A method, device and system for monitoring the health of airport bird strike equipment
By acquiring and analyzing the parameter information of bird strike equipment in real time, the problem of difficulty in real-time health monitoring of multiple bird strike equipment in the prior art is solved, and real-time monitoring and efficient management of the health status of the equipment is realized.
Patent Information
- Application Number
- CN202210481416.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-05
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2042-05-05
AI Technical Summary
The prior art is difficult to realize real-time monitoring of the health status of multiple bird strike equipment at the airport, resulting in staff needing manual inspections, which increases workload and is difficult to achieve real-time monitoring.
By obtaining the parameter information of the bird strike device in real time, including temperature, humidity, resource parameters and performance information, the environmental impact of the device, the equipment status and working status, and displaying this information on the display interface to achieve real-time monitoring of the health status of the bird strike device.
Real-time monitoring of the health status of multiple bird strike equipment has been achieved, which has reduced the work burden of staff and improved the monitoring efficiency of equipment health status.
Smart Images

Figure CN114878196B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of health monitoring, and in particular to a method, device and system for health monitoring of airport bird strike equipment. Background Art
[0002] Compared with airplanes, birds are smaller and slower in flight, but airplanes are very fast during takeoff, normal flight, and landing. When birds and airplanes fly in opposite directions, the relative speed between them will be very high, and a collision will produce a huge impact force, which will not only cause huge losses and damage to passengers' lives and property, but also cause flight delays and many other indirect economic losses. In order to protect aviation safety and safeguard passengers' property and life safety, airports have adopted various bird-repelling measures.
[0003] The most common bird-repelling measure adopted by airports is generally to install bird strike devices on both sides of the runway. However, since bird strike devices may cause harm to the human body when working, the areas where bird strike devices are installed usually do not allow people and vehicles to enter or require entry as low as possible. Therefore, it is impossible to frequently check the health and working conditions of bird strike devices. In the related art, when monitoring the health and working conditions of bird strike devices at airports, relevant staff are required to manually monitor each bird strike device within a certain period of time, which increases the workload of relevant staff and makes it difficult to achieve real-time monitoring of the health status of multiple bird strike devices at the airport. Summary of the invention
[0004] In order to monitor the health status of multiple bird strike devices at an airport in real time, the present application provides, in particular, a method, device and system for monitoring the health status of bird strike devices at an airport.
[0005] In a first aspect, the present application provides a method for monitoring the health of bird strike equipment at an airport, which adopts the following technical solution:
[0006] A method for monitoring the health of airport bird strike equipment, comprising:
[0007] Acquire parameter information of multiple monitored bird strike devices in real time, wherein the parameter information of each bird strike device at least includes temperature and humidity change information within a preset time period, resource parameter information within a preset time period, and device performance information;
[0008] Determining environmental impact information of the bird strike device based on temperature and humidity change information within the preset time period;
[0009] determining device status information of the bird strike device according to device performance information of the bird strike device;
[0010] determining working status information of the bird strike device according to resource parameter information of the bird strike device within the preset time period;
[0011] The environmental impact information, the working status information and the device status information of the bird strike device are displayed on a display interface.
[0012] By adopting the above technical scheme, the parameter information of the monitored bird strike device is acquired in real time, the temperature and humidity change information of the bird strike device within a preset time period, the resource parameter information within the preset time period and the performance information of the device are obtained. According to the temperature and humidity change information within the preset time period, the environmental impact information of the bird strike device is determined; according to the device performance information of the bird strike device, the device status information is determined; according to the resource parameter information of the bird strike device within the preset time period, the working status information of the bird strike device is determined, and the environmental impact information, the working status information and the device status information are sent to the display screen together. When performing health monitoring of the bird strike device, there is no need to rely on manual labor, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike device.
[0013] In a possible implementation, when it is detected that the bird strike device is started at the current moment, a voltage value of a battery configured in the bird strike device is obtained;
[0014] Determining whether the voltage value is within a standard starting voltage value range, wherein the standard starting voltage value range is determined based on a plurality of historical starting voltage values of the bird strike device;
[0015] If the voltage value is within the standard starting voltage value range, it is determined that the starting voltage of the bird strike device is normal;
[0016] If the voltage value is not within the standard starting voltage value range, it is determined that the starting voltage of the bird strike device is abnormal;
[0017] The bird strike device is marked as a first abnormality on the display interface, and / or first abnormality information corresponding to the bird strike device is generated, and the first abnormality information is sent to the terminal device of the relevant staff, wherein the first abnormality includes at least one or more of the following: uneven circuit interface and leakage.
[0018] By adopting the above technical solution, when it is detected that the bird strike device is started at the current moment, the voltage value of the battery configured in the bird strike device is obtained, and the obtained voltage value is used to determine whether the bird strike device is within the standard starting voltage range. When the collected voltage value is within the standard starting voltage range, it is determined that the starting voltage of the bird strike device is normal. When the collected voltage value is not within the standard starting voltage range, it is determined that there is an abnormality in the starting voltage of the bird strike device, and the abnormality is marked. At the same time, the first abnormality information is generated, and the generated first abnormality information is sent to the terminal device of the relevant staff, so that the relevant staff can repair the abnormal bird strike device.
[0019] In a possible implementation, determining the environmental impact information of the bird strike device according to the temperature and humidity change information within the preset time period includes:
[0020] Based on the temperature and humidity change information of the bird strike device within a preset time period, the probability of the bird strike device failing is predicted, and the failure includes at least any one of the following: the temperature of the battery built into the bird strike device is too high, the pressure in the gas tank is too high, and the device is on fire;
[0021] Environmental impact information is generated according to the probability of the failure occurring.
[0022] By adopting the above technical solution, the probability of failure of the bird strike device can be preset through the changes in temperature and humidity of the bird strike device within a preset time period, which will cause changes in the status of the built-in battery, gas tank, etc. of the bird strike device. When the temperature is too high or the humidity is too high, the probability of failure of the bird strike device will increase. According to the failure probability, environmental impact information is generated, and the health status of the bird strike device can be checked in real time with relevant staff.
[0023] In a possible implementation, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component, determining the device status information of the bird strike device according to the performance information of the device includes:
[0024] When the sound frequency exceeds the preset standard sound frequency range, judging whether the bird strike device meets the use standard according to the model, commissioning time and application years of the bird strike device;
[0025] If the bird strike device meets the use standard, it is determined that the bird strike device has a second abnormality, and second abnormality information is generated, and the second abnormality information is sent to a terminal device of a relevant staff member, wherein the second abnormality information at least includes the number and location of the bird strike device;
[0026] If the bird strike device does not meet the usage standard, it is determined that the bird strike device has a device performance abnormality, and device status information is generated.
[0027] By adopting the above technical scheme, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component, it is determined whether the sound frequency exceeds the preset standard sound frequency range. When the sound frequency exceeds the preset sound frequency range, it is determined whether the bird strike device meets the use standards based on the model, commissioning time and application years of the bird strike device. If it meets the use standards, it is proved that there is an abnormality in the sound-emitting component of the bird strike device, and the second abnormality information generated by the bird strike device with the abnormal sound-emitting component is sent to the terminal device of the relevant staff, so that the relevant staff can inspect and repair the sound-emitting component; when the bird strike device does not meet the use standards, it is determined that the bird strike device has a performance abnormality, and the aging bird strike device is replaced or upgraded. The equipment status information at least includes the model, commissioning time and application years of the bird strike device, so that the relevant staff can view the equipment status of the bird strike device in real time through the display interface.
