Intelligent monitoring method and device for oil engine of communication base station

By receiving the generator location and remaining oil level, the system calculates and selects the optimal maintenance point for refueling in real time, solving the problems of low maintenance efficiency and poor timeliness of generators, and achieving efficient monitoring and timely refueling of generators.

CN121585708APending Publication Date: 2026-02-27INSPUR TIANYUAN COMM INFORMATION SYST CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511750159.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-26
Publication Date
2026-02-27

AI Technical Summary

Technical Problem

Existing generator maintenance methods are inefficient, labor-intensive, and time-sensitive, and cannot monitor fuel levels in real time, causing communication equipment to shut down when fuel is depleted.

Method used

By receiving the generator location and remaining fuel level periodically uploaded by the fuel level monitoring equipment on the base station side, the remaining runtime is calculated in real time, and when it falls below a threshold, a refueling message is sent to the maintenance terminal to select the optimal maintenance point for refueling.

Benefits of technology

It enables real-time monitoring of the remaining oil level in the oil generator, improving monitoring efficiency, reducing labor costs, and promptly notifying the operator to replenish oil, thus preventing equipment downtime due to oil shortage.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121585708A_ABST
    Figure CN121585708A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of Internet of Things, and provides an intelligent monitoring method and device for an oil engine of a communication base station, and the method comprises the steps: receiving the position of the oil engine and the remaining oil amount of the oil engine, which are uploaded by oil amount monitoring equipment at a base station side according to a preset period; determining the remaining operation duration of the oil engine based on the remaining oil quantity of the oil engine; under the condition that the remaining operation duration is lower than a first duration threshold value, oil supplementing information is sent to the operation and maintenance terminal, and the oil supplementing information comprises the oil engine position; wherein the first duration threshold value is the average statistical duration from each operation and maintenance point to the base station. According to the invention, by receiving the remaining oil quantity of the oil engine uploaded by the oil quantity monitoring equipment at the base station side according to the preset period, the remaining oil quantity of the oil engine at each base station can be monitored in real time, operation and maintenance personnel do not need to go back and forth to each station, the monitoring efficiency is improved, and the labor cost is reduced; and the remaining operation duration of the oil engine is determined based on the remaining oil quantity of the oil engine, and the oil supplementing information is sent to the operation and maintenance terminal under the condition that the remaining operation duration is lower than the first duration threshold value, so that the timeliness of oil supplementing is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of Internet of Things, and in particular to a communication base station oil engine intelligent monitoring method and device. BACKGROUND

[0002] Under extreme weather conditions such as typhoon, heavy rain and snow, power supply will often be interrupted on a large scale. In order to ensure the continuous operation of communication network equipment (including wireless base stations and core machine rooms, etc.), operators widely use oil engines (hereinafter referred to as oil engines) as backup power to generate electricity.

[0003] The continuous power generation time of the oil engine mainly depends on the capacity of the built-in fuel and the current load power. When the fuel is exhausted, the oil engine will stop generating electricity, which will also cause the communication equipment to be powered off, resulting in network service interruption. In order to avoid this situation, the oil quantity must be monitored, and manual oil replenishment must be carried out before the oil engine runs out of fuel.

[0004] At present, the mainstream oil engine operation and maintenance method is to send operation and maintenance personnel to drive to each scattered base station site to manually check the remaining oil quantity of the oil engine, so as to judge whether oil needs to be replenished and the urgency of oil replenishment. This method has the following obvious defects: Low efficiency: the operation and maintenance personnel need to frequently go back and forth between each site, and a large amount of time is wasted on the road, especially in extreme weather, the road is not smooth, and the efficiency is very low.

[0005] High labor cost: a large amount of manpower is needed for inspection, and the labor cost is huge.

[0006] Poor timeliness: it is impossible to obtain real-time oil quantity information, and it is easy to find that the oil quantity is still sufficient (white trip) or the oil engine has stopped running due to lack of oil (too late) when arriving at the site. SUMMARY

[0007] The present application provides a communication base station oil engine intelligent monitoring method and device to solve the problems of low efficiency, high labor cost and poor timeliness of the existing oil engine operation and maintenance method.

