Detection device and method and storage medium
By using detection equipment powered by power storage components during the transportation of electronic equipment, the detection parameters are obtained and processed in real time, and alarm events are generated and sent, the problem of real-time detection and early warning in the prior art is solved, and the safe transportation of equipment is realized.
Patent Information
- Application Number
- CN202511064276.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-08-29
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the transportation of electronic equipment, it is difficult for the existing technology to achieve real-time detection and early warning, resulting in hardware damage or performance degradation, and abnormal situations cannot be handled in a timely manner.
It provides a detection device, including a power supply module and a main module. The power supply module includes a power storage component, which is used to power the main module after the electronic device is powered off, and communicates with the main module and the cloud management system. The main module obtains detection parameters in real time and generates alarm events, and sends alarm information to the cloud management system.
Real-time detection and early warning of electronic devices are realized, and users can obtain alarm events in a timely manner through the cloud management system to reduce transportation losses and ensure equipment safety.
Smart Images

Figure CN120560922A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of server technology, and in particular to a detection device, method, and storage medium. Background Art
[0002] Electronic devices (such as servers) may suffer hardware damage or performance degradation due to environmental issues (such as tilt or vibration) during transportation.
[0003] Users often desire real-time monitoring and early warning of electronic devices during transportation, enabling them to promptly detect and address any anomalies (e.g., fire) during transportation and mitigate losses. Currently, how to achieve real-time monitoring and early warning of electronic devices during transportation has become a pressing issue. Summary of the Invention
[0004] The present application provides a detection device, method and storage medium to at least solve the problem in the related art of how to perform real-time detection and early warning of electronic equipment during transportation.
[0005] The present application provides a detection device, including a power supply module and a main module, wherein the power supply module includes a power storage component, wherein:
[0006] The power supply module is connected to the main module. The power supply module and the main module are also used to connect to electronic devices respectively. The main module is also used to communicate with the cloud management system.
[0007] The power supply module is used to supply power to the main module through the power storage component after the electronic device is powered off, and to supply power to the main module and charge the power storage component based on the power input from the electronic device after the electronic device is powered on;
[0008] The main module is used to obtain the actual measured values of multiple detection parameters of the electronic device during transportation, as well as the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system. If the actual measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device is generated and sent to the cloud management system.
[0009] This application also provides a detection method, comprising:
[0010] Obtaining measured values of multiple detection parameters of the electronic device during transportation, and obtaining detection thresholds corresponding to the multiple detection parameters sent by the cloud management system;
[0011] If the measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device is generated;
[0012] Send alarm events to the cloud management system.
[0013] The present application also provides a detection device, comprising:
[0014] A transceiver module is used to obtain the measured values of multiple detection parameters of the electronic device during transportation, and to obtain the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system;
[0015] a processing module, configured to generate an alarm event for the electronic device if a measured value of at least one detection parameter is greater than a corresponding detection threshold;
[0016] The transceiver module is also used to send alarm events to the cloud management system.
[0017] The present application also provides a computer-readable storage medium, in which a computer program is stored. When the computer program is executed by a processor, the steps of the above-mentioned detection method are implemented.
[0018] The present application also provides a computer program product, including a computer program, which implements the steps of the above-mentioned detection method when executed by a processor.
[0019] The present application provides a detection device, method and storage medium, wherein the detection device includes a power supply module and a main module, the power supply module includes a power storage component, so that electronic equipment that is in a power-off state during transportation can be powered by the power storage component to the main module, so as to ensure that the main module performs real-time detection and early warning on the electronic equipment; the main module communicates with a cloud management system, and the main module is used to obtain the actual measured values of multiple detection parameters of the electronic equipment during transportation, and the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system. If the actual measured value of at least one detection parameter is greater than the corresponding detection threshold, the main module can also generate an alarm event for the electronic equipment and send the alarm event to the cloud management system, so that the user can obtain the alarm event of the electronic equipment during transportation in a timely manner through the cloud management system, thereby realizing real-time early warning of the electronic equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0021] Figure 1 One of the structural diagrams of the detection device provided in the embodiment of the present application;
[0022] Figure 2 The second structural diagram of the detection device provided in the embodiment of the present application;
[0023] Figure 3The third structural diagram of the detection device provided in the embodiment of the present application;
[0024] Figure 4 The fourth structural diagram of the detection device provided in the embodiment of the present application;
[0025] Figure 5 The fifth structural diagram of the detection device provided in the embodiment of the present application;
[0026] Figure 6 A schematic diagram of a detection method provided in an embodiment of the present application;
[0027] Figure 7 A schematic diagram of another detection method provided in an embodiment of the present application;
[0028] Figure 8 A schematic structural diagram of a detection device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0029] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0030] It should be noted that, in the description of this application, the terms "comprises," "includes," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. The terms "first," "second," etc., in this application are used to distinguish similar objects, and are not used to describe a particular order or sequence.
[0031] It should be noted that in the embodiments of the present application, certain software, components, models and other existing solutions in the industry may be mentioned. They should be regarded as exemplary. Their purpose is only to illustrate the feasibility of implementing the technical solution of the present application, but it does not mean that the applicant has or will necessarily use the solution.
[0032] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use and processing of relevant data must comply with relevant laws, regulations and standards, and corresponding operation entrances must be provided for users to choose to authorize or refuse.