[0028] In a possible implementation, the resource parameter information includes: the remaining amount of resources of the bird strike device, and determining the working status information of the bird strike device according to the resource parameter information of the bird strike device within the preset time period includes:
[0029] Calculating the resource consumption rate of the bird strike device within a preset time period according to the remaining amount of resources of the bird strike device;
[0030] Compare the consumption speed with a preset standard consumption speed, and if the consumption speed is greater than the standard consumption speed, determine whether the current time period is a bird predation time period;
[0031] If the current time period is a bird predation time period, determining whether the consumption speed meets a preset condition, and if so, determining that the consumption speed is normal;
[0032] If the consumption speed does not meet the preset conditions, the consumption speed is determined to be abnormal, and the degree of resource leakage is determined by the consumption speed;
[0033] or, determining whether the gas content at the bird strike device exceeds a preset gas content;
[0034] If the preset gas content is exceeded, the extent of resource leakage is determined based on the gas content;
[0035] The working status information is generated according to the resource leakage degree.
[0036] By adopting the above technical scheme, the resource consumption rate of the bird strike device within a preset time period is calculated through the remaining amount of resources of the bird strike device, and compared with the standard resource rate. When the resource consumption rate of the bird strike device is greater than the preset standard consumption rate, it is determined whether the time period is a bird predation time period. The resource consumption rate in the bird predation time period is greater than the resource consumption rate in the non-predation time period. If the resource consumption rate of the bird strike device within the preset time period is greater than the resource consumption rate in the bird predation stage, it is determined that there is a resource leakage in the bird strike device, and the degree of resource leakage is determined by the resource leakage rate; or by detecting the gas content in the air at the bird strike device, the degree of resource leakage is determined by the gas content. The working status information of the bird strike device can record the resource parameter information of the bird strike device, and the working status information is displayed on the display interface, so that relevant staff can timely discover when a resource leakage occurs in the bird strike device, and can monitor the resource parameters of all bird strike devices by observing the display interface.
[0037] In a possible implementation, the process of determining the bird predation time period includes:
[0038] Acquire multiple historical image information of the bird strike device and the corresponding time points;
[0039] Determine whether there are birds in the multiple historical image information, and if so, record the time points corresponding to the historical image information where the birds exist, so as to generate a bird flight record table;
[0040] According to the bird flight record table, the total number of birds passing through the bird strike device within a fixed time period is obtained;
[0041] It is determined whether the total number of birds passing through the bird strike device within the fixed time period exceeds a preset threshold. If the total number of birds passing through the bird strike device exceeds the preset threshold, the fixed time period is determined as a bird predation time period.
[0042] By adopting the above technical solution, the characteristics of birds are extracted from the image information obtained by the bird strike device, and the number of birds in the image is recorded to obtain a bird flight record table. The total number of all birds passing through the bird strike device in a fixed time period is obtained according to the bird flight table. When the total number is greater than a preset threshold, the fixed time period, i.e., the moment of bird predation, is determined. The moment of bird predation can be determined based on the bird's flying habits, thereby enhancing the accuracy of determining the moment of bird predation.
[0043] In one possible implementation, it also includes:
[0044] The state of the bird strike device is monitored in real time, and the bird strike device is displayed on a display interface with an identifier corresponding to the state according to the state, and the state at least includes: an open state, a closed state, and an abnormal state.
[0045] By adopting the above technical solution, the status of the bird strike device is collected to obtain the opening, closing and abnormality of the bird strike device, and the three states are differently marked on the display interface, so that relevant staff can distinguish the three different states of the bird strike device through different marks on the display interface, making the display results of the display interface clearer.
[0046] In a possible implementation, one or more of the following may also be included:
[0047] When it is detected that the user triggers the manual mode mark on the display interface, controlling the opening or closing of the bird strike device;
[0048] When it is detected that the user triggers the timing mode mark on the display interface, the working time or waiting working time of the bird strike device is set;
[0049] After receiving a request sent by the user when the linkage mode mark is triggered on the display interface, the bird strike device is controlled to be linked with other devices.
[0050] By adopting the above method, after detecting the position where the user triggers the timing mode mark on the display screen, the bird strike device is controlled to be turned on or off. After the user triggers the timing mode mark, the working time and waiting working time of the bird strike device can be set. When the user triggers the linkage mode mark, the bird strike device can be controlled to be linked with other devices, which simplifies the operation of the electronic device, facilitates the user to control the bird strike device, and improves the user's experience of the electronic device.
[0051] In the second aspect, the present application provides an airport bird strike equipment health monitoring device, which adopts the following technical solution:
[0052] A device for monitoring the health of bird strike equipment at an airport, comprising:
[0053] A parameter acquisition module is used to acquire parameter information of multiple monitored bird strike devices in real time, wherein the parameter information of each bird strike device at least includes temperature and humidity change information within a preset time period, resource parameter information within a preset time period, and performance information of the device;
[0054] An environmental impact determination module, used to determine environmental impact information of the bird strike device according to the temperature and humidity change information within the preset time period;
[0055] A device status determination module, used to determine device status information of the bird strike device according to device performance information of the bird strike device;
[0056] A working status determination module, used to determine working status information of the bird strike device according to resource parameter information of the bird strike device within the preset time period;
[0057] A display module is used to display the environmental impact information, the working status information and the device status information of the bird strike device on a display interface.
[0058] By adopting the above technical scheme, the parameter information of the monitored bird strike device is acquired in real time, the temperature and humidity change information of the bird strike device within a preset time period, the resource parameter information within the preset time period and the performance information of the device are obtained. According to the temperature and humidity change information within the preset time period, the environmental impact information of the bird strike device is determined; according to the device performance information of the bird strike device, the device status information is determined; according to the resource parameter information of the bird strike device within the preset time period, the working status information of the bird strike device is determined, and the environmental impact information, the working status information and the device status information are sent to the display screen together. When performing health monitoring of the bird strike device, there is no need to rely on manual labor, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike device.
[0059] In a third aspect, the present application provides an electronic device, which adopts the following technical solution:
[0060] An electronic device, comprising:
[0061] one or more processors;
[0062] Memory;
[0063] One or more applications, wherein the one or more applications are stored in a memory and configured to be executed by one or more processors, and the one or more applications are configured to: execute the above-mentioned method for monitoring the health of airport bird strike equipment.
[0064] In a fourth aspect, the present application provides a computer-readable storage medium, which adopts the following technical solution:
[0065] A computer-readable storage medium includes: a computer program that can be loaded by a processor and execute the above-mentioned airport bird strike equipment health monitoring method.
[0066] In a fifth aspect, the present application provides an airport bird strike equipment health monitoring system, including: a health detection sensor and an electronic device:
[0067] The health detection sensor is used to collect parameter information of the bird strike device, wherein the parameter information at least includes the temperature and humidity within a preset time period, the resource parameters within the preset time period, and the working status of the device.
