Communication monitoring optimization adjustment system and method
By detecting the location and environment of the communication machine, combining wind, rainfall, vegetation and rolling stone threats, automatic lifting protection devices and remote management terminals are used to solve the protection problem of the communication machine in the slope environment, and long-term independent work and remote monitoring and adjustment are achieved.
Patent Information
- Application Number
- CN202510478501.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-07-22
AI Technical Summary
The existing communication machines lack monitoring design related to their working environment, which leads to being susceptible to heavy winds and rains in slope environments, being unable to work independently for a long time, and being unable to perform remote real-time status monitoring and adjustment.
By detecting the location and environment of the communication machine, combining wind, rainfall, vegetation and rolling stone threats, automatic lifting protection devices are used for protection, and positioning, environment, wind, branch hitting, rainfall and rolling stone proximity detection devices are used to monitor and adjust with remote management terminals.
It realizes effective protection of slope communication machines, ensures long-term independent work in harsh environments, and supports remote real-time status monitoring and adjustment.
Smart Images

Figure CN120353165A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of electrical digital data processing, and particularly relates to a communication monitoring optimization and adjustment system and method. Background Art
[0002] A Chinese patent with the publication number CN218178489U, a slope monitoring self-organizing network communication machine, includes a bottom plate. A support frame is fixedly installed on the top of the bottom plate. An installation plate is movably sleeved on the side surface of the support frame. A communication device is fixedly installed on the left side of the installation plate. A protective shell is fixedly sleeved on the side surface of the support frame. For this slope monitoring self-organizing network communication machine, by setting the installation plate, the protective shell, the sealing plate, the rotating cylinder, the telescopic spring and the telescopic rod, since the surface of the support frame is threadedly connected with the inside of the rotating cylinder, when the rotating cylinder rotates downward, it drives the installation plate to move downward on the surface of the support frame, so that the bottom ends of the two telescopic rods push the sealing plate to the left, and the communication device can be moved downward out of the protective shell. And by rotating the rotating cylinder upward, the installation plate is moved upward into the protective shell and the sealing plate is moved to the right by the elastic force of the telescopic spring, so that the protective shell is sealed, thus facilitating the protection, operation and use of the slope monitoring self-organizing network communication machine.
[0003] However, this kind of communication machine lacks monitoring design related to its working environment (for example, a communication machine located on a slope is easily affected by strong winds and heavy rains), which is not conducive to the long-term continuous autonomous operation of the communication machine, and it is impossible to establish real-time status monitoring of the communication machine by a remote management terminal, nor can remote intervention and related adjustment be carried out.
[0004] Therefore, at the present stage, it is necessary to design a communication monitoring optimization and adjustment system, method and storage medium to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a communication monitoring optimization and adjustment system, method and storage medium to solve the technical problems existing in the above-mentioned prior art. At the present stage, the communication machine lacks monitoring design related to its working environment (for example, a communication machine located on a slope is easily affected by strong winds and heavy rains), which is not conducive to the long-term continuous autonomous operation of the communication machine, and it is impossible to establish real-time status monitoring of the communication machine by a remote management terminal, nor can remote intervention and related adjustment be carried out.
[0006] To achieve the above purpose, the technical solution of the present invention is as follows: A communication monitoring optimization and adjustment method includes the following steps: S1. Detect the location where the communication machine is located, and judge whether the communication machine is installed on a slope. If so, go to step S2; S2. Detect the environment where the communication machine is located. If there is vegetation in the location environment, go to step S3, otherwise go to step S4; S3. Detect the wind intensity in the environment where the communication device is located. If the wind intensity reaches the preset wind intensity, detect whether there is a tree branch hitting the communication device. If so, proceed to step S5; S4. Detect the rainfall intensity in the environment where the communication device is located. If the rainfall intensity reaches the preset rainfall intensity, detect whether there is a rolling stone approaching the communication device. If so, proceed to step S5; S5. Protect the communication device by automatically lifting and storing it.
[0007] Furthermore, in step S1, when it is determined that the communication device is installed on a slope, continue to determine whether the communication device is located in the middle and lower reaches of the slope. If so, proceed to step S2.
