center.
[0023] As can be seen from the above description, the present utility model has the following beneficial effects:
[0024] An intelligent warning device provided by the present utility model includes an annular mounting member, and a magnetic member, an electromagnetic inductor, a microprocessor, and a communication module respectively arranged on the mounting member; a plurality of the magnetic members are evenly spaced along the ring of the mounting member, and a plurality of the magnetic members are all within the induction range of the electromagnetic inductor. The electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with a background monitoring center. Through the above structure, the electromagnetic inductor can detect the magnetic field change within its induction range and feedback it to the microprocessor, and the microprocessor judges whether displacement occurs and the degree of displacement according to the magnetic field change. Once the degree of displacement reaches a predetermined value, it can be timely fed back to the background monitoring center so that the background management personnel can timely handle abnormal situations.
[0025] Further, a receiving groove is provided on the inner side wall of the mounting member corresponding to the ring, and the electromagnetic inductor, the microprocessor, and the communication module are all arranged in the receiving groove.
[0026] As can be seen from the above description, through the above structural design, it is convenient to assemble the electromagnetic inductor, the microprocessor, and the communication module on the mounting member. And when the mounting member is installed on an object to be installed (such as a utility pole), the notch of the receiving groove is located inside the mounting member, and the object to be installed can just close the notch, so that the electromagnetic inductor, the microprocessor, and the communication module can be restricted in the receiving groove.
[0027] Further, a placing groove is provided on the mounting member, and the opening direction of the placing groove is the same as the axial direction of the mounting member corresponding to the ring, and the magnetic member is placed in the placing groove.
[0028] As can be seen from the above description, through the above structural design, it is convenient for the quick assembly of the magnetic member, and the position of the placing groove can limit the distribution of the magnetic members, so as to ensure that the plurality of magnetic members are evenly spaced.
[0029] Further, the number of the magnetic members is ten.
[0030] As can be seen from the above description, the number of the magnetic members is ten, which meets the actual requirements.
[0031] Further, the magnetic member is a permanent magnet.
[0032] As can be seen from the above description, the magnetic member is a permanent magnet, such as a neodymium iron boron magnet block, with more stable performance and a long service life.
[0033] Further, the mounting member is formed by splicing two semi-circular hoop members together, and the two hoop members are fixedly connected to each other by bolts.
[0034] As can be seen from the above description, through the above structural design, it is convenient to assemble the mounting member.
[0035] Further, the communication module is a radio frequency module.
[0036] As can be seen from the above description, using a radio frequency module as the communication module can meet the communication requirements.
[0037] As Figure 1 - Figure 2 shown, the present utility model also provides a communication pole, including a pole body, and the intelligent warning device described above is installed on the pole body.
[0038] As can be seen from the above description, the present utility model has the following beneficial effects:
[0039] A communication pole provided by the present utility model applies the intelligent warning device to the communication pole, which can detect the pole and timely discover potential faults existing in the pole.
[0040] Further, the mounting member is sleeved on the pole body.
[0041] As can be seen from the above description, the intelligent warning device can be assembled on the pole body, and the assembly efficiency is high.
[0042] Further, two or more intelligent warning devices are installed on each pole body, and the two or more intelligent warning devices are vertically spaced along the axial direction of the pole body, and a communication connection is established between the communication modules in adjacent intelligent warning devices.
[0043] As can be seen from the above description, installing two or more intelligent warning devices on each pole body can improve the detection accuracy.
[0044] The following lists several preferred embodiments or application embodiments to help those skilled in the art better understand the technical content of the present utility model and the technical contributions made by the present utility model compared with the prior art:
[0045] Preferred Embodiment 1:
[0046] As Figure 1 - Figure 2As shown in the figure, an intelligent warning device provided by the present utility model includes an annular mounting member 1, and a magnetic member 2, an electromagnetic inductor 3, a microprocessor 4, and a communication module 5 respectively arranged on the mounting member 1. In this embodiment, the number of the magnetic members 2 is ten. The magnetic member 2 is a permanent magnet, and the permanent magnet adopts a neodymium iron boron magnet block, which has more stable performance and a long service life.
[0047] The ten magnetic members 2 are evenly spaced along the ring of the mounting member 1, and the ten magnetic members 2 are all within the induction range of the electromagnetic inductor 3. The electromagnetic inductor 3 and the communication module 5 are respectively electrically connected to the microprocessor 4, and the communication module 5 is used to establish a communication connection with the background monitoring center. Among them, the communication module 5 is a radio frequency module. Using a radio frequency module as the communication module can meet the communication requirements.
[0048] A receiving groove 11 is provided on the inner side wall corresponding to the ring of the mounting member 1, and the electromagnetic inductor 3, the microprocessor 4, and the communication module 5 are all arranged in the receiving groove 11. Through the above structural design, it is convenient to assemble the electromagnetic inductor, the microprocessor, and the communication module on the mounting member. And when the mounting member is installed on an object to be installed (such as a utility pole), the notch of the receiving groove is located inside the mounting member, and the installation object can just close the notch, so that the electromagnetic inductor, the microprocessor, and the communication module can be restricted in the receiving groove.
[0049] A placement groove 12 is formed on the mounting member 1, and the opening direction of the placement groove 12 is the same as the axial direction of the corresponding ring of the mounting member 1. The magnetic member 2 is placed in the placement groove 12. Through the above structural design, it is convenient for the quick assembly of the magnetic member, and the position of the placement groove can limit the distribution of the magnetic members, so as to ensure that the multiple magnetic members are evenly spaced.
[0050] In this embodiment, the mounting member 1 is composed of two semi-circular hoop members 13 spliced with each other, and the two hoop members 13 are fixedly connected to each other by bolts 14.