[0008] The present application provides a communication base station oil engine intelligent monitoring method, comprising the following steps: receiving the oil engine position and the oil engine remaining oil quantity uploaded by the oil quantity monitoring device on the base station side according to a preset period; determining the oil engine remaining running time based on the oil engine remaining oil quantity; if the oil engine remaining running time is less than a first time threshold, sending oil replenishment information to an operation and maintenance terminal, wherein the oil replenishment information comprises the oil engine position; The first time threshold is the average statistical time of each operation and maintenance point to the base station.

[0009] The application provides a communication base station oil machine intelligent monitoring method, before sending oil supplement information to an operation and maintenance terminal, further comprising: judging whether the oil machine remaining operation duration is less than a second duration threshold and greater than a first duration threshold, if yes, sending a warning information to the operation and maintenance terminal, the warning information comprising an oil machine position, wherein the second duration threshold is a statistical maximum duration of each operation and maintenance point to the base station.

[0010] The application provides a communication base station oil machine intelligent monitoring method, further comprising: recording the duration of each operation and maintenance personnel arriving at the base station from each operation and maintenance point, and updating the average statistical duration and the statistical maximum duration of each operation and maintenance point to the base station.

[0011] The application provides a communication base station oil machine intelligent monitoring method, in the case that the oil machine is not running, the preset period is 1-3 days, and in the case that the oil machine is running, the preset period is 10 minutes-30 minutes.

[0012] The application provides a communication base station oil machine intelligent monitoring method, in the case that the oil machine is not running, the oil machine remaining operation duration is determined based on the oil machine remaining oil amount, comprising: calculating the oil machine remaining operation duration based on the oil machine remaining oil amount and the oil consumption amount per unit time under the oil machine rated power.

[0013] The application provides a communication base station oil machine intelligent monitoring method, in the case that the oil machine is running, the oil machine remaining operation duration is determined based on the oil machine remaining oil amount, comprising: acquiring the current real-time power of the oil machine; determining the oil consumption amount per unit time under the real-time power; real-time calculating the oil machine remaining operation duration based on the current oil machine remaining oil amount and the oil consumption amount per unit time under the real-time power.

[0014] The application provides a communication base station oil machine intelligent monitoring method, after sending the oil supplement information to the operation and maintenance terminal, further comprising: sending the real-time calculated oil machine remaining operation duration to the operation and maintenance terminal and / or a mobile terminal of the operation and maintenance personnel.

[0015] The application provides a communication base station oil machine intelligent monitoring method, the sending of the oil supplement information to the operation and maintenance terminal comprising: selecting, as the alternative operation and maintenance point, the operation and maintenance point capable of reaching the base station within the duration range after the first duration threshold minus a preset duration margin, with the base station as the destination, the duration of the operation and maintenance point reaching the base station being determined based on the navigation estimated duration of each operation and maintenance point to the base station under the current traffic state; query the oil reserves of each alternative operation and maintenance point and the idle state of the operation and maintenance personnel; select multiple alternative operation and maintenance points with oil reserves greater than the reserve threshold and idle state operation and maintenance personnel as target operation and maintenance points; select the target operation and maintenance point with the shortest navigation estimation length as the task-accepting operation and maintenance point; send the refueling information to the operation and maintenance terminal of the task-accepting operation and maintenance point.

[0016] The application also provides a communication base station oil engine intelligent monitoring device, comprising the following modules: A data receiving module is configured to receive the oil engine position and the oil engine remaining oil amount uploaded by the oil amount monitoring equipment on the base station side at a preset period; A time length determining module is configured to determine the oil engine remaining running time length based on the oil engine remaining oil amount; A refueling information sending module is configured to send refueling information to an operation and maintenance terminal if the oil engine remaining running time length is less than a first time length threshold, wherein the refueling information comprises the oil engine position. The first time length threshold is the average statistical time length from each operation and maintenance point to the base station.

[0017] The application also provides an electronic device comprising a memory, a processor, and a computer program stored in the memory and running on the processor, wherein the processor implements the communication base station oil engine intelligent monitoring method as described above.