[0068] In summary, the present application includes at least one of the following beneficial technical effects:
[0069] By acquiring the parameter information of the monitored bird strike equipment in real time, the temperature and humidity change information of the bird strike equipment within a preset time period, the resource parameter information within the preset time period and the performance information of the equipment are obtained. The environmental impact information of the bird strike equipment is determined based on the temperature and humidity change information within the preset time period; the equipment status information is determined based on the equipment performance information of the bird strike equipment; the working status information of the bird strike equipment is determined based on the resource parameter information of the bird strike equipment within the preset time period, and the environmental impact information, working status information and equipment status information are sent to the display screen together. There is no need to rely on manual labor when performing health monitoring of the bird strike equipment, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0070] Figure 1 It is a flow chart of a method for health monitoring of bird strike equipment at an airport in an embodiment of the present application;
[0071] Figure 2 It is a structural schematic diagram of a device for monitoring the health of bird strike equipment at an airport in an embodiment of the present application;
[0072] Figure 3 It is a structural schematic diagram of an electronic device in an embodiment of the present application. DETAILED DESCRIPTION
[0073] The following is combined with Figure 1-3 This application is described in further detail.
[0074] After reading this specification, those skilled in the art may make non-creative modifications to this embodiment as needed, but such modifications are protected by patent law as long as they are within the scope of the claims of this application.
[0075] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0076] In addition, the term "and / or" in this article is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this article, unless otherwise specified, generally means that the associated objects before and after are in an "or" relationship.
[0077] In order to monitor the health status of multiple bird strike devices at an airport in real time, the embodiment of the present application obtains the parameter information of the monitored bird strike devices in real time, obtains the temperature and humidity change information of the bird strike devices within a preset time period, the resource parameter information within the preset time period and the performance information of the equipment, and determines the environmental impact information of the bird strike devices based on the temperature and humidity change information within the preset time period; determines the equipment status information based on the equipment performance information of the bird strike devices; determines the working status information of the bird strike devices based on the resource parameter information of the bird strike devices within the preset time period, and sends the environmental impact information, working status information and equipment status information to the display screen together. There is no need to rely on manual labor when performing health monitoring of the bird strike devices, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike devices.
[0078] Specifically, the embodiment of the present application provides a method for monitoring the health of bird strike equipment at an airport, which is performed by an electronic device, which can be a server or a terminal device, wherein the server can be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or a cloud server that provides cloud computing services. The terminal device can be a smart phone, a tablet computer, a laptop computer, a desktop computer, etc., but is not limited thereto. The terminal device and the server can be directly or indirectly connected via wired or wireless communication, which is not limited in the embodiment of the present application.
[0079] refer to Figure 1 , Figure 1 : is a flow chart of a method for monitoring the health of bird strike equipment at an airport in an embodiment of the present application, the method comprising step S110, step S120, step S130, step S140, and step S150, wherein:
[0080] Step S110: Acquire parameter information of multiple monitored bird strike devices in real time.
[0081] The parameter information of each bird strike device includes at least temperature and humidity change information within a preset time period, resource parameter information within a preset time period, and performance information of the device.
[0082] Specifically, in the embodiment of the present application, the parameter type of the parameter information of the multiple bird strike devices obtained can be pre-set, can be manually input, or can be determined according to the geographical location of the bird strike device. For example, if the location of the bird strike device is in a relatively dry place in the northwest, the humidity information within the preset time period can be not collected. The specific parameter type is not specifically limited in the embodiment of the present application. The preset time period can be manually input, or it can be modified and adjusted according to actual needs. Furthermore, the temperature and humidity change information within the preset time period can be collected by the temperature sensor and humidity sensor set at the location of the bird strike device, and the resource parameter information within the preset time period can be collected by the sensor set at the resource storage location of the bird strike device. For example, when the bird strike device is a gas gun, the pressure of the gas tank storing the gas can be collected by the pressure sensor, and then the collected pressure value is converted through the pressure and content relationship to obtain the gas content in the gas tank, thereby obtaining the resource parameter information of the bird strike device; the performance information of the bird strike device can specifically include: the model of the bird strike device, the commissioning time and the application life.
[0083] Step S120: Determine the environmental impact information of the bird strike device according to the temperature and humidity change information within a preset time period.
[0084] Specifically, the environmental impact information of the bird strike device is used to characterize the impact of the environment around the bird strike device on the health of the bird strike device. For example, when the temperature is too high or too low, the environmental impact information will include the current temperature value to predict possible faults in the bird strike device. The basis for predicting the existence of a fault in the bird strike device based on the temperature value is to make a prediction based on the historical work record of the bird strike device. The historical record of the bird strike device records the temperature value when the bird strike device fails, and the cause of the failure is indeed too large. For example, when the bird strike device is a gas cannon, the temperature of the environment around the bird strike device is too high, which may cause the pressure in the gas tank to increase. When the pressure in the gas tank is too high, the gas tank may explode and other consequences may easily occur.
[0085] Step S130: Determine device status information of the bird strike device according to the performance information of the bird strike device.
[0086] Specifically, the status information of the bird strike device can reflect whether the bird strike device is healthy. For example, when the bird strike device is a full sound wave alarm, the performance information of the bird strike device can include the frequency of the sound emitted by the bird strike device when it is working, and the frequency of the sound emitted is compared with the standard frequency to reflect whether the bird strike device is healthy.
[0087] Step S140: determining the working status information of the bird strike device according to the resource parameter information of the bird strike device within a preset time period.
[0088] Specifically, for example, when the bird strike device is a gas cannon, the resource parameter information of the bird strike device may include the gas content in the gas tank, and when the bird strike device is a full sound wave alarm, the resource parameter information of the bird strike device may include the battery power built into the bird strike device. The resource parameter information of the bird strike device can be used to determine whether the bird strike device can work normally.
[0089] Step S150: displaying the environmental impact information, the working status information and the equipment status information of the bird strike equipment on the display interface.
[0090] Specifically, the content displayed on the display interface includes at least the temperature, humidity, and device performance of the bird strike device. When the bird strike device is a gas cannon, the content displayed on the display interface also includes the gas content and pressure in the gas tank. In addition to the parameter information when the bird strike device is abnormal, the content displayed on the display interface also includes the corresponding parameter information when the bird strike device is normal.
[0091] In an embodiment of the present application, parameter information of the monitored bird strike device is acquired in real time through the second abnormality, and the temperature and humidity change information of the bird strike device within a preset time period, the resource parameter information within the preset time period, and the performance information of the device are obtained. The environmental impact information of the bird strike device is determined based on the temperature and humidity change information within the preset time period; the device status information is determined based on the device performance information of the bird strike device; the working status information of the bird strike device is determined based on the resource parameter information of the bird strike device within the preset time period, and the environmental impact information, working status information, and device status information are sent together to the display screen. When performing health monitoring of the bird strike device, there is no need to rely on manual labor, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike device.
[0092] In a possible implementation, in order to improve the accuracy of determining whether the starting voltage of the bird strike device is abnormal, the embodiment of the present application provides an airport bird strike device health monitoring method, which also includes step S10 (not shown in the drawings), step S11 (not shown in the drawings), step S12 (not shown in the drawings), and step S13 (not shown in the drawings), wherein:
[0093] Step S10: when it is detected that the bird strike device is started at the current moment, the voltage value of the battery configured in the bird strike device is obtained.