[0008] Furthermore, in step S2, when there is vegetation in the environment where the communication device is located, determine the relative height between the vegetation and the communication device. If the vegetation is taller than the communication device, proceed to step S3.
[0009] Furthermore, in step S2, if the height of the vegetation is the same as that of the communication device, or the height of the vegetation is lower than that of the communication device but the height difference is within the preset value, determine the actual distance between the communication device and the vegetation. If the actual distance meets the preset distance, proceed to step S3.
[0010] Furthermore, in step S3, when detecting the wind intensity in the environment where the communication device is located, detect from the four directions of the front, back, left, and right of the communication device, and select the direction with the strongest wind intensity for comparison with the preset wind intensity; Among them, the tree branch hitting detection link is in a movable mode, so that the actual detection direction of the tree branch hitting detection adapts to the direction with the strongest wind intensity.
[0011] Furthermore, in step S4, when detecting a rolling stone approaching the communication device, the detection direction is set to face the slope direction, that is, opposite to the direction in which the rolling stone rolls down.
[0012] The communication monitoring optimization and adjustment system includes a positioning detection device, an environment detection device, a wind intensity detection device, a tree branch hitting detection device, a rainfall intensity detection device, a rolling stone approaching detection device, an automatic storage and protection device, and a control device; The control device is respectively connected to the positioning detection device, the environment detection device, the wind intensity detection device, the tree branch hitting detection device, the rainfall intensity detection device, the rolling stone approaching detection device, and the automatic storage and protection device; The positioning detection device is used to detect the location of the communication device and determine whether the communication device is installed on a slope; The environment detection device is used to detect the environment where the communication device is located and determine whether there is vegetation in the environment where the communication device is located; The wind intensity detection device is used to detect the wind intensity in the environment where the communication device is located; The branch hitting detection device is used to detect whether there is a branch hitting the communication machine; The rainfall degree detection device is used to detect the rainfall degree of the environment where the communication machine is located; The rolling stone approaching detection device is used to detect whether there is a rolling stone approaching the communication machine; The automatic storage protection device is used to store and protect the communication machine in an automatically lifting manner.
[0013] Furthermore, the control device is network-connected to the remote management terminal through the wireless communication device.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: One of the beneficial effects of this solution is that for the communication machine installed on the slope, considering its geographical environment and climate impact, it monitors from wind and rainfall respectively; when there is a large amount of vegetation in the environment where the communication machine is located, through the cooperation of wind detection and branch hitting detection, the communication machine can be protected; when there is no vegetation in the environment where the communication machine is located, through the cooperation of rainfall detection and rolling stone approaching detection, the communication machine can be protected. Description of the Drawings
[0015] Figure 1 It is a schematic diagram of the method steps of the implementation manner of this solution. Detailed Implementation Manner
[0016] Example 1: Considering that at present, the communication machine lacks monitoring designs related to its working environment (such as a communication machine on a slope is vulnerable to strong winds and heavy rains), it is not conducive to the long-term continuous autonomous work of the communication machine, and it is impossible to establish a remote management terminal to monitor the real-time status of the communication machine, nor can remote intervention and related adjustments be carried out.
[0017] As Figure 1 shown, a communication monitoring optimization and adjustment method is proposed, including the following steps: S1. Detect the location where the communication machine is located, and judge whether the communication machine is installed on a slope. If so, go to step S2; S2. Detect the environment where the communication machine is located. If there is vegetation in the environment, go to step S3; otherwise, go to step S4; S3. Detect the wind degree of the environment where the communication machine is located. If the wind degree reaches the preset wind degree, detect whether there is a branch hitting the communication machine. If so, go to step S5; S4. Detect the rainfall degree of the environment where the communication machine is located. If the rainfall degree reaches the preset rainfall degree, detect whether there is a rolling stone approaching the communication machine. If so, go to step S5; S5. Store and protect the communication machine in an automatically lifting manner.
[0018] In the above solution, for the communication device installed on the slope, considering its geographical environment and climate impact, it is monitored separately from the aspects of wind and rainfall; when there is a large amount of vegetation in the environment where the communication device is located, through the cooperation of wind detection and branch hitting detection, the communication device can be protected; when there is no vegetation in the environment where the communication device is located, through the cooperation of rainfall detection and rolling stone approaching detection, the communication device can be protected.