[0018] The communication base station oil engine intelligent monitoring method and device provided by the application can monitor the remaining oil amount of each base station oil engine in real time by receiving the oil engine position and the oil engine remaining oil amount uploaded by the oil amount monitoring equipment on the base station side at a preset period, without the need for operation and maintenance personnel to go back and forth between each site, thereby improving the monitoring efficiency and reducing the labor cost. Moreover, the oil engine remaining running time length is determined based on the oil engine remaining oil amount, and refueling information is sent to an operation and maintenance terminal if the oil engine remaining running time length is less than a first time length threshold, thereby timely informing the operation and maintenance personnel to refuel, improving the timeliness of refueling, and avoiding the situation that the oil amount is still sufficient (white trip) or the oil engine has stopped due to lack of oil (too late) after arriving at the scene in the traditional manual inspection and refueling process. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0020] Figure 1It is the flow chart of the intelligent monitoring method of the oil engine of the communication base station provided in the application.

[0021] Figure 2 It is the structural schematic diagram of the intelligent monitoring device of the oil engine of the communication base station provided in the application.

[0022] Figure 3 It is the structural schematic diagram of the electronic device provided in the application. DETAILED DESCRIPTION

[0023] To make the object, technical scheme and advantages of the present application clearer, the technical scheme in the present application will be described clearly and completely below in combination with the drawings in the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0024] The intelligent monitoring method of the oil engine of the communication base station in the embodiment of the present application is applied to the background monitoring center of the Internet of Things, and the specific flow is as shown in the figure, which comprises the following steps S110 to S130. Figure 1

[0025] Step S110: receiving the oil engine position and the remaining oil quantity of the oil engine uploaded by the oil quantity monitoring device on the base station side according to the preset period. That is, the oil quantity monitoring device at the front end can collect the remaining oil quantity of the oil engine according to the preset period and send it to the background monitoring center, and the background monitoring center receives the oil engine position and the remaining oil quantity of the oil engine uploaded by the oil quantity monitoring device on the base station side according to the preset period.

[0026] Among them, the oil quantity monitoring device comprises an oil quantity sensor, a control unit, a positioning unit, a communication unit and a power supply, and the power supply supplies power to the oil quantity sensor, the control unit, the positioning unit and the communication unit. The oil quantity sensor can adopt ultrasonic liquid level sensor, float type sensor or pressure sensor, etc., which is used to collect the liquid level height or the remaining oil volume in the oil tank of the oil engine in real time. The control unit is used to preliminarily process the data collected by the oil quantity sensor, for example, filtering and unit conversion, and for example, multiplying the liquid level height by the bottom area of the oil tank (the bottom area of the oil tank can be preset in the control unit) to obtain the remaining oil volume, that is, the remaining oil quantity of the oil engine. The positioning unit is integrated with GPS and / or Beidou module, which provides the accurate geographical position of the oil engine device, facilitating navigation and maintenance. The communication unit adopts 4G / 5G, NB-IoT or LoRa wireless communication mode, uploads the information such as the remaining oil quantity of the oil engine, the position (longitude and latitude) of the oil engine and the collection time to the background monitoring center of the Internet of Things.

[0027] ​Step S120: determining the remaining running time of the oil engine based on the remaining oil quantity of the oil engine. Specifically, under the same running power of the oil engine, the more the remaining oil quantity of the oil engine, the longer the remaining running time of the oil engine. The determination of whether the oil quantity needs to be supplemented is based on the determination of the remaining running time of the oil engine.

[0028] Step S130: in the case that the remaining running time of the oil engine is less than the first time threshold, sending oil supplement information to the operation and maintenance terminal, the oil supplement information including the oil engine position. Specifically, the oil supplement information can be an alarm information for notifying the operation and maintenance personnel, which includes the oil engine position, and the oil engine position is used for the operation and maintenance personnel to locate the position of the oil engine needing to be supplemented. Since the operation and maintenance personnel needs a certain time length from the operation and maintenance point to the base station, the time length from different operation and maintenance points to the base station is different. Once the city power is cut off, the operation and maintenance personnel needs to be ensured to arrive at the base station to supplement the oil for the oil engine within the remaining running time of the oil engine. Therefore, the first time threshold is the average statistical time length from each operation and maintenance point to the base station. In this way, the operation and maintenance point close to the base station can be found in time to supplement the oil for the oil engine when the city power is cut off.