[0094] Specifically, the battery configured in the bird strike device can be a lead-acid battery or a lithium battery. Since the internal resistance of the lead-acid battery is small, the lead-acid battery can provide a large current when working. It can also be a lithium battery. The advantages of lithium batteries are that the battery voltage of the single cell is high, the storage life is long, and it can also show good performance in high and low temperature environments. The type of battery is not specifically limited in the embodiments of this application, as long as it can provide power for the bird strike device. The voltage of the bird strike device is different in each stage of operation, and the voltage at startup is higher than the voltage in the normal operating state. Therefore, when the built-in battery of the bird strike device is monitored for health, the voltage value of the bird strike device when it is started must be collected and detected. Specifically, the voltage value of the bird strike device when it is started can be collected through a voltage sensor.
[0095] Step S11: determining whether the voltage value is within a standard starting voltage value range, wherein the standard starting voltage value range is determined based on a plurality of historical starting voltage values of the bird strike device.
[0096] Specifically, the standard starting voltage value range is determined by collecting the historical starting voltage values of the bird strike device when it was normally started during historical operation, sorting the collected historical starting voltage values, determining the highest and lowest values, and generating a standard voltage value range based on the highest and lowest values.
[0097] Step S12: If the voltage value is within the standard starting voltage value range, it is determined that the starting voltage of the bird strike device is normal.
[0098] Step S13: If the voltage value is not within the standard starting voltage value range, it is determined that there is an abnormality in the starting voltage of the bird strike device;
[0099] Step S14: Mark the bird strike device as a first abnormality on the display interface, and / or generate first abnormality information corresponding to the bird strike device, and send the first abnormality information to the terminal device of the relevant staff, wherein the first abnormality information includes at least one or more of the following: uneven circuit interface and leakage.
[0100] Specifically, the first abnormal mark can be a text description marked on the abnormal bird strike device, or it can be a color mark on the display interface where the abnormal bird strike device appears. The specific color is not limited, as long as the user can distinguish abnormal bird strike devices from non-abnormal bird strike devices when checking the health status of all bird strike devices through the display interface. The first abnormal information at least includes the reason why the starting voltage of the bird strike device is not within the standard starting voltage range, such as uneven circuit interfaces of the bird strike device and leakage in the circuit. It can also include the number and location information of the abnormal bird strike device, so that relevant staff can quickly locate the location of the abnormal bird strike device and repair the abnormal bird strike device. When the generated first abnormal information is sent to the terminal device of the relevant staff, communication can be carried out through the 4G / 5G / WIFI network. The specific communication method is not specifically limited in the embodiment of the present application.
[0101] In an embodiment of the present application, when it is detected that the bird strike device is started at the current moment, the voltage value of the battery configured in the bird strike device is obtained, and the obtained voltage value is used to determine whether the bird strike device is within the standard starting voltage range. When the collected voltage value is within the standard starting voltage range, it is determined that the starting voltage of the bird strike device is normal. When the collected voltage value is not within the standard starting voltage range, it is determined that there is an abnormality in the starting voltage of the bird strike device, and the abnormality is marked. At the same time, first abnormal information is generated, and the generated first abnormal information is sent to the terminal device of the relevant staff, so that the relevant staff can repair the abnormal bird strike device.
[0102] In a possible implementation, in step S120, determining the environmental impact information of the bird strike device according to the temperature and humidity change information within a preset time period may specifically include: step S1201 (not shown in the drawings), step S1202 (not shown in the drawings), wherein:
[0103] Step S1201: Based on the temperature and humidity change information of the bird strike device within a preset time period, predict the probability of failure of the bird strike device, and the failure includes at least any one of the following: the temperature of the built-in battery of the bird strike device is too high, the pressure in the gas tank is too high, and the device catches fire.
[0104] Specifically, when the temperature of the environment in which the bird strike device is located is too high, it is easy to cause the temperature of the built-in battery of the bird strike device to be too high or the pressure in the gas tank to be too high, which will cause the bird strike device to malfunction; when the humidity of the environment in which the bird strike device is located is too high, it may cause the line of the bird strike device to contact water. After the line is flooded, using it again may cause leakage in the line. Therefore, the probability of failure of the bird strike device can be predicted by using temperature and humidity. By checking the historical working records of the bird strike device, the possible failure of the bird strike device under the current temperature or humidity is predicted, and the frequency of failure of the bird strike device under the same temperature or humidity conditions is predicted. The historical working records of the bird strike device contain the temperature and humidity conditions of the bird strike device when the failure occurs, as well as the cause of the failure.
[0105] Step S1202: Generate environmental impact information according to the probability of failure.
[0106] Specifically, in addition to recording the temperature and humidity in the environment where the bird strike device is located when an abnormality occurs in the bird strike device, the environmental impact information also needs to be recorded in real time when no abnormality occurs in the bird strike device, and the recorded content will be displayed on the display interface. The environmental impact information includes at least the real-time temperature and humidity of the location where the bird strike device is set, possible faults, and the probability of faults occurring.
[0107] In the embodiment of the present application, the probability of failure of the bird strike device can be preset through the changes in temperature and humidity of the bird strike device within a preset time period, which leads to changes in the status of the built-in battery, gas tank, etc. of the bird strike device. When the temperature is too high or the humidity is too high, the probability of failure of the bird strike device will increase. Environmental impact information is generated based on the failure probability, so that the health status of the bird strike device can be checked in real time with relevant staff.
[0108] In a possible implementation, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component in step S130, determining the device status information of the bird strike device according to the performance information of the bird strike device may specifically include: step S1301 (not shown in the drawings), step S1302 (not shown in the drawings), and step S1303 (not shown in the drawings), wherein:
[0109] Step S1301: When the sound frequency exceeds the preset standard sound frequency range, it is determined whether the bird strike device meets the use standard according to the model, commissioning time and application years of the bird strike device.
[0110] Specifically, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component, the frequency of the sound emitted by the bird strike device can be obtained through a frequency analyzer or a tape recorder. The preset standard sound frequency range is the sound frequency when the bird strike device is working normally. Different bird strike devices may correspond to different sound frequencies. The preset standard sound frequency can be modified according to actual conditions.
[0111] The model of the bird strike equipment can indicate the production time of the bird strike equipment, the commissioning time indicates the time when the bird strike equipment is put into use after leaving the factory, and the application life indicates the period during which the bird strike equipment maintains the equipment performance when it left the factory. After the bird strike equipment is put into use, the corresponding equipment performance of the bird strike equipment will decrease as the time of investment increases; if the bird strike equipment has not been put into use after production is completed, the corresponding equipment performance of the bird strike equipment will also decrease; if the number of years the bird strike equipment has been put into use exceeds the application life, the corresponding equipment performance of the bird strike equipment will also decrease. According to the model, commissioning time and application life of the bird strike equipment, the preset weight ratio is used to jointly determine whether the bird strike equipment meets the use standard. The use standard refers to the equipment performance at the time of leaving the factory, and the preset weight ratio can be modified according to one's own needs.