[0033] Electronic devices (such as servers) are exposed to a variety of physical and environmental factors during transportation, such as tilt, vibration, and humidity and temperature fluctuations, which can cause hardware damage or performance degradation. To minimize transportation losses and ensure their safety, users require real-time monitoring and early warning of electronic devices during transportation. This allows for the timely detection and handling of any anomalies (such as fires) during transportation, minimizing transportation losses.
[0034] An embodiment of the present application provides a detection device, which includes a power supply module and a main module. The power supply module includes a power storage component, so that an electronic device that is in a power-off state during transportation can be powered by the power storage component to the main module, so as to ensure that the main module performs real-time detection and early warning of the electronic device; and the power supply module is also connected to the electronic device. After the electronic device is powered on, the power supply module can power the main module based on the power input by the electronic device and charge the power storage component, so that the power storage component can be recycled to ensure the stability of the power supply of the main module by the power storage component; the main module communicates with a cloud management system, and the main module can be used to obtain the actual measured values of multiple detection parameters of the electronic device during transportation, and the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system. If the actual measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device is generated, and the alarm event is sent to the cloud management system, so that the user can obtain the alarm event of the electronic device during transportation in a timely manner through the cloud management system, thereby realizing real-time early warning of the electronic device by the detection device.
[0035] It is understandable that maintenance personnel can obtain the alarm events of the electronic equipment in a timely manner through the cloud management system, and determine whether the electronic equipment has any abnormal conditions during transportation (for example, rollover or fire, etc.) based on the alarm events, and deal with these abnormal conditions in a timely manner to ensure the safety of the electronic equipment during transportation and reduce the losses of the electronic equipment during transportation.
[0036] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0037] Figure 1 One of the structural diagrams of the detection device provided in the embodiment of the present application is shown in FIG. Figure 1 The detection device 10 may include a power supply module 100 and a main module 101 , and the power supply module 100 includes a power storage component 1000 .
[0038] like Figure 1 As shown, the power supply module 100 is connected to the main module 101 . The power supply module 100 and the main module 101 are also used to connect to the electronic device 20 respectively. The main module 101 is also used to communicate with the cloud management system 30 .
[0039] Exemplarily, the electronic device 20 may be a server; or, the electronic device 20 may also be other equipment that requires precise detection of the transportation process, such as a precision instrument in an experiment.
[0040] For example, the cloud management system may be a system for managing electronic devices. The cloud management system may provide a target website that can be used to display transportation data of the electronic devices during transportation. The transportation data may include device information, alarm events, and transportation vehicles of the electronic devices. Maintenance personnel of the electronic devices can access the target website through a browser of a terminal to view the transportation data of the electronic devices during transportation, thereby achieving real-time monitoring of the transportation process of the electronic devices and reducing transportation losses of the electronic devices caused by abnormal conditions during transportation.
[0041] In some embodiments, a "cloud management system" may also be referred to as a "cloud management platform."
[0042] Next, the power supply module 100 and the main module 101 are introduced.
[0043] 1. Power supply module 100
[0044] The power supply module 100 can be used to power the main module 101 through the power storage component 1000 after the electronic device 20 is powered off, and to power the main module 101 and charge the power storage component 1000 based on the power input from the electronic device 20 after the electronic device 20 is powered on.
[0045] Optionally, the power supply module 100 may include a real-time clock (RTC) powered by a power storage component 1000. If the electronic device 20 loses power, the power storage component 1000 can power the RTC in the power supply module 100 and the main module 101, ensuring the power supply module 100's timing, data (such as timestamps, etc.) reading and storage functions.
[0046] Exemplarily, the power storage component may be a lithium battery power supply system.
[0047] The power supply module 100 can stop the charging process of the power storage component 1000 after detecting that the power storage component 1000 is fully charged; the power supply module 100 can also control the power storage component 1000 to supply power to the main module 101 after detecting that the electronic device 20 is powered off.
[0048] In some embodiments, a detection system can detect the environment of the electronic device during transportation, obtain detection data, and analyze the detection data after the electronic device is powered on to determine whether the electronic device is intact during transportation. However, after the electronic device is powered off, the detection system will not be able to detect the electronic device.
[0049] Compared to this detection system, the detection device provided in the embodiment of the present application can realize real-time detection and early warning of the entire transportation process of the electronic device. During the production process of the electronic device 20, the detection device 10 can be connected to the electronic device 20. After the electronic device 20 is powered on, it can be powered by the power supply module 100 to the main module 101, so that the main module 101 can perform real-time detection and early warning of the electronic device 20; after the detection device 10 is connected to the electronic device 20, the electronic device 20 can charge the power storage component 1000 to ensure that the power supply module 100 can provide power to the main module 101 through the power storage component 1000 for a long period of time.
[0050] During the transportation of the electronic device 20, the electronic device 20 is usually in a power-off state. The power storage component 1000 in the detection device 10 can supply power to the main module 101 to ensure that the main module 101 can perform real-time detection and early warning of the electronic device 20 during transportation.
[0051] After the electronic device 20 is transported, the server can continue to charge the power storage component 1000 after being powered on, and stop charging after charging is completed to ensure the endurance of the power storage component 1000.