[0029] The communication base station oil engine intelligent monitoring method of the embodiment can monitor the remaining oil quantity of each base station oil engine in real time by receiving the oil engine position and the remaining oil quantity uploaded by the oil quantity monitoring device on the base station side at a preset period. The operation and maintenance personnel does not need to go back and forth between each site, which improves the monitoring efficiency and reduces the labor cost. Moreover, the remaining running time of the oil engine is determined based on the remaining oil quantity of the oil engine. In the case that the remaining running time of the oil engine is less than the first time threshold, the oil supplement information is sent to the operation and maintenance terminal, which can timely notify the operation and maintenance personnel to supplement the oil, improve the timeliness of oil supplement, and avoid the situation that the oil quantity is still sufficient (white trip) or the oil engine has been stopped due to lack of oil (too late) after arriving at the scene in the traditional manual inspection and oil supplement process.

[0030] In some embodiments, the communication base station oil engine intelligent monitoring method further includes: before sending the oil supplement information to the operation and maintenance terminal, determining whether the remaining running time of the oil engine is less than the second time threshold and greater than the first time threshold, and if so, sending a pre-warning information to the operation and maintenance terminal, the pre-warning information including the oil engine position, wherein the second time threshold is the statistical maximum time length from each operation and maintenance point to the base station. That is, the second time threshold is greater than the first time threshold, so as to realize the pre-warning of oil supplement, especially in the case of city power cut-off and oil engine running state. The pre-warning of oil supplement makes the operation and maintenance personnel have more preparation time, plans a suitable route in advance, and further ensures the timeliness of oil supplement.

[0031] In some embodiments, the time length of each maintenance personnel arriving at the base station from each maintenance point is recorded, and the average statistical time length and the statistical maximum time length of each maintenance point to the base station are updated. For the same maintenance point to the same base station, it may be caused by road construction detouring that the time length from the maintenance point to the base station becomes longer, the time length of each maintenance personnel arriving at the base station from each maintenance point is recorded, and the average statistical time length and the statistical maximum time length are updated in real time, which ensures that the setting of the first time length threshold being greater than the second time length threshold is more accurate, thereby improving the timeliness of oil replenishment.

[0032] It can be understood that the time length of each maintenance personnel arriving at the base station from each maintenance point can be the time length of the maintenance personnel arriving at the base station from the maintenance point when performing any task related to the base station (such as base station maintenance or oil replenishment).

[0033] In some embodiments, the preset period is 1-3 days when the oil machine is not running, and the preset period is 10 minutes-30 minutes when the oil machine is running. Specifically, the oil machine not running indicates that the city power is not disconnected, in this case, in order to reduce the power consumption of the oil quantity monitoring device, the preset period is set to 1-3 days; the oil machine running indicates that the oil quantity is consumed in real time, in order to improve the timeliness of oil replenishment warning, the preset period is 10 minutes-30 minutes.

[0034] In some embodiments, in the case that the oil machine is not running, step S120, determining the remaining running time length of the oil machine based on the remaining oil quantity of the oil machine, specifically comprising: based on the remaining oil quantity of the oil machine and the oil consumption per unit time under the rated power of the oil machine, calculating the remaining running time length of the oil machine. Specifically, the remaining running time length of the oil machine is obtained by dividing the remaining oil quantity of the oil machine by the oil consumption per unit time under the rated power of the oil machine.

[0035] In this embodiment, since the oil machine itself is not running, the urgency and timeliness of oil replenishment are not very high, therefore the oil consumption per unit time under the rated power of the oil machine can be referred to determine the remaining running time length of the oil machine, and even if the maintenance personnel does not arrive at the oil machine position for oil replenishment within the remaining running time length of the oil machine, it will not affect the operation of the base station.