[0112] Step S1302: if the bird strike device meets the use standard, it is determined that the bird strike device has a second abnormality, second abnormality information is generated, and the second abnormality information is sent to a terminal device of a relevant staff member, wherein the second abnormality information at least includes the number and location of the bird strike device;
[0113] Specifically, the second abnormality may refer to an abnormality in the sound-generating component of the bird strike device. The cause of the abnormality may be a structural failure of the sound-generating component or dust accumulation in the sound-generating component. The specific cause cannot be known by collecting the sound frequency. The abnormal information includes at least the number and location of the bird strike device, so as to remind relevant staff to inspect the sound-generating component of the bird strike device. When the generated second abnormal information is sent to the terminal device of the relevant staff, communication can be carried out through the 4G / 5G / WIFI network. The specific communication method is not specifically limited in the embodiment of the present application.
[0114] Step S1303: If the bird strike device does not meet the usage standard, it is determined that the bird strike device has a device performance abnormality, and device status information is generated.
[0115] Specifically, the equipment status information not only includes the model, commissioning time and application years of the abnormal bird strike equipment, but also the corresponding equipment status information of the bird strike equipment that meets the use standards.
[0116] In an embodiment of the present application, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component, it is determined whether the sound frequency exceeds a preset standard sound frequency range. When the sound frequency exceeds the preset sound frequency range, it is determined whether the bird strike device meets the use standards based on the model, commissioning time and application years of the bird strike device. If it meets the use standards, it is proved that there is an abnormality in the sound-emitting component of the bird strike device. The second abnormality information generated by the bird strike device with the abnormal sound-emitting component is sent to the terminal device of the relevant staff, so that the relevant staff can inspect and repair the sound-emitting component. When the bird strike device does not meet the use standards, it is determined that the bird strike device has a performance abnormality, and the aging bird strike device is replaced or upgraded. The equipment status information includes at least the model, commissioning time and application years of the bird strike device, so that the relevant staff can view the equipment status of the bird strike device in real time through the display interface.
[0117] Further, the resource parameter information includes: the remaining amount of resources of all bird strike devices. In step S140, the working state information of the bird strike device is determined according to the resource parameter information of the bird strike device in a preset time period, which may specifically include: step S1401 (not shown in the drawings), step S1402 (not shown in the drawings), step S1403 (not shown in the drawings), step S1404 (not shown in the drawings), and step S1405 (not shown in the drawings), wherein:
[0118] Step S1401: Calculate the resource consumption rate of the bird strike device within a preset time period according to the remaining amount of resources of the bird strike device.
[0119] Specifically, the resource consumption rate of the bird strike device within the preset time period is the same. The resource consumption of the bird strike device within the preset time period can be known based on the remaining amount of resources. The consumption rate = resource consumption within the preset time period / preset time period.
[0120] Step S1402: Compare the consumption speed with a preset standard consumption speed. If the consumption speed is greater than the standard consumption speed, determine whether the current time period is a bird predation time period.
[0121] Specifically, due to the high frequency of bird predation, the bird strike device will work in the period of bird predation, so the bird resource consumption rate is slightly higher. Therefore, the accuracy of judging whether the resource leakage occurs only by the consumption rate is low. Therefore, in order to improve the accuracy of the judgment, when determining whether the resource leakage occurs by the resource consumption rate, it is further judged whether it is a bird predation period. The standard consumption rate refers to the resource consumption rate in the normal frequency working stage of the bird strike device. In addition to the normal frequency working stage, it also includes the fast frequency working stage. The fast frequency working stage is the bird predation period. For example, the normal frequency of a normal bird strike device is to work for 2 minutes and rest for 20 minutes, and the fast frequency is to work for 2 minutes and rest for 8 minutes. The resource consumption rate in the fast frequency working stage is faster, and there is a standard consumption rate difference. For example, the resource consumption rate in the bird predation period is v1, and the resource consumption rate in the non-bird predation period is v2. The standard speed difference is v3, v1=v2+v3.
[0122] Step S1403: If the current time period is a bird predation time period, determine whether the consumption speed meets the preset conditions, and if so, determine that the consumption speed is normal.
[0123] Step S1404: If the consumption speed does not meet the preset conditions, the consumption speed is determined to be abnormal, and the degree of resource leakage is determined according to the consumption speed.
[0124] Specifically, for example, if the bird strike device is a gas cannon, when a resource leak occurs in the gas cannon, it may refer to gas leakage. At this time, in addition to the gas consumed in normal work, the gas consumption caused by gas leakage is also included. At this time, the gas content in the gas tank within a period of time T can be continuously collected, and the remaining amount of gas in the gas tank before the start of collection A1 can be recorded. After a period of time T, the remaining amount of gas in the gas tank A2 can be recorded again. It is known that the normal consumption rate of gas is V1, and the speed V2 of gas leakage can be predicted. If the speed of gas leakage is less than the preset first speed, it is determined that the degree of resource leakage is low. If the speed of gas leakage is greater than the preset second speed, it is determined that the degree of resource leakage is high. The first speed and the second speed can be modified according to demand. When the leakage degree is low, the bird strike device can be registered for maintenance. When the leakage degree is high, the bird strike device with resource leakage is promptly repaired, and the time for maintenance is determined according to the leakage degree.
[0125] Step S1405: determining whether the gas content at the bird strike device exceeds a preset gas content;
[0126] Step S1406: If the gas content exceeds a preset value, the resource leakage degree is determined according to the gas content.
[0127] Specifically, the gas at the bird strike device can be collected through a gas detection sensor, and the gas content in the sample gas can be tested. If the gas content detected in the sample gas is greater than a preset gas content value, it is determined that the gas cannon has leaked during operation. Since a small amount of gas will also be released when a gas cannon explodes, it cannot be determined that a gas leak has occurred in the gas cannon when the gas content is detected in the sample gas. Furthermore, when the gas content in the sample gas exceeds a preset first content value, it is determined that the degree of gas leakage is low, and when the gas content in the sample gas exceeds a preset second content value, it is determined that the degree of gas leakage is high, and the preset gas content value is greater than or equal to the preset first content value.
[0128] Step S1407: Generate work status information according to the degree of resource leakage.
[0129] Specifically, the working status information includes at least the resource consumption rate and remaining resources of the bird strike device during operation. The working status information is sent to the display interface for display, so that relevant staff can view the working status information of the bird strike device in real time. Different leakage degrees have different corresponding working status information. For example, the working status information corresponding to the bird strike device with a higher leakage degree includes at least: remaining resources, higher degree of resource leakage and corresponding maintenance suggestions.
[0130] In an embodiment of the present application, the resource consumption rate of the bird strike device within a preset time period is calculated based on the remaining amount of resources of the bird strike device, and compared with the standard resource rate, when the resource consumption rate of the bird strike device is greater than the preset standard consumption rate, it is determined whether the time period is a bird predation time period, and the resource consumption rate in the bird predation time period is greater than the resource consumption rate in the non-predation time period. If the resource consumption rate of the bird strike device within the preset time period is greater than the resource consumption rate in the bird predation stage, it is determined that there is a resource leakage in the bird strike device, and the degree of resource leakage is determined by the rate of resource leakage; or by detecting the gas content in the air at the bird strike device, the degree of resource leakage is determined by the gas content. The working status information of the bird strike device can record the resource parameter information of the bird strike device, and display the working status information on the display interface, so that relevant staff can promptly discover resource leakage in the bird strike device, and can monitor the resource parameters of all bird strike devices by observing the display interface.