[0052] 2. Main Module 101
[0053] The main module 101 can be used to obtain the actual measured values of multiple detection parameters of the electronic device 20 during transportation, as well as the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system 30. If the actual measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device 20 is generated and the alarm event is sent to the cloud management system 30.
[0054] The multiple environmental detection parameters may include, but are not limited to, temperature, humidity, pressure, tilt state, vibration state, and location of the electronic device.
[0055] It should be noted that the process of obtaining the measured values of multiple detection parameters will be Figure 3obtain the detection threshold corresponding to the multiple detection parameters sent by the cloud management system 30 and generate an alarm event of the electronic device 20, will be in Figure 7 Detailed description is given in .
[0056] In some embodiments, the main module 101 may include an environment detection component, a control component, an alarm component, and a storage component.
[0057] Next, combine Figure 2 , the structure of the main module 101 is further explained.
[0058] Figure 2 For the second structural diagram of the detection device provided in the embodiment of this application, please see Figure 2 ,exist Figure 1 Based on the structure of the detection device 10 shown, the main module 101 may include an environment detection component 1010 , an alarm component 1011 , a storage component 1012 and a control component 1013 .
[0059] like Figure 2 As shown, the storage component 1012 is connected to the environment detection component 1010, the control component 1013, the alarm component 1011 and the electronic device 20 respectively, and the control component 1013 is also connected to the alarm component 1011. The alarm component 1011 includes a communication unit, which can be used to communicate with the cloud management system 30.
[0060] Exemplarily, the communication unit may be a wireless communication unit, so that the detection device 10 can wirelessly communicate with the cloud management system through the communication unit.
[0061] The structure of each component in the main module 101 is described in detail below.
[0062] (1) Environmental detection component 1010
[0063] In some embodiments, the environment detection component 1010 may include multiple detection devices.
[0064] Optionally, the structure of the detection device 10 can also be as follows Figure 3 As shown, Figure 3 For the third structural diagram of the detection device provided in the embodiment of this application, please see Figure 3 ,exist Figure 2 Based on the structure of the detection device 10 shown, the environment detection component 1010 may include multiple detection devices, which may include: a humidity and temperature sensor, an air pressure sensor, a tilt and vibration sensor, and a positioning module.
[0065] Humidity and temperature sensors can be used to detect the temperature and humidity of electronic devices.
[0066] Air pressure sensors can be used to detect pressure in electronic devices.
[0067] The tilt and vibration sensor can be used to detect the tilt and vibration state of an electronic device.
[0068] The positioning module can be used to detect the position of the electronic device. For example, the positioning module can be a Global Positioning System (GPS) positioning module or a Beidou positioning module.
[0069] In some embodiments, an electronic level installed at the bottom of the electronic device can be used to detect the tilt of the electronic device during transportation. However, this method only provides early warning for tilt events of the electronic device during transportation (for example, vehicle rollover, etc.). When other abnormal events occur during transportation of the electronic device (for example, a sharp increase in temperature caused by a vehicle fire, etc.), the detection system cannot detect and issue early warnings. Compared with these detection systems, in the detection device 10, multiple detection devices are integrated into the environmental detection component, so that the environmental detection component can comprehensively detect multiple detection parameters of the electronic device to ensure the comprehensiveness of the detection of the environment in which the electronic device is located during transportation. In addition, the combination of multiple detection parameters can timely detect and issue early warnings for various abnormal events during the transportation of the electronic device, which is conducive to improving the accuracy of real-time detection and early warning of the electronic device.
[0070] The environment detection component 1010 can be used to detect the electronic device 20 through multiple detection devices, obtain measured values of multiple detection parameters, and send the measured values of the multiple detection parameters to the storage component 1012.
[0071] (2) Alarm component 1011
[0072] In some embodiments, in addition to including a communication unit, the alarm component 1011 may also include an audible alarm and / or an indicator light.
[0073] Optionally, the structure of the detection device 10 can also be as follows Figure 4 As shown, Figure 4 For the fourth structural diagram of the detection device provided in the embodiment of the present application, please refer to Figure 4 ,exist Figure 3 Based on the structure of the detection device 10 shown, the alarm component 1011 may further include a sound alarm and an indicator light.
[0074] The sound alarm can be connected to the control component 1013 and the storage component 1012 respectively. The sound alarm can be used to generate a sound alarm signal under the control of the control component 1013 and store the sound alarm signal through the storage component 1012.
[0075] Exemplarily, the sound alarm may be a buzzer alarm.
[0076] The alarm component can adopt a multi-level alarm mechanism. For example, the sound alarm can generate different sound alarm signals according to different alarm levels.
[0077] For example, assuming that there are a first alarm level, a second alarm level and a third alarm level, and the priority relationship is: first alarm level > second alarm level > third alarm level, then the first alarm level can correspond to a high-frequency sound alarm signal, the second alarm level can correspond to a medium-frequency sound alarm signal, and the third alarm level can correspond to a low-frequency sound alarm signal.
[0078] The indicator light can be connected to the control component 1013 and the storage component 1012 respectively. The indicator light can be used to generate an optical alarm signal under the control of the control component 1013 and store the optical alarm signal through the storage component 1012.
[0079] Illustratively, the indicator light may be a multi-color light emitting diode (LED) lamp.
