An emergency power supply vehicle operating condition recording system

By installing sensors and server systems on the emergency power vehicle, a real-time monitoring and linkage monitoring topology network is generated, which solves the problem of abnormal status during the operation of the emergency power vehicle, realizes stable power supply and fault early warning for the emergency power vehicle, and improves the operational stability and power supply reliability of the emergency power vehicle.

CN116912970BActive Publication Date: 2026-01-09SHANDONG ELECTRIC TIMES ENERGY TECH CO LTD
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Patent Information

Application Number
CN202310690666.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-12
Publication Date
2026-01-09
Estimated Expiration
2043-06-12

AI Technical Summary

Technical Problem

Existing emergency power vehicles cannot monitor abnormal status in real time during operation, which leads to the inability to meet the power supply needs of electrical equipment and may cause equipment damage.

Method used

The system uses components such as cameras, vibration data acquisition devices, Beidou positioning modules, environmental sensors, and chassis vehicle status sensors to monitor the operating status of emergency power supply vehicles in real time. The system also collects and analyzes the data through a working condition recording server to generate an emergency linkage monitoring topology network, enabling coordinated control of the emergency power supply vehicles.

Benefits of technology

It enables real-time monitoring of the emergency power supply vehicle's operating status, timely detection and adjustment of faults, improves the operational stability and power supply reliability of the emergency power supply vehicle, and reduces the impact on electrical equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an emergency power supply vehicle operation condition recording system, and belongs to the technical field of emergency power supply vehicles, and comprises an emergency power supply vehicle and a condition recording server; the emergency power supply vehicle collects and stores peripheral video image information, vibration information, position information, temperature and humidity information, vehicle speed and attitude information based on a vehicle end processing terminal, collects and records working time and working duration; the emergency power supply vehicle uploads the above information to the condition recording server, and the condition recording server saves the received information. The application can record the operation information of the emergency power supply vehicle for the power equipment, timely find the operation state of the emergency power supply vehicle, make timely adjustment when faults occur or the emergency power supply vehicle cannot meet the emergency power supply requirements, and meet the use requirements. The application can also reduce the influence of the faults of the emergency power supply vehicle on the power equipment according to the regions, and improve the operation stability of the emergency power supply vehicle.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of emergency power supply vehicles, in particular to an emergency power supply vehicle operating condition recording system. BACKGROUND

[0002] With the rapid development of social economy, electric equipment has been widely used in production and life to meet the needs of users, which also makes users have higher requirements for the reliability of power supply. If power failure or power supply failure occurs, an area cannot be powered, which requires an emergency power supply vehicle to temporarily supply power. In this way, the power generation of the emergency power supply vehicle plays an important role. As an important method of power guarantee, the emergency power supply vehicle can also play an important role in major holidays, important places, various natural disasters, power failure repair, line fault power failure repair, effectively shorten the user power failure time, reduce the impact of power failure, and improve the reliability of power supply and power generation.

[0003] At present, there are various emergency power supply vehicles. Some emergency power supply vehicles use batteries as energy storage carriers to realize emergency power supply function and are suitable for various scenes. Some emergency power supply vehicles have power supply vehicle diesel generator sets to generate power to meet the power supply needs.

[0004] For the emergency power supply vehicle in the prior art, it is arranged to output power to the power consumption site according to actual needs, and there is no emergency power supply vehicle that can monitor whether the state of the emergency power supply vehicle is abnormal in real time, and whether the output current and voltage of the emergency power supply vehicle meet the power consumption equipment. If the emergency power supply vehicle fails to be discovered in time during operation, it will cause the site to be unable to supply power normally, and it may also cause damage to the emergency power supply vehicle. Moreover, if the emergency power supply vehicle fails to match the power supply needs of the power consumption equipment, the emergency power consumption needs cannot be met, which brings inconvenience to the site power consumption. SUMMARY

[0005] The present application provides an emergency power supply vehicle operating condition recording system, which can record the data of the emergency power supply vehicle during operation, ensure that the emergency power supply vehicle is in a reasonable state, and ensure stable operation of the emergency power supply vehicle.

[0006] The system comprises an emergency power supply vehicle and a working condition recording server.

[0007] The emergency power supply vehicle is provided with a camera, a vibration data collector, a Beidou positioning module, an environment sensor module, a chassis state sensor and a vehicle end processing terminal.

[0008] The camera is used to take the peripheral video image information of the emergency power supply vehicle.

[0009] The vibration collector is used to collect the vibration information of the emergency power supply vehicle.