[0131] In order to enhance the accuracy of determining the bird predation time period, the embodiment of the present application provides an airport bird strike equipment health monitoring method. In step S1402, it is determined whether the current time period is a bird predation time period, which may specifically include step S1402a (not shown in the drawings), step S1402b (not shown in the drawings), step S1402c (not shown in the drawings), and step S1402d (not shown in the drawings), wherein:
[0132] Step S1402a: Acquire multiple historical image information of the bird strike device and their corresponding time points.
[0133] Specifically, a plurality of historical image information of the bird strike device taken by the image acquisition device is obtained, and the shooting time of each piece of historical image information is recorded.
[0134] Step S1402b: Determine whether there are birds in the multiple historical image information. If yes, record the time points corresponding to the historical image information where birds exist to generate a bird flight record table.
[0135] Specifically, by performing feature recognition on historical images, the birds appearing in the images are identified to determine the number of birds, and a bird flight record table is formed according to the time when the images were taken and the number of birds that appeared.
[0136] Step S1402c: According to the bird flight record table, the total number of birds passing through the bird strike device within a fixed time period is obtained.
[0137] Specifically, the fixed time period can be 2 hours or 3 hours, and the length of the fixed time period is not specifically limited. For example, there are 12 birds flying in the image taken at 8:10 am, 10 birds flying in the image taken at 8:28 am, and 20 birds flying in the image taken at 8:30 am. When the fixed time period is 30 minutes, the number of all birds passing between 8:00 am and 8:30 am is counted, that is, 42 birds fly between 8:00 am and 8:30 am.
[0138] Step S1402d: Determine whether the total number of birds passing through the bird strike device within a fixed time period exceeds a preset threshold. If it exceeds the preset threshold, the fixed time period is determined as a bird predation time period.
[0139] Specifically, since the moment of bird predation is determined based on the number of birds passing through a fixed time period, the preset threshold will be modified based on the actual geographical location of the airport. For example, when the airport is surrounded by villages and woods, the preset threshold will be set to a larger number. If the airport is in the city center, because there are fewer birds in the city center, the number set when setting the preset threshold will be smaller.
[0140] In an embodiment of the present application, the characteristics of birds are extracted from the image information obtained by the bird strike device, and the number of birds in the image is recorded to obtain a bird flight record table. The total number of all birds passing through the bird strike device in a fixed time period is obtained according to the bird flight table. When the total number is greater than a preset threshold, the fixed time period, i.e., the moment of bird predation, is determined. The moment of bird predation can be determined based on the bird's flying habits, thereby enhancing the accuracy of determining the moment of bird predation.
[0141] In order to facilitate relevant staff to check the status of bird strike equipment by observing the display interface, an embodiment of the present application provides an airport bird strike equipment health monitoring method, which also includes real-time monitoring of the status of the bird strike equipment, and displaying the bird strike equipment on the display interface with an identification corresponding to the status according to the status. The status includes at least: open state, closed state, and abnormal state.
[0142] Specifically, it is possible to determine whether the bird strike device is working or waiting to work by observing the image at the bird strike device and / or measuring the frequency of the sound emitted by the bird strike device through a frequency analyzer or a tape recorder. A bird strike device in work is in the on state, while a bird strike device waiting to work is in the off state. Alternatively, it can be determined whether there is an abnormality in the bird strike device through abnormal information.
[0143] The corresponding logo can be a different color on the display interface, or it can be in text form, as long as it can distinguish the bird strike equipment in operation from the bird strike equipment waiting to work, and the specific logo type is not limited. In addition, a countdown will be performed on the display interface according to the working time of the bird strike equipment, including the countdown of the working time and the countdown of the time until the next work starts.
[0144] In an embodiment of the present application, the status of the bird strike device is collected to obtain the on, off and abnormal status of the bird strike device, and the three statuses are differently marked on the display interface, so that relevant staff can distinguish the three different statuses of the bird strike device through different marks on the display interface, making the display result of the display interface clearer.
[0145] In order to improve the practicality of electronic equipment, the embodiment of the present application provides an airport bird strike equipment health monitoring method, which also includes the following one or more steps: step Sa (not shown in the drawings), step Sb (not shown in the drawings), step Sc (not shown in the drawings), wherein:
[0146] Step Sa: When it is detected that the user triggers the manual mode mark on the display interface, the bird strike device is controlled to be opened or closed.
[0147] Step Sb: When it is detected that the user triggers the timing mode mark on the display interface, the working time or waiting working time of the bird strike device is set.
[0148] Specifically, the display interface can be a touch screen or a non-touch screen. When the display interface is a touch screen, the user can trigger it by touching the preset area on the display screen with a finger, where the preset area corresponds to the position of the manual mode mark and the timing mode mark. In order to reduce the possibility of accidental touches by the user, when the time when the user triggers the display screen exceeds the preset time, it is determined that the user has triggered it normally, where the preset time can be modified according to the needs, which can be 1s or 0.5s. The specific time is not specifically limited in the embodiment of this application. When the display screen is a non-touch screen, the user triggers the display screen by double-clicking the preset area.
[0149] If a flock of birds happens to pass by when the bird strike device is in waiting state, in order to reduce the impact of birds on the takeoff and landing of the aircraft, the manual mode mark can be triggered to convert the bird strike device into working state and drive away the flying birds.
[0150] By triggering the timing mode logo, the working time of the bird strike device and the waiting time can be changed. For example, when there are many birds around the airport during the day, the working time of the bird strike device is 2 minutes and the waiting time is 8 minutes. At night, the working time of the bird strike device can be adjusted to 2 minutes and the waiting time can be adjusted to 18 minutes. There are fewer birds around the airport at night, and the working frequency of the bird strike device can be reduced to save resources. If bird migration is detected during the day, the working time and waiting time during the day can also be adjusted to improve the practicality of the electronic equipment.
[0151] Step Sc: after receiving the request sent by the user when the linkage mode mark is triggered on the display interface, the bird strike device is controlled to be linked with other devices.
[0152] Specifically, for example, if the other device is a radar, after the user triggers the linkage mode logo, the bird strike device and the radar can be linked. At night or on cloudy days, the radar can send the monitored bird information to the electronic device. After receiving the bird information sent by the radar, the electronic device can control the bird strike device to expel the birds, thereby enhancing the effect of expelling birds passing through the airport.
[0153] In the embodiment of the present application, after detecting the position where the user triggers the timing mode mark on the display screen, the bird strike device is controlled to be turned on or off. After the user triggers the timing mode mark, the working time and waiting working time of the bird strike device can be set. When the user triggers the linkage mode mark, the bird strike device can be controlled to be linked with other devices, which simplifies the operation of the electronic device, facilitates the user to control the bird strike device, and improves the user's experience of the electronic device.
[0154] The above embodiment introduces a method for monitoring the health of airport bird strike equipment from the perspective of method flow. The following embodiment introduces a device for monitoring the health of airport bird strike equipment from the perspective of a virtual module or a virtual unit. Please refer to the following embodiment for details.