[0080] The alarm component can adopt a multi-level alarm mechanism. For example, the indicator light can generate light alarm signals of different colors according to different alarm levels.
[0081] For example, assuming that there are a first alarm level, a second alarm level, and a third alarm level, and the priority relationship is: first alarm level > second alarm level > third alarm level, then the first alarm level can correspond to a red light alarm signal, the second alarm level can correspond to an orange light alarm signal, and the third alarm level can correspond to a yellow light alarm signal.
[0082] In the detection device, by providing an audible alarm and / or an indicator light, maintenance personnel can quickly locate the electronic device that issues an alarm, thereby improving the maintenance efficiency of the electronic device.
[0083] (3) Storage component 1012
[0084] In some embodiments, the storage component 1012 may include a non-volatile memory. For example, the non-volatile memory may include but is not limited to an Electrically Erasable Programmable Read-Only Memory (EEPROM).
[0085] Optionally, the structure of the detection device 10 can also be as follows Figure 5 As shown, Figure 5For the fifth structural diagram of the detection device provided in the embodiment of the present application, please refer to Figure 5 ,exist Figure 4 Based on the structure of the detection device 10 shown, the electronic device 20 may include a management controller, and the storage component 1012 may be connected to the management controller.
[0086] Exemplarily, the management controller may be a baseboard management controller (Baseboard Management Controller, BMC).
[0087] The storage component 1012 can be used to obtain device information and health status of the electronic device 20 through the management controller, and store the device information and health status.
[0088] The device information may be used to identify the electronic device. For example, the device information may include the identification and model of the electronic device.
[0089] The health status of an electronic device can be used to reflect whether the hardware, software and overall performance of the electronic device are in a normal, reliable and safe working state.
[0090] Below, taking the electronic device as a server and the management controller as a BMC as an example, a process of the storage component obtaining the device information and health status of the electronic device is described.
[0091] During the server production process, the detection device can be connected to the server. After the server is powered on, the storage component 1012 can read the server's device information and first health status through the BMC and store the device information and first health status. After the server is transported and powered on, the storage component 1012 can also read the server's second health status through the BMC and store the second health status. Based on the first and second health statuses, it can be determined whether the server's hardware, software, and performance have changed during transportation.
[0092] The detection device can read the device information of the electronic device from the management controller of the electronic device through the storage component 1012, so as to more accurately determine the detection thresholds of multiple detection parameters corresponding to the electronic device; by obtaining the health status of the electronic device, it can quickly determine whether the hardware, software and performance of the server have changed during the transportation process, so as to quickly find the electronic device that has failed during the transportation process and perform maintenance on the electronic device.
[0093] The storage component 1012 may also be configured to receive and store the measured values of the multiple detection parameters sent by the environment detection component 1010 in a timestamp order.
[0094] The storage component 1012 may also be configured to receive and store the sound alarm signal sent by the sound alarm in a time stamp order; and / or receive and store the light alarm signal sent by the indicator light in a time stamp order.
[0095] (4) Control component 1013
[0096] The control component 1013 may include a low-power microcontroller.
[0097] The control component 1013 can be used to obtain the measured values of multiple detection parameters through the storage component 1012, obtain the detection thresholds of multiple detection parameters sent by the cloud management system 30 through the communication unit, and generate an alarm event when the measured value of at least one detection parameter is greater than the corresponding detection threshold, and send the alarm event to the cloud management system 30 through the communication unit.
[0098] Optionally, the cloud management system can remotely turn off the alarm signal of the detection device to the electronic device.
[0099] In some embodiments, after sending the alarm event, the control component 1013 is also used to receive a control instruction sent by the cloud management system 30 through the communication unit, and according to the control instruction, control the sound alarm to turn off the sound alarm signal, and / or control the indicator light to turn off the light alarm signal.
[0100] For example, the control component 1013 may generate an audible alarm off signal and / or an optical alarm off signal based on the control instruction. The control component 1013 may send the audible alarm off signal to an audible alarm device, which may disable the audible alarm signal corresponding to the alarm event based on the audible alarm off signal. Alternatively, the control component 1013 may send the optical alarm off signal to an indicator light, which may disable the optical alarm signal corresponding to the alarm event based on the optical alarm off signal.
[0101] In this detection device, the cloud management system can remotely shut down the detection device's alarm signal to electronic equipment without being restricted by geographical location, making the cloud management system's control over the alarm signal more flexible.
[0102] In some embodiments, during the production process of an electronic device, after the server is powered on, the control component 1013 can read the device information and first health status of the electronic device from the storage component 1012, and determine whether there is any abnormality in the electronic device (such as hardware, software, or performance) based on the first health status. If there is an abnormality (such as a hardware failure, software failure, or performance degradation), the alarm component of the detection device can generate an alarm event for the electronic device and send the alarm event to the cloud management system. Users (such as maintenance personnel) can view the alarm event through the cloud management system, determine the cause of the alarm for the electronic device, and make timely corrections to improve the efficiency of handling electronic device alarms.