[0019] Embodiment 2: Considering that if the communication device is located at the top of the slope, there is no threat such as rolling stones, therefore, it only targets the communication devices located in the middle and lower reaches of the slope.
[0020] On the basis of Embodiment 1, further, in step S1, when it is determined that the communication device is installed on the slope, continue to determine whether the communication device is located in the middle and lower reaches of the slope. If so, enter step S2.
[0021] Embodiment 3: On the basis of Embodiment 2, further, in step S2, when there is vegetation in the environment where the communication device is located, judge the relative height between the vegetation and the communication device. If the vegetation is higher than the communication device, enter step S3.
[0022] In the above solution, considering that the vegetation with a height lower than that of the communication device is not likely to hit the communication device even under strong wind, this situation is excluded.
[0023] Embodiment 4: On the basis of Embodiment 3, further, in step S2, if the height of the vegetation is the same as that of the communication device, or the vegetation height is lower than that of the communication device but the height difference is within the preset value, judge the actual distance between the communication device and the vegetation. If the actual distance meets the preset distance, enter step S3.
[0024] In the above solution, considering that the vegetation is relatively close to the communication device, even if the vegetation height is not higher than that of the communication device, it may still hit the communication device under strong wind.
[0025] Embodiment 5: On the basis of Embodiment 4, further, in step S3, when detecting the wind strength in the environment where the communication device is located, detect from the four directions of the front, back, left and right of the communication device, and select the direction with the strongest wind strength for comparison with the preset wind strength; Among them, the branch hitting detection link is in a movable manner, so that the actual detection direction of the branch hitting detection is adapted to the direction with the strongest wind strength.
[0026] In the above solution, the branch hitting detection unit is set to be movable. Among the four directions of the front, back, left, and right of the communication device, the direction with the strongest wind blowing degree is the real-time detection direction of the branch hitting detection unit.
[0027] Embodiment 6: On the basis of Embodiment 1, further in step S4, when detecting that a rolling stone is approaching the communication device, the detection direction is set to face the slope direction, that is, opposite to the direction in which the rolling stone rolls down.
[0028] In the above solution, since the rolling stones on the slope all roll down, therefore, setting the rolling stone detection direction to be opposite to the direction in which the rolling stone rolls down can detect in advance whether there is a rolling stone approaching the communication device.
[0029] Embodiment 7: A communication monitoring optimization and adjustment system includes a positioning detection device, an environment detection device, a wind blowing degree detection device, a branch hitting detection device, a rainfall degree detection device, a rolling stone approaching detection device, an automatic storage and protection device, and a control device; The control device is respectively connected to the positioning detection device, the environment detection device, the wind blowing degree detection device, the branch hitting detection device, the rainfall degree detection device, the rolling stone approaching detection device, and the automatic storage and protection device; The positioning detection device is used to detect the location where the communication device is located and judge whether the communication device is installed on a slope; The environment detection device is used to detect the environment where the communication device is located and judge whether there is vegetation in the environment where the communication device is located; The wind blowing degree detection device is used to detect the wind blowing degree of the environment where the communication device is located; The branch hitting detection device is used to detect whether there is a branch hitting the communication device; The rainfall degree detection device is used to detect the rainfall degree of the environment where the communication device is located; The rolling stone approaching detection device is used to detect whether there is a rolling stone approaching the communication device; The automatic storage and protection device is used to store and protect the communication device in an automatically lifting manner.
[0030] In the above solution, the control device controls the positioning detection device to be turned on in the initial state, and controls the initial states of the environment detection device, the wind blowing degree detection device, the branch hitting detection device, the rainfall degree detection device, the rolling stone approaching detection device, and the automatic storage and protection device to be turned off; When the positioning detection device detects the location where the communication device is located and judges that the communication device is installed on a slope, the control device controls the environment detection device to be turned on; When the environment detection device detects the environment where the communication device is located and judges that there is vegetation in the environment where the communication device is located, the control device controls the wind blowing degree detection device to be turned on; When the wind intensity detection device detects that the wind intensity reaches the preset wind intensity, the control device controls the branch hitting detection device to turn on; When the branch hitting detection device detects that there is a branch hitting the communication machine, the control device controls the automatic storage protection device to turn on; When the environment detection device detects the environment where the communication machine is located and determines that there is no vegetation in the environment where the communication machine is located, the control device controls the rainfall intensity detection device to turn on; When the rainfall intensity detection device detects that the rainfall intensity reaches the preset rainfall intensity, the control device controls the rolling stone approaching detection device to turn on; When the rolling stone approaching detection device detects that there is a rolling stone approaching the communication machine, the control device controls the automatic storage protection device to turn on.