[0155] This application embodiment provides a device for monitoring the health of airport bird strike equipment. Please refer to Figure 2 , Figure 2 2 is a schematic diagram of a structure of an airport bird strike equipment health monitoring device in an embodiment of the present application, including a parameter acquisition module 210, an environmental impact determination module 220, an equipment status determination module 230, a working status determination module 240, and a display module 250, wherein:
[0156] The parameter acquisition module 210 is used to acquire parameter information of multiple monitored bird strike devices in real time, and the parameter information of each bird strike device at least includes temperature and humidity change information within a preset time period, resource parameter information within a preset time period, and performance information of the device;
[0157] An environmental impact determination module 220 is used to determine environmental impact information of the bird-strike device based on temperature and humidity change information within a preset time period;
[0158] The device status determination module 230 is used to determine the device status information of the bird strike device according to the device performance information of the bird strike device;
[0159] A working status determination module 240 is used to determine working status information of the bird strike device according to resource parameter information of the bird strike device within a preset time period;
[0160] The display module 250 is used to display the environmental impact information, the working status information and the equipment status information of the bird strike equipment on the display interface.
[0161] In a possible implementation, an airport bird strike equipment health monitoring device further includes:
[0162] A voltage acquisition module is used to acquire the voltage value of a battery configured in the bird strike device when it is detected that the bird strike device is started at the current moment;
[0163] The voltage determination module is used to determine whether the voltage value is within a standard starting voltage value range, wherein the standard starting voltage value range is determined based on multiple historical starting voltage values of the bird strike device.
[0164] A first determination module is used to determine that the starting voltage of the bird strike device is normal if the voltage value is within the standard starting voltage value range;
[0165] The second determination module is used to determine that there is an abnormality in the starting voltage of the bird strike device if the voltage value is not within the standard starting voltage value range;
[0166] The abnormal execution module is used to mark the bird strike device as a first abnormality on the display interface, and / or generate the first abnormality information corresponding to the bird strike device, and send the first abnormality information to the terminal device of the relevant staff, wherein the first abnormality includes at least one or more of the following: uneven circuit interface and leakage.
[0167] In one possible implementation, the environmental impact determination module 220 includes:
[0168] A prediction unit, used to predict the probability of failure of the bird strike device based on the temperature and humidity change information of the bird strike device within a preset time period, where the failure includes at least any one of the following: the temperature of the built-in battery of the bird strike device is too high, the pressure in the gas tank is too high, and the device catches fire;
[0169] The environmental impact information generating unit is used to generate environmental impact information according to the probability of failure.
[0170] In one possible implementation, the device status determination module 230 includes:
[0171] The judgment and use standard unit is used to judge whether the bird strike device meets the use standard according to the model, commissioning time and application years of the bird strike device when the sound frequency exceeds the preset standard sound frequency range;
[0172] A second abnormality determination unit is used to determine that the bird strike device has a second abnormality if the bird strike device meets the use standard, generate second abnormality information, and send the second abnormality information to a terminal device of a relevant staff member, wherein the second abnormality information at least includes a number and a location of the bird strike device;
[0173] The device performance abnormality determination unit is used to determine that the bird strike device has device performance abnormality if the bird strike device does not meet the use standards, and generate device status information.
[0174] In one possible implementation, the working status determination module 240 includes:
[0175] A consumption calculation unit, used to calculate the resource consumption rate of the bird strike device within a preset time period according to the remaining resources of the bird strike device;
[0176] A consumption speed comparison unit, used to compare the consumption speed with a preset standard consumption speed, and if the consumption speed is greater than the standard consumption speed, determine whether the current time period is a bird predation time period;
[0177] A first determination unit is used to determine whether the consumption speed meets a preset condition if the current time period is a bird predation time period, and if so, determine that the consumption speed is normal;
[0178] A second determining unit, configured to determine that the consumption speed is abnormal if the consumption speed does not meet a preset condition, and determine the degree of resource leakage according to the consumption speed;
[0179] or, a gas content determination unit, used to determine whether the gas content at the bird strike device exceeds a preset gas content;
[0180] An excess execution unit, used to determine the resource leakage degree according to the gas content if the preset gas content is exceeded;
[0181] The work status information generating unit is used to generate work status information according to the resource leakage degree.
[0182] In a possible implementation, the consumption speed comparison unit includes:
[0183] An image acquisition subunit is used to acquire multiple historical image information of the bird strike device and the corresponding time points;
[0184] The bird judgment subunit is used to judge whether there are birds in the multiple historical image information, and if so, record the time points corresponding to the historical image information where birds exist, so as to generate a bird flight record table;
[0185] The total number of birds obtaining subunit is used to obtain the total number of birds passing through the bird striking device within a fixed time period according to the bird flight record table;
[0186] The determination subunit is used to determine whether the total number of birds passing through the bird strike device within a fixed time period exceeds a preset threshold. If it exceeds the preset threshold, the fixed time period is determined as a bird predation time period.
[0187] In one possible implementation, it also includes: real-time monitoring of the status of the bird strike device, and displaying the bird strike device on the display interface with an identifier corresponding to the status, and the status includes at least: open state, closed state, and abnormal state.
[0188] In a possible implementation, one or more of the following may also be included:
[0189] A control module, used to control the opening or closing of the bird strike device when it is detected that the user triggers the manual mode mark on the display interface;
[0190] A setting module, used to set the working time or waiting working time of the bird strike device after detecting that the user triggers the timing mode mark on the display interface;
[0191] The linkage module is used to control the bird strike device to link with other devices after receiving a request sent by the user when the linkage mode mark is triggered on the display interface.
[0192] An electronic device is provided in an embodiment of the present application, such as Figure 3 As shown, Figure 3 The electronic device 300 shown includes: a processor 301 and a memory 303. The processor 301 and the memory 303 are connected, such as through a bus 302. Optionally, the electronic device 300 may also include a transceiver 304. It should be noted that in actual applications, the transceiver 304 is not limited to one, and the structure of the electronic device 300 does not constitute a limitation on the embodiments of the present application.
[0193] The processor 301 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array) or other programmable logic devices, transistor logic devices, hardware components or any combination thereof. It may implement or execute various exemplary logic blocks, modules and circuits described in conjunction with the disclosure of this application. The processor 301 may also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, etc.
[0194] The bus 302 may include a path to transmit information between the above components. The bus 302 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus. The bus 302 may be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 3 Only one thick line is used in the diagram, but this does not mean that there is only one bus or only one type of bus.
[0195] The memory 303 may be a ROM (Read Only Memory) or other types of static storage devices that can store static information and instructions, a RAM (Random Access Memory) or other types of dynamic storage devices that can store information and instructions, or an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory) or other optical disk storage, optical disk storage (including compressed optical disk, laser disk, optical disk, digital versatile disk, Blu-ray disk, etc.), a magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store the desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited thereto.
[0196] The memory 303 is used to store the application code for executing the solution of the present application, and the execution is controlled by the processor 301. The processor 301 is used to execute the application code stored in the memory 303 to implement the contents shown in the above method embodiment.
[0197] The electronic devices include, but are not limited to, mobile terminals such as mobile phones, laptop computers, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), vehicle-mounted terminals (such as vehicle-mounted navigation terminals), and fixed terminals such as digital TVs, desktop computers, etc. It can also be a server, etc. Figure 3 The electronic device shown is only an example and should not bring any limitation to the functions and scope of use of the embodiments of the present disclosure.