[0103] After the electronic device is transported and powered on, the control component 1013 can read the device information and second health status of the electronic device from the storage component 1012. Based on the second health status, the control component 1013 can determine whether there is any abnormality in the electronic device (e.g., hardware, software, or performance). If there is an abnormality (e.g., a hardware failure, software failure, or performance degradation), the control component 1013 can generate an alarm event for the electronic device through the detection device alarm component and send the alarm event to the cloud management system. Users (e.g., maintenance personnel) can view the alarm event through the cloud management system, determine the cause of the electronic device alarm, and make timely corrections, thereby improving the efficiency of handling electronic device alarms.
[0104] In this detection device, by setting up a power storage component in the detection device and integrating an environmental detection component (including multiple detection devices), an alarm component (with a multi-level alarm mechanism), a storage component and a control component in the main module, real-time detection of multiple detection parameters of electronic equipment (such as a server) during transportation can be achieved. When it is detected that the measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event is generated and sent to the cloud management system, so that users can obtain alarm events of electronic equipment during transportation in a timely manner through the cloud management system, thereby realizing real-time early warning of electronic equipment by the detection device.
[0105] The detection equipment provided in the embodiment of the present application can accurately locate electronic equipment by integrating a positioning module in the environmental detection component, thereby avoiding abnormal situations such as path deviation of electronic equipment during transportation, resulting in loss of electronic equipment, and integrating a humidity and temperature sensor, an air pressure sensor and a tilt and vibration sensor in the environmental detection component to realize composite detection and analysis of various environmental factors such as temperature, humidity, air pressure, tilt state and vibration state during the transportation of electronic equipment, which is conducive to expanding the detection range of the detection equipment for electronic equipment, so that the detection equipment can detect various environmental out-of-control situations of electronic equipment; by setting a power storage component in the power supply module, it is conducive to improving the battery life of the detection equipment, so that the detection equipment can flexibly adapt to various detection scenarios of electronic equipment, and improve the flexibility of electronic equipment detection; through communication between the detection equipment and the cloud management system, real-time processing of alarm events of electronic equipment can be realized, so that users can quickly discover various abnormal situations during the transportation of electronic equipment and deal with them in time, which is conducive to ensuring the transportation safety of electronic equipment.
[0106] The present application embodiment also provides a detection method, which can be performed by the above detection device 10. Figure 6 , the detection method is described.
[0107] Figure 6 This is a flow chart of a detection method provided in the embodiment of this application. Figure 6 , the detection method may include the following steps:
[0108] S601: Obtain measured values of multiple detection parameters of the electronic device during transportation, and obtain detection thresholds corresponding to the multiple detection parameters sent by the cloud management system.
[0109] like Figure 3 As shown, the detection device can detect the electronic device through multiple detection devices in the environmental detection component to obtain actual measured values of multiple detection parameters.
[0110] It should be noted that the specific process of obtaining the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system will be described in Figure 7 The details are described in the examples.
[0111] S602: If the measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device is generated.
[0112] The measured value of at least one detection parameter is greater than the corresponding detection threshold value, which means that the measured value of each detection parameter in the at least one detection parameter is greater than the detection threshold value corresponding to each detection parameter.
[0113] Optionally, the positioning module can be used to detect the position of the electronic device in real time, and it can record the real-time transportation path of the electronic device during transportation and send the real-time transportation path to the storage component; the control component can obtain the preset transportation path sent by the cloud management system through the communication unit, and read the real-time transportation path from the storage component, determine the offset between the real-time transportation path and the preset transportation path, and generate an alarm event after the offset is greater than the offset threshold. When the detection parameter is temperature, humidity, pressure, tilt state or vibration state, the process of obtaining the measured value and detection threshold of each detection parameter, and comparing the measured value and detection threshold of each detection parameter to determine whether to generate an alarm event can refer to the above process and will not be repeated here.
[0114] In some embodiments, the cloud management system can identify inefficient paths in the transportation of electronic devices and optimize the transportation network of electronic devices by analyzing historical path data. The transportation network can be composed of preset transportation paths for multiple electronic devices.
[0115] It should be noted that the specific process of generating alarm events for electronic devices will be described in Figure 7 The details are described in the examples.
[0116] S602: Send an alarm event to the cloud management system.
[0117] Accordingly, the cloud management system can receive alarm events of electronic devices during transportation sent by the detection equipment.
[0118] It is understandable that the electronic device may include at least one alarm event during transportation, and the detection device may send the at least one alarm event to the cloud management system.
[0119] The detection method provided in the embodiment of the present application is a detection device that can perform real-time detection on multiple detection parameters of electronic devices during transportation. When the measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event is generated and sent to the cloud management system, thereby realizing real-time detection and early warning of electronic devices during transportation, so that users (for example, maintenance personnel) can obtain alarm events of electronic devices during transportation in a timely manner through the cloud management system, thereby realizing real-time early warning of electronic devices, which is beneficial to ensuring the transportation safety of electronic devices.
[0120] The detection method can also be interactively executed by the above detection device 10 and the cloud management system 30. Figure 7 , the detection method is described.
[0121] Figure 7 This is a flow chart of another detection method provided in the embodiment of this application. Figure 7, the detection method may include the following steps:
[0122] S701: A detection device obtains device information of an electronic device.
[0123] Wherein, the detection device is connected to the electronic device.
[0124] like Figure 5 As shown, the detection device can obtain the device information of the electronic device from the management controller of the electronic device through the storage component and store the device information. The device information can be used to identify the electronic device. For example, the device information can include the identification and model of the electronic device.