[0051] The working principle of an intelligent warning device provided by the present utility model is as follows: The electromagnetic inductor can detect the magnetic field change within its induction range and feedback it to the microprocessor. The microprocessor then judges whether displacement occurs and the degree of displacement according to the magnetic field change. Once the degree of displacement reaches a predetermined value, it can be timely fed back to the background monitoring center so that the background management personnel can handle abnormal situations in a timely manner.
[0052] Preferred Embodiment Two:
[0053] As Figure 1 - Figure 2As shown in the figure, a communication pole provided by the present utility model includes a pole body 6, and the intelligent warning device is installed on the pole body 6. Applying the intelligent warning device to the communication pole can detect the pole and timely discover potential faults existing in the pole. Specifically, the mounting member 1 is sleeved on the pole body 6. Two or more intelligent warning devices are installed on each pole body 6, and the two or more intelligent warning devices are vertically spaced along the axial direction of the pole body, and a communication connection is established between the communication modules in adjacent intelligent warning devices. Through this specific design, the detection accuracy can be improved.
[0054] The above-mentioned intelligent warning device includes an annular mounting member 1, and a magnetic member 2, an electromagnetic inductor 3, a microprocessor 4 and a communication module 5 respectively arranged on the mounting member; in this embodiment, the number of the magnetic members is ten. The magnetic member is a permanent magnet, and the permanent magnet adopts a neodymium iron boron magnet block, with more stable performance and long service life.
[0055] The ten magnetic members are evenly spaced along the ring of the mounting member, and the ten magnetic members are all within the induction range of the electromagnetic inductor. The electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with the background monitoring center. Among them, the communication module is a radio frequency module. Using the radio frequency module as the communication module can meet the communication requirements.
[0056] A receiving groove 11 is provided on the inner side wall corresponding to the ring of the mounting member 1, and the electromagnetic inductor 3, the microprocessor 4 and the communication module 5 are all arranged in the receiving groove 11. Through the above structural design, it is convenient to assemble the electromagnetic inductor, the microprocessor and the communication module on the mounting member, and when the mounting member is installed on the object to be installed (such as a pole), the notch of the receiving groove is located inside the mounting member, and the object to be installed can just close the notch, so that the electromagnetic inductor, the microprocessor and the communication module can be restricted in the receiving groove.
[0057] A placing groove 12 is formed on the mounting member 1, and the opening direction of the placing groove 12 is the same as the axial direction of the ring corresponding to the mounting member. The magnetic member is placed in the placing groove. Through the above structural design, it is convenient for the quick assembly of the magnetic member, and the position of the placing groove can limit the distribution of the magnetic members, so as to ensure that the multiple magnetic members are evenly spaced.
[0058] In this embodiment, the mounting member 1 is composed of two semi-circular hoops 13 spliced together, and the two hoops 13 are fixedly connected to each other by bolts 14.
[0059] The working principle of a communication pole provided by the present utility model is as follows:
[0060] The installation set is sleeved on the pole body. The electromagnetic inductor on the installation part can detect the magnetic field change within the induction range, that is, the magnetic field change around the pole. If the pole shows abnormalities, such as displacement, the magnetic field around the pole will change. After being detected by the electromagnetic inductor, it is fed back to the microprocessor. The microprocessor then judges whether displacement occurs and the degree of displacement according to the magnetic field change. Once the degree of displacement reaches a predetermined value, it can be timely fed back to the background monitoring center so that the background management personnel can timely handle the abnormal situation. At the same time, positioning information is also sent so that the background management personnel can quickly arrive at the scene.
[0061] The present utility model has been described by the above related embodiments and drawings. However, the above embodiments are only examples for implementing the present utility model. It must be pointed out that the disclosed embodiments do not limit the scope of the present utility model. On the contrary, modifications and equivalent arrangements included in the spirit and scope of the claims are included in the scope of the present utility model.
Claims
1. An intelligent warning device, characterized in that, It includes an annular mounting member, as well as a magnetic member, an electromagnetic inductor, a microprocessor, and a communication module respectively provided on the mounting member; a plurality of the magnetic members are evenly spaced along the ring of the mounting member, and a plurality of the magnetic members are all within the sensing range of the electromagnetic inductor. The electromagnetic inductor and the communication module are respectively electrically connected to the microprocessor, and the communication module is used to establish a communication connection with a background monitoring center.
2. The intelligent warning device according to claim 1, characterized in that A receiving groove is provided on the inner side wall of the mounting member corresponding to the ring, and the electromagnetic inductor, the microprocessor, and the communication module are all provided in the receiving groove.
3. The intelligent warning device according to claim 1, wherein A placement groove is formed on the mounting member, and the grooving direction of the placement groove is the same as the axial direction of the ring corresponding to the mounting member, and the magnetic member is placed in the placement groove.
4. The intelligent warning device according to claim 1, wherein The number of the magnetic members is ten.
5. The intelligent warning device according to claim 1 or 4, characterized in that, The magnetic member is a permanent magnet.
6. The intelligent warning device according to claim 1, characterized in that The mounting member is formed by splicing two semi-circular hoop members, and the two hoop members are fixedly connected to each other by bolts.
7. The intelligent warning device according to claim 1, characterized in that, The communication module is a radio frequency module.
8. A communication pole, characterized in that, It includes a pole body, and the intelligent warning device according to any one of claims 1 to 7 is installed on the pole body.
9. The communication electric pole according to claim 8, wherein, The mounting member is sleeved on the pole body.
10. The communication pole according to claim 9, characterized in that, Two or more intelligent warning devices are installed on each pole body, and the two or more intelligent warning devices are vertically spaced along the axial direction of the pole body, and a communication connection is established between the communication modules of adjacent intelligent warning devices.