[0198] An electronic device provided in an embodiment of the present application is applicable to the above method embodiment. No further description will be given here. The following embodiment provides an airport bird strike equipment health monitoring system, which is described in detail in the following embodiment.
[0199] The embodiment of the present application provides an airport bird strike equipment health monitoring system, including: a health detection sensor and an electronic device, wherein:
[0200] The health detection sensor is used to collect parameter information of the bird strike device, wherein the parameter information at least includes temperature and humidity within a preset time period, resource parameters within a preset time period, and working status of the device;
[0201] Such as the electronic device mentioned above.
[0202] The embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored, and when the computer is run on a computer, the computer can execute the corresponding content in the aforementioned method embodiment. Compared with the related art, the embodiment of the present application obtains the parameter information of the monitored bird strike device in real time, obtains the temperature and humidity change information of the bird strike device within a preset time period, the resource parameter information within a preset time period, and the performance information of the device, and determines the environmental impact information of the bird strike device according to the temperature and humidity change information within the preset time period; determines the device status information according to the device performance information of the bird strike device; determines the working status information of the bird strike device according to the resource parameter information of the bird strike device within the preset time period, and sends the environmental impact information, working status information, and device status information to the display screen together, so that there is no need to rely on manual labor when performing health monitoring on the bird strike device, thereby reducing the workload of relevant staff and realizing real-time monitoring of the health status of the bird strike device.
[0203] It should be understood that, although the steps in the flowchart of the accompanying drawings are displayed in sequence as indicated by the arrows, these steps are not necessarily executed in sequence in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least a part of the steps in the flowchart of the accompanying drawings may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed in turn or alternately with other steps or at least a part of the sub-steps or stages of other steps.
[0204] The above description is only a partial implementation method of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.
Claims
1. A method for monitoring the health of airport bird strike equipment, characterized in that: include: Acquire parameter information of multiple monitored bird strike devices in real time, wherein the parameter information of each bird strike device at least includes temperature and humidity change information within a preset time period, resource parameter information within a preset time period, and device performance information; Determining environmental impact information of the bird strike device based on temperature and humidity change information within the preset time period; determining device status information of the bird strike device according to device performance information of the bird strike device; determining working status information of the bird strike device according to resource parameter information of the bird strike device within the preset time period; Displaying the environmental impact information, the working status information and the device status information of the bird strike device on a display interface; Wherein, determining the environmental impact information of the bird strike device according to the temperature and humidity change information within the preset time period includes: Based on the temperature and humidity change information of the bird strike device within a preset time period, the probability of the bird strike device failing is predicted, and the failure includes at least any one of the following: the temperature of the battery built into the bird strike device is too high, the pressure in the gas tank is too high, and the device is on fire; generating environmental impact information according to the probability of the failure occurring; Wherein, when the performance information of the bird strike device includes the sound frequency of the sound-emitting component, determining the device status information of the bird strike device according to the performance information of the device includes: When the sound frequency exceeds the preset standard sound frequency range, judging whether the bird strike device meets the use standard according to the model, commissioning time and application years of the bird strike device; If the bird strike device meets the use standard, it is determined that the bird strike device has a second abnormality, and second abnormality information is generated, and the second abnormality information is sent to a terminal device of a relevant staff member, wherein the second abnormality information at least includes the number and location of the bird strike device; If the bird strike device does not meet the use standard, determining that the bird strike device has a device performance abnormality, and generating device status information; The resource parameter information includes: the remaining amount of resources of the bird strike device; and determining the working status information of the bird strike device according to the resource parameter information of the bird strike device within the preset time period includes: Calculating the resource consumption rate of the bird strike device within a preset time period according to the remaining amount of resources of the bird strike device; Compare the consumption speed with a preset standard consumption speed, and if the consumption speed is greater than the standard consumption speed, determine whether the current time period is a bird predation time period; If the current time period is a bird predation time period, determining whether the consumption speed meets a preset condition, and if so, determining that the consumption speed is normal; If the consumption speed does not meet the preset conditions, the consumption speed is determined to be abnormal, and the degree of resource leakage is determined by the consumption speed; or, determining whether the gas content at the bird strike device exceeds a preset gas content; If the preset gas content is exceeded, the extent of resource leakage is determined based on the gas content; The working status information is generated according to the resource leakage degree.
2. The method for monitoring the health of airport bird strike equipment according to claim 1, characterized in that: Also includes: When it is detected that the bird strike device is started at the current moment, obtaining a voltage value of a battery configured in the bird strike device; Determining whether the voltage value is within a standard starting voltage value range, wherein the standard starting voltage value range is determined based on a plurality of historical starting voltage values of the bird strike device; If the voltage value is within the standard starting voltage value range, it is determined that the starting voltage of the bird strike device is normal; If the voltage value is not within the standard starting voltage value range, it is determined that the starting voltage of the bird strike device is abnormal; The bird strike device is marked as a first abnormality on the display interface, and / or first abnormality information corresponding to the bird strike device is generated, and the first abnormality information is sent to the terminal device of the relevant staff, wherein the first abnormality includes at least one or more of the following: uneven circuit interface and leakage.
3. The method for monitoring the health of airport bird strike equipment according to claim 1, characterized in that: The process of determining the bird predation time period includes: Acquire multiple historical image information of the bird strike device and the corresponding time points; Determine whether there are birds in the multiple historical image information, and if so, record the time points corresponding to the historical image information where the birds exist, so as to generate a bird flight record table; According to the bird flight record table, the total number of birds passing through the bird strike device within a fixed time period is obtained; It is determined whether the total number of birds passing through the bird strike device within the fixed time period exceeds a preset threshold. If the total number of birds passing through the bird strike device exceeds the preset threshold, the fixed time period is determined as a bird predation time period.
4. The method for monitoring the health of airport bird strike equipment according to claim 1, characterized in that: Also includes: The state of the bird strike device is monitored in real time, and the bird strike device is displayed on a display interface with an identifier corresponding to the state according to the state, and the state at least includes: an open state, a closed state, and an abnormal state.
5. The method for monitoring the health of airport bird strike equipment according to claim 1, characterized in that: Also include one or more of the following: When it is detected that the user triggers the manual mode mark on the display interface, controlling the opening or closing of the bird strike device; When it is detected that the user triggers the timing mode mark on the display interface, the working time or waiting working time of the bird strike device is set; After receiving a request sent by the user when the linkage mode mark is triggered on the display interface, the bird strike device is controlled to be linked with other devices.
6. An electronic device, characterized in that: It includes: One or more processors; Memory; One or more applications, wherein the one or more applications are stored in the memory and configured to be executed by the one or more processors, and the one or more applications are configured to: execute the method according to any one of claims 1 to 5.
7. An airport bird strike equipment health monitoring system, characterized in that: include: Health detection sensors and electronics: The health detection sensor is used to collect parameter information of the bird strike device, wherein the parameter information at least includes temperature and humidity within a preset time period, resource parameters within a preset time period, and working status of the device; The electronic device as claimed in claim 6.
Citation Information
Patent Citations
Airport bird detection early warning and repelling linkage system
CN105739335A
Monitoring method, device and system
CN114326589A