[0036] In some embodiments, in the case that the oil machine is running, it indicates that the city power has been disconnected, and the oil machine operates to supply power to the base station, step S120, determining the remaining running time length of the oil machine based on the remaining oil quantity of the oil machine, specifically comprising the following steps: Step S121: Obtain the current real-time power of the oil engine. The oil engine generates electricity to supply power to the base station. The load of the base station directly affects the operating power of the oil engine. The greater the load of the base station, the greater the power of the oil engine, and even exceeds the rated power. In addition, the oil consumption per unit time of the oil engine is different under different power states. Therefore, in order to more accurately calculate the remaining running time of the oil engine, the current real-time power of the oil engine needs to be obtained. It can be understood that the current real-time power of the oil engine can also be collected by the corresponding power collector and sent to the background monitoring center through the communication unit of the oil quantity monitoring device at the same time as the current remaining oil quantity of the oil engine.

[0037] Step S122: Determine the oil consumption per unit time under the real-time power. For a fixed type of oil engine, the oil consumption per unit time in different real-time power ranges is usually determined. The relationship between the real-time power of the oil engine and the oil consumption per unit time can be pre-stored in the background monitoring center to quickly determine the oil consumption per unit time corresponding to the current real-time power of the oil engine.

[0038] Step S123: Based on the current remaining oil quantity of the oil engine and the oil consumption per unit time under the real-time power, the remaining running time of the oil engine is calculated in real time. Specifically, the remaining running time of the oil engine is calculated in real time by dividing the current remaining oil quantity of the oil engine by the oil consumption per unit time under the current real-time power. In this embodiment, the remaining running time of the oil engine can be more accurately determined by combining the current remaining oil quantity of the oil engine with the oil consumption per unit time corresponding to the current real-time power of the oil engine, so that the oil supplement information can be sent more timely.

[0039] Further, after sending the oil supplement information to the operation and maintenance terminal, the remaining running time of the oil engine calculated in real time is also sent to the operation and maintenance terminal and / or the mobile terminal of the operation and maintenance personnel.

[0040] In the case of oil engine operation, after the oil supplement information is sent to the operation and maintenance terminal, the oil quantity in the oil engine is also consumed, and the real-time power of the oil engine also changes due to the change of the load of the base station. The remaining running time of the oil engine also changes (the overall trend is to become shorter), and the change rate is also different. In order to enable the operation and maintenance personnel to arrive at the oil engine position in time, in this embodiment, the remaining running time of the oil engine calculated in real time is also sent to the operation and maintenance terminal and / or the mobile terminal of the operation and maintenance personnel (at a preset period) to enable the operation and maintenance personnel to reasonably adjust the vehicle speed according to the remaining running time of the oil engine calculated in real time, so as to arrive at the oil engine position before the oil quantity is consumed, and avoid the shutdown of the base station.

[0041] In some embodiments, step S130, sending the oil supplement information to the operation and maintenance terminal, specifically includes the following steps: Step S131: Select, as the candidate maintenance point, the maintenance point capable of reaching the base station within the time range obtained by subtracting a preset time margin from a first time threshold, the time of the maintenance point reaching the base station being determined based on the navigation estimated time of each maintenance point reaching the base station under the current traffic condition. Since the advance amount of reaching the oil machine position is considered, the first time threshold needs to be subtracted by a preset time margin, so as to ensure that the maintenance personnel can reach the oil machine position in time before the oil machine runs out of oil. The preset time margin can be 15 minutes to 30 minutes, for example, 20 minutes.

[0042] Step S132: Query the oil reserves of each candidate maintenance point and the idle state of the maintenance personnel. The oil reserves of the maintenance point can be obtained by acquiring the collection data of the oil sensor of the oil storage tank of the maintenance point. Whether the maintenance personnel is idle can be obtained by querying the attendance data of the maintenance point or the current state actively reported by the maintenance personnel.

[0043] Step S133: Select, as the target maintenance point, the multiple candidate maintenance points with the oil reserves greater than a reserve threshold and the idle state of the maintenance personnel. The reserve threshold is set according to the actual situation, for example, greater than the oil tank capacity of the oil machine.

[0044] Step S134: Select, as the task-accepting maintenance point, the target maintenance point with the shortest navigation estimated time, so as to ensure that the maintenance personnel can reach the oil machine position in time to supplement the oil machine in time.