[0031] Furthermore, the control device is network-connected to the remote management terminal through the wireless communication device to realize remote monitoring and optimization adjustment of the communication machine.
Claims
1. A method for optimizing and adjusting communication monitoring, characterized in that It includes the following steps: S1. Detect the location of the communication device and determine whether the communication device is installed on a slope. If so, proceed to step S2; S2. Detect the environment where the communication device is located. If there is vegetation in the environment, proceed to step S3; otherwise, proceed to step S4; S3. Detect the wind intensity in the environment where the communication device is located. If the wind intensity reaches the preset wind intensity, detect whether there are tree branches hitting the communication device. If so, proceed to step S5; S4. Detect the rainfall intensity in the environment where the communication device is located. If the rainfall intensity reaches the preset rainfall intensity, detect whether there are rolling stones approaching the communication device. If so, proceed to step S5; S5. Protect the communication device by automatically lifting and storing it.
2. The communication monitoring optimization adjustment method according to claim 1, wherein, In step S1, when it is determined that the communication device is installed on a slope, continue to determine whether the communication device is located in the middle and lower reaches of the slope. If so, proceed to step S2.
3. The communication monitoring optimization adjustment method according to claim 1, characterized in that In step S2, when there is vegetation in the environment where the communication device is located, determine the relative height between the vegetation and the communication device. If the vegetation is taller than the communication device, proceed to step S3.
4. The communication monitoring optimization adjustment method according to claim 3, wherein In step S2, if the height of the vegetation is the same as that of the communication device, or the height of the vegetation is lower than that of the communication device but the height difference is within the preset value, determine the actual distance between the communication device and the vegetation. If the actual distance meets the preset distance, proceed to step S3.
5. The communication monitoring optimization adjustment method according to claim 4, wherein In step S3, when detecting the wind intensity in the environment where the communication device is located, detect from the four directions of the front, back, left, and right of the communication device, and select the direction with the strongest wind intensity for comparison with the preset wind intensity; Among them, the tree branch hitting detection link is in a movable manner, so that the actual detection direction of the tree branch hitting detection is adapted to the direction with the strongest wind intensity.
6. The communication monitoring optimization adjustment method according to claim 1, characterized in that, In step S4, when detecting the approach of rolling stones to the communication device, the detection direction is set to face the slope direction, that is, opposite to the direction in which the rolling stones roll down.
7. Communication monitoring optimization and adjustment system, characterized in that, It includes a positioning detection device, an environment detection device, a wind intensity detection device, a tree branch hitting detection device, a rainfall intensity detection device, a rolling stone approach detection device, an automatic storage protection device, and a control device; The control device is respectively connected to the positioning detection device, the environment detection device, the wind intensity detection device, the tree branch hitting detection device, the rainfall intensity detection device, the rolling stone approach detection device, and the automatic storage protection device; The positioning detection device is used to detect the location of the communication device and determine whether the communication device is installed on a slope; The environment detection device is used to detect the environment where the communication device is located and determine whether there is vegetation in the environment where the communication device is located; The wind intensity detection device is used to detect the wind intensity in the environment where the communication device is located; The tree branch hitting detection device is used to detect whether there are tree branches hitting the communication device; The rainfall intensity detection device is used to detect the rainfall intensity in the environment where the communication device is located; The rolling stone approach detection device is used to detect whether there are rolling stones approaching the communication device; The automatic storage protection device is used to protect the communication device by automatically lifting and storing it.
8. The communication monitoring optimization and adjustment system according to claim 7, wherein It further includes a wireless communication device, and the control device is connected to the remote management terminal through the wireless communication device.
Citation Information
Patent Citations
Slope monitoring ad hoc network communication machine
CN218178489U