[0125] S702. The electronic device sends device information to the cloud management system.
[0126] Accordingly, the cloud management system can receive the device information of the electronic device sent by the detection device.
[0127] like Figure 5 As shown, the detection device can obtain the device information of the electronic device from the storage component through the control component, and send the device information to the cloud management system through the communication unit.
[0128] S703: The cloud management system determines detection thresholds of multiple detection parameters corresponding to the electronic device based on the device information.
[0129] The multiple environmental detection parameters may include, but are not limited to, temperature, humidity, pressure, tilt state, vibration state, and location of the electronic device.
[0130] In some embodiments, a corresponding relationship may be stored in the cloud management system, which may include multiple device information and detection thresholds of multiple detection parameters corresponding to each device information; the cloud management system may determine the detection thresholds of multiple detection parameters corresponding to the electronic device based on the corresponding relationship and the device information of the electronic device.
[0131] In this method, the detection device can communicate and interact with the cloud management system to configure more accurate detection thresholds of multiple parameters for the electronic device based on the device information of the electronic device, so that the detection device can more accurately issue warnings of alarm events based on the detection thresholds of the multiple detection parameters and the actual measured values of the multiple detection parameters of the electronic device during transportation, which is conducive to improving the accuracy of warnings of alarm events.
[0132] S704: The cloud management system sends detection thresholds of multiple detection parameters to the detection device.
[0133] Accordingly, the detection device may receive detection thresholds of multiple detection parameters sent by the cloud management system, and the detection thresholds of the multiple detection parameters may be determined based on the device information.
[0134] S705: The detection device obtains measured values of multiple detection parameters of the electronic device during transportation. If the measured value of at least one detection parameter is greater than a corresponding detection threshold, an alarm event of the electronic device is generated.
[0135] In some embodiments, the detection device (or a control component in the detection device) may generate an alarm event for the electronic device by performing the following steps when the measured value of at least one detection parameter is greater than a corresponding detection threshold:
[0136] Step 1: Determine a target alarm level based on a measured value of at least one detection parameter and a corresponding detection threshold.
[0137] Each detection parameter may correspond to at least one detection threshold corresponding to at least one alarm level.
[0138] For example, for any detection parameter, the relationship between the measured value of the detection parameter, the detection threshold, and the alarm level can be shown in Table 1. It should be noted that the data in Table 1 is only used to exemplify the relationship between the measured value of the detection parameter, the detection threshold, and the alarm level, and does not limit the relationship between the measured value of the detection parameter, the detection threshold, and the alarm level. In some other embodiments, the relationship between the measured value of the detection parameter and the detection threshold, as well as the types of alarm levels, can be more or less than those shown in Table 1.
[0139] Table 1
[0140]
[0141] For example, as shown in Table 1, if the measured value of detection parameter 1 is greater than the first detection threshold, the target alarm level corresponding to detection parameter 1 is the first alarm level.
[0142] Step 2: Determine the alarm signal of the electronic device according to the mapping relationship and the target alarm level.
[0143] The mapping relationship may include multiple alarm levels and an alarm signal corresponding to each alarm level. The alarm signal may include an audible alarm signal and / or an optical alarm signal. The multiple alarm levels may include a target alarm level.
[0144] For example, the correspondence between the alarm level, the sound alarm signal, and the light alarm signal may be as shown in Table 2. It should be noted that the data in Table 2 is only used to exemplify the correspondence between the alarm level, the sound alarm signal, and the light alarm signal, and does not limit the correspondence between the alarm level, the sound alarm signal, and the light alarm signal. In some other embodiments, the types of alarm levels, the types of sound alarm signals, and the types of light alarm signals may be more or less than those shown in Table 2.
[0145] Table 2
[0146]
[0147] For example, as shown in Table 2, if the target alarm level is the first alarm level, the sound alarm of the detection device emits a high-frequency sound alarm signal, and the indicator light emits a red light alarm signal.
[0148] Step 3: Generate an alarm event based on the target alarm level, the alarm signal of the electronic equipment, and the detection data.
[0149] The detection data includes the measured values of multiple detection parameters.
[0150] Optionally, the detection data may further include detection thresholds of multiple detection parameters, and comparison results between the measured values of each detection parameter and the detection thresholds.
[0151] Optionally, the detection device can also synchronize the data of the electronic device stored in the storage component to the cloud management system in real time, so that in the event that the detection device fails and the data stored in the storage component is lost, users (such as maintenance personnel) can still locate the fault of the electronic device in a timely manner based on the data of the electronic device stored in the cloud management system.
[0152] In this method, a multi-level alarm mechanism can be set to determine a more accurate target alarm level for the electronic device based on the measured value of at least one detection parameter and the detection threshold. Maintenance personnel can then perform corresponding maintenance measures based on the target alarm level in the alarm event. For example, if the target alarm level is high, it indicates that the electronic device may have a more serious abnormality during transportation (for example, fire or rollover, etc.). The maintenance personnel can quickly contact the transportation personnel of the electronic device to promptly perform maintenance on the electronic device and reduce transportation losses of the electronic device. If the target alarm level is low, it indicates that the electronic device may have an abnormality during transportation (for example, tilting or vibration of the electronic device caused by bumps). The maintenance personnel can quickly contact the transportation personnel of the electronic device to determine whether the electronic device has a serious abnormality such as rollover, thereby ensuring the transportation safety of the electronic device.