[0045] Step S135: Send the oil supplement information to the maintenance terminal of the task-accepting maintenance point.

[0046] In this embodiment, the maintenance point capable of reaching the base station within the time range obtained by subtracting a preset time margin from a first time threshold is selected as the candidate maintenance point, and the maintenance point with sufficient oil reserves, idle maintenance personnel and the shortest navigation estimated time is selected as the task-accepting maintenance point from the candidate maintenance points, so as to ensure that the maintenance personnel can reach the oil machine position in time to supplement the oil machine within the oil machine remaining running time range, and avoid the base station shutdown.

[0047] In some embodiments, the communication base station oil machine intelligent monitoring method further includes: visually displaying the oil machine remaining oil amount and the oil machine remaining running time of each base station oil machine. Preferably, in combination with the geographic information system (GIS), the positions of the base stations and the oil machine remaining oil amount and the oil machine remaining running time of the base station oil machines are displayed on a map, and the page of visual display is pushed to the maintenance terminal of each maintenance point, so as to be viewed by the maintenance personnel in real time.

[0048] The communication base station oil engine intelligent monitoring device provided by the present application is described below, and the communication base station oil engine intelligent monitoring device described below can be correspondingly referred to the communication base station oil engine intelligent monitoring method described above.

[0049] The communication base station oil engine intelligent monitoring device provided by the present application is described below, and the communication base station oil engine intelligent monitoring device described below can be correspondingly referred to the communication base station oil engine intelligent monitoring method described above. Figure 2 As shown in the figure, the communication base station oil engine intelligent monitoring device comprises the following modules: The data receiving module 210 is configured to receive the oil engine position and the oil engine remaining oil quantity uploaded by the oil quantity monitoring device on the base station side at a preset period.

[0050] The time length determining module 220 is configured to determine the oil engine remaining running time length based on the oil engine remaining oil quantity.

[0051] The oil supplement information sending module 230 is configured to send oil supplement information to the operation and maintenance terminal if the oil engine remaining running time length is lower than the first time length threshold, and the oil supplement information comprises the oil engine position.

[0052] The first time length threshold is the average statistical time length from each operation and maintenance point to the base station.

[0053] The communication base station oil engine intelligent monitoring device provided by the present application is described below, and the communication base station oil engine intelligent monitoring device described below can be correspondingly referred to the communication base station oil engine intelligent monitoring method described above.

[0054] In some embodiments, the communication base station oil engine intelligent monitoring device further comprises a warning module configured to determine whether the oil engine remaining running time length is less than the second time length threshold and greater than the first time length threshold before sending the oil supplement information to the operation and maintenance terminal, and send warning information to the operation and maintenance terminal if yes, and the warning information comprises the oil engine position, wherein the second time length threshold is the statistical maximum time length from each operation and maintenance point to the base station.

[0055] In some embodiments, the communication base station oil engine intelligent monitoring device further comprises a time length updating module configured to record the time length of each operation and maintenance personnel from each operation and maintenance point to the base station, and update the average statistical time length and the statistical maximum time length from each operation and maintenance point to the base station.

[0056] In some embodiments, the preset period is 1-3 days when the oil machine is not running, and the preset period is 10 minutes-30 minutes when the oil machine is running.

[0057] In some embodiments, the time length determination module 220 is specifically configured to, when the oil machine is not running, calculate the remaining running time of the oil machine based on the remaining oil amount of the oil machine and the oil consumption per unit time under the rated power of the oil machine.

[0058] In some embodiments, the time length determination module 220 is specifically configured to, when the oil machine is running, acquire the real-time power of the oil machine; determine the oil consumption per unit time under the real-time power; and calculate the remaining running time of the oil machine in real time based on the current remaining oil amount of the oil machine and the oil consumption per unit time under the real-time power.

[0059] In some embodiments, the intelligent monitoring device for the oil machine of the communication base station further comprises a time length synchronization module configured to, after sending the oil supplement information to the operation and maintenance terminal, send the remaining running time of the oil machine calculated in real time to the operation and maintenance terminal and / or the mobile terminal of the operation and maintenance personnel.