[0010] The Beidou positioning module is used for positioning the emergency power supply vehicle to obtain position information;

[0011] The environmental sensor module is used for sensing the temperature and humidity information inside the emergency power supply vehicle;

[0012] The chassis vehicle state sensor is used for monitoring the speed and attitude information of the chassis vehicle;

[0013] The emergency power supply vehicle collects and stores the peripheral video image information, vibration information, position information, temperature and humidity information, speed and attitude information based on the vehicle end processing terminal, and also collects the output voltage, output current and frequency information of the emergency power supply vehicle, and records the working time and working time length.

[0014] The emergency power supply vehicle uploads the above information to the working condition recording server, and the working condition recording server saves the received information and displays it according to the user's control instructions.

[0015] Preferably, the working condition recording server sends an emergency power output mode for the target power consumption device to the emergency power supply vehicle; the emergency power supply vehicle acquires the running data of the power consumption device and the corresponding emergency power output mode, and supplies power to the power consumption device based on the emergency power output mode.

[0016] Preferably, the working condition recording server adds emergency power supply vehicle identification information corresponding to the emergency power output mode in each emergency power output mode; after the emergency power supply vehicle receives the emergency power output mode sent by the working condition recording server, the identification information of the emergency power output mode is matched with the emergency power supply vehicle to determine the emergency power output mode that the current emergency power supply vehicle can execute, and the matched power consumption device of the determined emergency power output mode is matched and stored.

[0017] Preferably, the working condition recording server receives the output information of the emergency power supply vehicle in real time, and alarms when any of the output voltage, output current and frequency information exceeds the threshold value.

[0018] Preferably, the working condition recording server constructs an emergency linkage monitoring topology network of the emergency power supply vehicle based on the emergency power supply area; and performs linkage monitoring on each emergency power supply vehicle based on the emergency linkage monitoring topology network.

[0019] Preferably, the working condition recording server starts from the network emergency power supply vehicle node corresponding to the target emergency power supply vehicle in the emergency linkage monitoring topology network, and sequentially traverses the associated emergency power supply vehicles having an association relationship with the target emergency power supply vehicle.

[0020] Then, the linkage attribute between the target emergency power supply vehicle and each associated emergency power supply vehicle is obtained according to the entity edge between the target emergency power supply vehicle and each associated emergency power supply vehicle, and the associated emergency power supply vehicle having the linkage emergency power output mode with the target emergency power supply vehicle is obtained according to the linkage attribute between the target emergency power supply vehicle and each associated emergency power supply vehicle to join the linkage sequence.

[0021] Based on the linkage sequence, each linkage emergency power supply vehicle is monitored in turn according to the linkage emergency power output mode between the target emergency power supply vehicle and each associated emergency power supply vehicle to perform linkage based on the corresponding linkage emergency power output mode.

[0022] Preferably, the working condition recording server determines the linkage sequence of the emergency power supply vehicle from the historical emergency power output mode;

[0023] The emergency power output mode preset in each emergency power supply vehicle is obtained, and the target associated emergency power linkage output sequence of each emergency power supply vehicle is determined from the historical emergency power output mode sequence according to the linkage correlation quantization index of each historical emergency power output mode and the emergency power linkage monitoring information base.

[0024] Preferably, the working condition recording server first determines the feature vector of the historical emergency power output mode of the emergency power supply vehicle, and determines the linkage correlation quantization index of the historical emergency power output mode and the emergency power linkage monitoring information base according to the feature vector of the historical emergency power output mode; the historical emergency power output mode whose linkage correlation quantization index reaches a preset correlation quantization index threshold is determined to obtain the target associated emergency power linkage output sequence of each emergency power supply vehicle;

[0025] The linkage correlation attribute of the emergency linkage monitoring topology network is obtained according to the target associated action sequence of each emergency power supply vehicle.

[0026] Preferably, the working condition recording server generates the operation feature vector of each emergency power supply vehicle according to the corresponding associated emergency power linkage output sequence of the emergency power supply vehicle and the linkage correlation quantization index of each associated emergency power linkage output sequence category;

[0027] The operation feature vector includes the relevant operation data of each emergency power supply vehicle within a set historical operation time for vector conversion, and the correlation attribute between each emergency power supply vehicle is obtained through the respective operation feature vectors of different emergency power supply vehicles, the correlation attribute is expressed through the object edge between the corresponding network emergency power supply vehicle nodes in the emergency linkage monitoring topology network, and the correlation attribute between each emergency power supply vehicle is determined according to the operation feature vector of each emergency power supply vehicle.

[0028] Preferably, the working condition recording server takes each emergency power supply vehicle as a network emergency power supply vehicle node, and generates an emergency linkage monitoring topological network for each emergency power supply vehicle according to the association attributes between the emergency power supply vehicles.