[0153] S706: The detection device sends an alarm event to the cloud management system.
[0154] Accordingly, the cloud management system can receive alarm events of electronic devices during transportation sent by the detection equipment, where the alarm events are determined based on detection thresholds of multiple detection parameters.
[0155] It is understandable that the electronic device may include at least one alarm event during transportation, and the detection device may send the at least one alarm event to the cloud management system.
[0156] Optionally, after sending the alarm event, the cloud management system may further perform at least one of steps S707 to S709 as shown below:
[0157] S707: The cloud management system sends a control instruction to the detection device.
[0158] Accordingly, the detection device may receive a control instruction sent by the cloud management system, which may be used to instruct the detection device to turn off an alarm signal to the electronic device. The alarm signal may include an audible alarm signal and / or an optical alarm signal.
[0159] S708. The cloud management system displays an alarm event.
[0160] For example, the target website provided by the cloud management system can be used to display the transportation data of the electronic device during transportation. This transportation data may include alarm events of the electronic device, device information, and transportation vehicles. Maintenance personnel of the electronic device can access the target website through a browser on a terminal to view the transportation data of the electronic device during transportation, and send control instructions to the detection device through the target website to cancel the alarm signal of the electronic device in the detection device, etc.
[0161] In some embodiments, the target website provided by the cloud management system can also display the status of multiple vehicles used to transport electronic equipment (such as detecting more than 200 vehicles at the same time) to facilitate maintenance personnel to quickly locate vehicles with higher alarm levels.
[0162] In some embodiments, the cloud management system can also provide a remote diagnosis function, based on which maintenance personnel can diagnose and analyze abnormal conditions of electronic equipment to reduce the number of on-site inspections by maintenance personnel and reduce operation and maintenance costs.
[0163] S709. The cloud management system generates a transportation safety report of the electronic device based on the alarm event.
[0164] After the electronic device is transported, a transport safety report can be generated based on at least one alarm event generated by the electronic device during transport. This transport safety report can be used to indicate whether the electronic device was safe during transport, facilitating subsequent maintenance of the electronic device.
[0165] In the detection method provided in the embodiment of the present application, the detection device can send the device information of the electronic device to the cloud management system, so that the cloud management system can send the detection thresholds of multiple detection parameters adapted by the electronic device to the detection device, which is conducive to ensuring the accuracy of the detection device triggering the alarm event and avoiding false alarms; the detection device can perform real-time detection of multiple detection parameters of the electronic device during transportation, and when the measured value of at least one detection parameter is greater than the corresponding detection threshold, generate an alarm event and send the alarm event to the cloud management system, so that users (for example, maintenance personnel) can obtain the alarm events of the electronic device during transportation in a timely manner based on the cloud management system, thereby achieving real-time early warning of the electronic device, which is conducive to ensuring the transportation safety of the electronic device. The cloud management system can also send a control instruction to the detection device to turn off the alarm signal of the detection device to the electronic device, and the cloud management system can also display the alarm event or generate a transportation safety report of the electronic device based on the alarm event, so that the user can understand the various alarms during the transportation of the electronic device and facilitate subsequent maintenance of the electronic device.
[0166] Figure 8 A schematic diagram of the structure of a detection device provided in an embodiment of the present application is shown in FIG. Figure 8 As shown, the detection device 800 includes:
[0167] The transceiver module 801 is used to obtain the measured values of multiple detection parameters of the electronic device during transportation, and to obtain the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system;
[0168] The processing module 802 is configured to generate an alarm event for the electronic device if the measured value of at least one detection parameter is greater than a corresponding detection threshold;
[0169] The transceiver module 801 is also used to send alarm events to the cloud management system.
[0170] In one implementation, the transceiver module 801 is specifically configured to:
[0171] Obtain device information of electronic devices;
[0172] Send device information to the cloud management system;
[0173] Receive detection thresholds of multiple detection parameters sent by the cloud management system, where the detection thresholds of the multiple detection parameters are determined based on device information.
[0174] In one implementation, the processing module 802 is specifically configured to:
[0175] determining a target alarm level based on a measured value of at least one detection parameter and a corresponding detection threshold;
[0176] Determining an alarm signal for the electronic device according to the mapping relationship and the target alarm level, the mapping relationship including multiple alarm levels and an alarm signal corresponding to each alarm level, the alarm signal including an audible alarm signal and / or an optical alarm signal, and the multiple alarm levels including the target alarm level;
[0177] An alarm event is generated based on the target alarm level, as well as the alarm signal and detection data of the electronic equipment. The detection data includes the measured values of multiple detection parameters.
[0178] For the description of the features in the embodiment corresponding to the detection device, please refer to the relevant description of the embodiment corresponding to the detection method, and no further details will be given here.
[0179] An embodiment of the present application further provides a computer-readable storage medium, in which a computer program is stored, wherein the computer program is configured to execute the steps of any of the above detection method embodiments when run.
[0180] In an exemplary embodiment, the computer-readable storage medium may include, but is not limited to, various media that can store computer programs, such as a USB flash drive, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk, or an optical disk.