[0060] In some embodiments, the oil supplement information sending module 230 comprises: An alternative operation and maintenance point selection module is configured to, with the base station as the destination, select an operation and maintenance point that can reach the base station within a time length range obtained by subtracting a preset time length margin from the first time length threshold as an alternative operation and maintenance point, and the time length for the operation and maintenance point to reach the base station is determined based on the estimated navigation time length of each operation and maintenance point to the base station under the current traffic state.

[0061] An operation and maintenance point query module is configured to query the oil amount reserve of each alternative operation and maintenance point and the idle state of the operation and maintenance personnel.

[0062] A target operation and maintenance point selection module is configured to select a plurality of alternative operation and maintenance points with an oil amount reserve greater than a reserve threshold and an idle state of the operation and maintenance personnel as target operation and maintenance points.

[0063] A task-accepting operation and maintenance point selection module is configured to select the target operation and maintenance point with the shortest estimated navigation time length as the task-accepting operation and maintenance point.

[0064] A sending module is configured to send the oil supplement information to the operation and maintenance terminal of the task-accepting operation and maintenance point.

[0065] Figure 3 An example of an entity structure diagram of an electronic device is shown in FIG. 1. Figure 3As shown, the electronic device can include a processor 310, a communications interface 320, a memory 330, and a communications bus 340, wherein the processor 310, the communications interface 320, and the memory 330 communicate with each other through the communications bus 340. The processor 310 can invoke the logic instructions in the memory 330 to execute the intelligent monitoring method of the oil engine of the communication base station, which includes: receiving the oil engine position and the remaining oil quantity of the oil engine uploaded by the oil quantity monitoring device on the base station side at a preset period.

[0066] determining the remaining running duration of the oil engine based on the remaining oil quantity of the oil engine.

[0067] in a case where the remaining running duration of the oil engine is lower than a first duration threshold, sending oil supplement information to a maintenance terminal, the oil supplement information including the oil engine position.

[0068] wherein the first duration threshold is an average statistical duration from each maintenance point to the base station.

[0069] In addition, the logic instructions in the memory 330 described above can be implemented in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application or parts of the present application that essentially contribute to the prior art or the parts of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various media that can store program codes.

[0070] On the other hand, the present application also provides a computer program product, which includes a computer program, the computer program can be stored on a non-transitory computer readable storage medium, and the computer program is executed by a processor, so that the computer can execute the intelligent monitoring method of the oil engine of the communication base station provided by the above-mentioned methods, which includes: receiving the oil engine position and the remaining oil quantity of the oil engine uploaded by the oil quantity monitoring device on the base station side at a preset period.

[0071] determining the remaining running duration of the oil engine based on the remaining oil quantity of the oil engine.

[0072] In a case that the remaining operation duration of the oil machine is lower than a first duration threshold, send oil supplement information to the operation and maintenance terminal, the oil supplement information including the oil machine position.

[0073] The first duration threshold is an average statistical duration from each operation and maintenance point to the base station.

[0074] In another aspect, the application further provides a non-transitory computer readable storage medium, which stores a computer program, the computer program being executed by a processor to implement the communication base station oil machine intelligent monitoring method provided by the above method, the method comprising: Receiving the oil machine position and the remaining oil quantity of the oil machine uploaded by the oil quantity monitoring device on the base station side according to a preset period.

[0075] Determining the remaining operation duration of the oil machine based on the remaining oil quantity of the oil machine.

[0076] In a case that the remaining operation duration of the oil machine is lower than a first duration threshold, send oil supplement information to the operation and maintenance terminal, the oil supplement information including the oil machine position.

[0077] The first duration threshold is an average statistical duration from each operation and maintenance point to the base station.

[0078] The device embodiments described above are only schematic, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, i.e., may be located in one place, or may be distributed on a plurality of network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the embodiment scheme. Those skilled in the art can understand and implement without creative labor.

[0079] From the above description of the embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software plus necessary universal hardware platforms, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of software product, which can be stored in a computer readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.