[0029] From the above technical solutions, the present application has the following advantages:

[0030] The present application can record the running information of the emergency power supply vehicle for the power equipment, discover the running state of the emergency power supply vehicle in time, such as failure or inability to meet the emergency power requirement, and make timely adjustment to meet the use requirement. It can also reduce the impact of emergency power supply vehicle failure on the power equipment by area, and improve the running stability of the emergency power supply vehicle.

[0031] The present application takes each emergency power supply vehicle as a network emergency power supply vehicle node, and generates an emergency linkage monitoring topological network for each emergency power supply vehicle according to the association attributes between the emergency power supply vehicles. It can also be that each emergency power supply vehicle and each associated emergency power linkage output sequence category are network emergency power supply vehicle nodes, and an emergency linkage monitoring topological network for each emergency power supply vehicle is generated according to the association attributes between the emergency power supply vehicles, the association attributes of each emergency power supply vehicle and each associated emergency power linkage output sequence category, and the association attributes between each associated emergency power linkage output sequence category. In this way, in the emergency linkage monitoring topological network formed, the monitoring and running process recording of the emergency power supply vehicle in the emergency power supply vehicle running working condition recording process can be more competitive and more in line with the needs of the power equipment on site, which can further improve the stability of emergency power supply, improve the quality and efficiency of emergency power supply, discover safety hazards of emergency power supply in time and give early warning to improve the management level and efficiency of emergency power supply, control the risk of emergency power supply process, and realize the timeliness and scientificity of emergency power supply whole process supervision, management and control. BRIEF DESCRIPTION OF DRAWINGS

[0032] In order to more clearly illustrate the technical solutions of the present application, the drawings needed in the description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0033] Figure 1 The schematic diagram of the emergency power supply vehicle running working condition recording system. DETAILED DESCRIPTION

[0034] Figure 1The provided diagram of the emergency power supply vehicle operating condition recording system only schematically illustrates the basic concept of the present application, and thus only the modules related to the present application are shown in the diagram, rather than the number and functions of the modules when actually implemented. The functions, number, and roles of the modules when actually implemented can be arbitrarily changed, and the functions and purposes of the modules can also be more complex.

[0035] The emergency power supply vehicle operating condition recording system includes both hardware-level technology and software-level technology. The basic technology of the emergency power supply vehicle operating condition recording system generally includes technologies such as sensors, special artificial intelligence chips, cloud computing, distributed storage, big data processing technology, operation / interaction system, and mechatronics. The software technology of the emergency power supply vehicle operating condition recording system mainly includes computer vision technology, speech processing technology, natural language processing technology, and machine learning / deep learning. The emergency power supply vehicle operating condition recording system also has a machine learning function, in which the machine learning and deep learning in the method of the present application generally include artificial neural network, belief network, reinforcement learning, transfer learning, inductive learning, and imitation learning technologies.

[0036] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.

[0037] The emergency power supply vehicle operating condition recording system includes an emergency power supply vehicle and a condition recording server.

[0038] A camera, a vibration data collector, a Beidou positioning module, an environment sensor module, a chassis state sensor, and a vehicle terminal are installed on the emergency power supply vehicle. The camera is used to capture peripheral video image information of the emergency power supply vehicle. The vibration collector is used to collect vibration information of the emergency power supply vehicle. The Beidou positioning module is used to position the emergency power supply vehicle to obtain position information. The environment sensor module is used to sense temperature and humidity information inside the emergency power supply vehicle. The chassis state sensor is used to monitor the speed and attitude information of the chassis. The emergency power supply vehicle collects and stores the peripheral video image information, vibration information, position information, temperature and humidity information, speed and attitude information based on the vehicle terminal. The emergency power supply vehicle also collects output voltage, output current, and frequency information of the emergency power supply vehicle, records working time and working duration, and uploads the above information to the condition recording server. The condition recording server saves the received information and displays the information according to the user's control instructions.

[0039] Meanwhile, the working condition recording server receives output information of the emergency power supply vehicle in real time, and when any of output voltage, output current and frequency information exceeds a threshold value, an alarm is given.

[0040] Therefore, the application can record the operation information of the emergency power supply vehicle for the electrical equipment, find the operation state of the emergency power supply vehicle in time, such as failure or inability to meet the emergency power requirement, and make timely adjustment to meet the use requirement. The influence of the emergency power supply vehicle failure on the electrical equipment can be reduced, and the operation stability of the emergency power supply vehicle can be improved.

[0041] The emergency power output mode provided by the application can be executed by the emergency power supply vehicle, the emergency power output period can have multiple output functions, the emergency power supply vehicle can output emergency power by receiving the emergency power control instruction, and the emergency power output data is also displayed. Meanwhile, the emergency power output data can be sent to the handheld terminal of the emergency power control personnel through the working condition recording server, so that the emergency power control personnel can obtain the emergency power output data in real time.