[0181] An embodiment of the present application further provides a computer program product, which includes a computer program. When the computer program is executed by a processor, the steps in any one of the above detection method embodiments are implemented.
[0182] An embodiment of the present application further provides another computer program product, including a non-volatile computer-readable storage medium, wherein the non-volatile computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps in any of the above-mentioned detection method embodiments are implemented.
[0183] Professionals may further appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of the two. In order to clearly illustrate the interchangeability of hardware and software, the above description has generally described the components and steps of each example according to their functions. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professionals and technicians may use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.
[0184] The above is a detailed introduction to a detection device, method and storage medium provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core ideas of the present application. It should be pointed out that for ordinary technicians in this technical field, without departing from the principles of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the scope of protection of the claims of the present application.
Claims
1. A detection device, characterized in that: It includes a power supply module and a main module, wherein the power supply module includes a power storage component, wherein: The power supply module is connected to the main module, and the power supply module and the main module are also respectively used to connect to electronic devices, and the main module is also used to communicate with the cloud management system; The power supply module is used to supply power to the main module through the power storage component after the electronic device is powered off, and to supply power to the main module and charge the power storage component based on the power input from the electronic device after the electronic device is powered on; The main module is used to obtain the actual measured values of multiple detection parameters of the electronic device during transportation, and the detection thresholds corresponding to the multiple detection parameters sent by the cloud management system. If the actual measured value of at least one detection parameter is greater than the corresponding detection threshold, an alarm event of the electronic device is generated and the alarm event is sent to the cloud management system.
2. The detection device according to claim 1, characterized in that The main module includes an environment detection component, a control component, an alarm component and a storage component. The alarm component includes a communication unit, which is used to communicate with the cloud management system. The storage component is connected to the environment detection component, the control component, the alarm component and the electronic device respectively, and the control component is also connected to the alarm component; The control component is used to obtain the measured values of the multiple detection parameters through the storage component, obtain the detection thresholds of the multiple detection parameters sent by the cloud management system through the communication unit, and generate the alarm event when the measured value of at least one detection parameter is greater than the corresponding detection threshold, and send the alarm event to the cloud management system through the communication unit.
3. The detection device according to claim 2, characterized in that The electronic device includes a management controller, and the storage component is connected to the management controller; The storage component is used to obtain device information and health status of the electronic device through the management controller, and store the device information and the health status; The control component is specifically used to read the device information from the storage component, and send the device information to the cloud management system through the communication unit, and receive the detection thresholds of the multiple detection parameters sent by the cloud management system through the communication unit, where the detection thresholds of the multiple detection parameters are determined based on the device information.
4. The detection device according to claim 2 or 3, characterized in that: The environment detection assembly includes a plurality of detection devices, including: a humidity temperature sensor for detecting the temperature and humidity of the electronic device, an air pressure sensor for detecting the pressure of the electronic device, a tilt and vibration sensor for detecting the tilt state and vibration state of the electronic device, and a positioning module for detecting the position of the electronic device; The environment detection component is used to detect the electronic device through the multiple detection devices, obtain the measured values of the multiple detection parameters, and send the measured values of the multiple detection parameters to the storage component; The storage component is used to store the measured values of the multiple detection parameters.
5. The detection device according to claim 2 or 3, characterized in that: The alarm component also includes an audible alarm and / or an indicator light, wherein: The sound alarm is connected to the control component and the storage component respectively, and is used to generate a sound alarm signal under the control of the control component and store the sound alarm signal through the storage component; or, The indicator lights are connected to the control component and the storage component respectively. The indicator lights are used to generate an optical alarm signal under the control of the control component and store the optical alarm signal through the storage component.
6. The detection device according to claim 5, characterized in that After sending the alarm event, the control component is also used to receive a control instruction sent by the cloud management system through the communication unit, and according to the control instruction, control the sound alarm to turn off the sound alarm signal, and / or control the indicator light to turn off the light alarm signal.
7. A detection method, characterized in that: include: Obtaining measured values of multiple detection parameters of the electronic device during transportation, and obtaining detection thresholds corresponding to the multiple detection parameters sent by the cloud management system; If the measured value of at least one detection parameter is greater than the corresponding detection threshold, generating an alarm event for the electronic device; Send the alarm event to the cloud management system.
8. The method according to claim 7, characterized in that Obtaining detection thresholds corresponding to the multiple detection parameters sent by the cloud management system includes: Acquiring device information of the electronic device; Sending the device information to the cloud management system; Receive detection thresholds of the multiple detection parameters sent by the cloud management system, where the detection thresholds of the multiple detection parameters are determined based on the device information.
9. The method according to claim 7 or 8, characterized in that Generating an alarm event of the electronic device includes: determining a target alarm level according to a measured value of the at least one detection parameter and a corresponding detection threshold; Determining an alarm signal for the electronic device according to a mapping relationship and the target alarm level, the mapping relationship including multiple alarm levels and an alarm signal corresponding to each alarm level, the alarm signal including an audible alarm signal and / or an optical alarm signal, and the multiple alarm levels including the target alarm level; The alarm event is generated according to the target alarm level, the alarm signal of the electronic device, and the detection data, where the detection data includes the measured values of the multiple detection parameters.
10. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, wherein the computer program, when executed by a processor, implements the steps of the detection method according to any one of claims 7 to 9.
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