[0080] It should be pointed out finally that the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit the same; and although the present application has been described in detail with reference to the foregoing embodiments, it should be appreciated by those skilled in the art that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features thereof can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A method for intelligent monitoring of a communication base station oil machine, characterized in that, The method comprises the following steps: receiving the oil machine position and the remaining oil quantity of the oil machine uploaded by the oil quantity monitoring device on the base station side at a preset period; determining the remaining operation time of the oil machine based on the remaining oil quantity of the oil machine; if the remaining operation time of the oil machine is less than a first time threshold, sending oil supplement information to the operation and maintenance terminal, wherein the oil supplement information comprises the position of the oil machine; wherein the first time threshold is the average statistical time of each operation and maintenance point to the base station.

2. The method of claim 1, wherein the method further comprises: Before sending the oil supplement information to the operation and maintenance terminal, the method further comprises the following steps: determining whether the remaining operation time of the oil machine is less than a second time threshold and greater than the first time threshold, if yes, sending a warning information to the operation and maintenance terminal, wherein the warning information comprises the position of the oil machine, and the second time threshold is the maximum statistical time of each operation and maintenance point to the base station.

3. The method of claim 2, wherein the method further comprises: The method further comprises the following steps: recording the time of each operation and maintenance personnel from each operation and maintenance point to the base station, and updating the average statistical time and the maximum statistical time of each operation and maintenance point to the base station.

4. The method of claim 1, wherein the method further comprises: In the case that the oil machine is not running, the preset period is 1-3 days, and in the case that the oil machine is running, the preset period is 10 minutes-30 minutes.

5. The method of claim 1, wherein the method further comprises: In the case that the oil machine is not running, the method of determining the remaining operation time of the oil machine based on the remaining oil quantity of the oil machine comprises the following steps: calculating the remaining operation time of the oil machine based on the remaining oil quantity of the oil machine and the oil consumption per unit time under the rated power of the oil machine.

6. The method of claim 1, wherein the method further comprises: In the case that the oil machine is running, the method of determining the remaining operation time of the oil machine based on the remaining oil quantity of the oil machine comprises the following steps: obtaining the real-time power of the oil machine; determining the oil consumption per unit time under the real-time power; calculating the remaining operation time of the oil machine in real time based on the current remaining oil quantity of the oil machine and the oil consumption per unit time under the real-time power.

7. The method of claim 6, wherein the method further comprises: After sending the oil supplement information to the operation and maintenance terminal, the method further comprises the following steps: sending the real-time calculated remaining operation time of the oil machine to the operation and maintenance terminal and / or the mobile terminal of the operation and maintenance personnel.

8. The method of claim 1 to 7, wherein, The method of sending the oil supplement information to the operation and maintenance terminal comprises the following steps: selecting, as the candidate operation and maintenance points, the operation and maintenance points that can reach the base station within the time range obtained by subtracting a preset time margin from the first time threshold, wherein the time of the operation and maintenance points to reach the base station is determined based on the navigation estimated time of each operation and maintenance point to the base station under the current traffic state; inquiring the oil reserves of each candidate operation and maintenance point and the idle state of the operation and maintenance personnel; selecting, as the target operation and maintenance points, the candidate operation and maintenance points with the oil reserves greater than a reserve threshold and the idle state of the operation and maintenance personnel; selecting, as the task undertaking operation and maintenance point, the target operation and maintenance point with the shortest navigation estimated time; sending the oil supplement information to the operation and maintenance terminal of the task undertaking operation and maintenance point.

9. A communication base station oil machine intelligent monitoring device, characterized in that, The method comprises the following steps: a data receiving module for receiving the oil machine position and the remaining oil quantity of the oil machine uploaded by the oil quantity monitoring device on the base station side at a preset period; a time determining module for determining the remaining operation time of the oil machine based on the remaining oil quantity of the oil machine; an oil supplement information sending module for sending oil supplement information to the operation and maintenance terminal if the remaining operation time of the oil machine is less than a first time threshold, wherein the oil supplement information comprises the position of the oil machine; wherein the first time threshold is the average statistical time of each operation and maintenance point to the base station.

10. An electronic device comprising a memory, a processor, and a computer program stored on the memory and running on the processor, characterized in that, The processor implements the communication base station oil machine intelligent monitoring method according to any one of claims 1-8 when executing the computer program.