[0042] As an embodiment of the application, the working condition recording server sends an emergency power output mode for the electrical equipment to the emergency power supply vehicle, the emergency power supply vehicle obtains the operation data of the electrical equipment and the corresponding emergency power output mode, and supplies power to the electrical equipment based on the emergency power output mode.

[0043] In an exemplary embodiment, the emergency power output mode is not limited. The emergency power output mode can be pre-stored in the emergency power supply vehicle, or sent to the emergency power supply vehicle by the working condition recording server based on the need. That is, the working condition recording server and the emergency power supply vehicle both have a storage to store data and the emergency power output mode.

[0044] The emergency power output mode can be set by the emergency power control personnel according to the operation condition of the emergency power supply vehicle and various emergency power output data.

[0045] The emergency power supply vehicle sends the operation data to the working condition recording server, the working condition recording server determines the influence parameters of the emergency power output based on the received emergency power output information, generates a corresponding emergency power output mode according to the influence parameters, and meets the power supply requirement.

[0046] In the application, the working condition recording server is in communication connection with multiple emergency power supply vehicles, and different emergency power output modes are configured, and different types of data are communicated during the emergency power output process to meet the use requirement. The emergency power supply vehicle receives at least one emergency power output mode sent by the working condition recording server, and determines the emergency power corresponding to the current emergency power output from the received emergency power output mode.

[0047] The identification information of the emergency power supply vehicle corresponding to the emergency power output mode is added in each emergency power output mode configured by the working condition recording server. When the emergency power supply vehicle receives the emergency power output mode sent by the working condition recording server, the identification information of the emergency power output mode is matched with the emergency power supply vehicle to determine the emergency power output mode that can be executed by the current emergency power supply vehicle, and the matched power consumption equipment of the determined emergency power output mode is matched and stored.

[0048] In the present application, various emergency power output data of the emergency power supply vehicle can be uploaded to the emergency power supply vehicle. Each emergency power supply vehicle can have multiple emergency power output modes. The emergency power output mode can include: output alternating voltage 220v, alternating voltage 380v, direct current voltage 36v, direct current voltage 24v, direct current voltage 12v, etc.

[0049] The emergency power supply vehicle configures the corresponding power consumption equipment according to the emergency power output mode sent by the working condition recording server. Each emergency power supply vehicle supplies power to each power consumption equipment based on the corresponding emergency power output mode.

[0050] In an exemplary embodiment, the working condition recording server can configure the corresponding emergency power output mode according to the function, operating parameter, and other devices associated with the device of the power consumption equipment, and send the emergency power output mode to the corresponding emergency power supply vehicle. The working condition recording server also configures the emergency power output start instruction and sends it to the emergency power supply vehicle. The emergency power supply vehicle obtains the emergency power output start instruction, starts the emergency power output, and uploads the peripheral video image information, vibration information, position information, temperature and humidity information, vehicle speed, attitude information, output voltage, output current, and frequency information in real time.

[0051] In an exemplary embodiment, the working condition recording server can collect the emergency power output data and operating data of all emergency power supply vehicles in the system. Different emergency power supply vehicles can execute the same emergency power output function, or may execute different emergency power output functions. The working condition recording server can classify, process, and display the received data, and can also generate corresponding emergency power output modes based on actual needs to improve the emergency power output function.

[0052] Further, as a refinement and expansion of the above embodiment, in order to completely describe the specific implementation process in the present embodiment, the emergency power supply vehicle running working condition recording system comprises:

[0053] The working condition recording server obtains the emergency running information of each emergency power supply vehicle in the emergency power supply area.

[0054] The working condition recording server constructs an emergency linkage monitoring topology network of the emergency power supply vehicle based on the emergency power supply area.

[0055] The emergency linkage monitoring topology network can be a data expression structure based on structured data or unstructured data, having a relational graph structure of network entities, a relational network, etc. Each emergency power supply vehicle is a network node, and the entity connection between the emergency power supply vehicles is used to express the relevant relationship between the corresponding network emergency power supply vehicle nodes. The relevant relationship between the emergency power supply vehicles is set for the power equipment, for example, a power outage area involves many power equipment, some important power equipment needs to be powered by the emergency power supply vehicle, and the emergency power output mode is set based on the power equipment, and the power equipment has mutual correlation, which requires mutual correlation between the emergency power supply vehicles.

[0056] In the embodiment of the application, the working condition recording server links and monitors each emergency power supply vehicle based on the emergency linkage monitoring topology network.

[0057] For example, the power supply can be started synchronously, or the voltage and current can be output synchronously, etc. The specific implementation is not limited.

[0058] As an optional implementation, when the working condition recording server monitors a preset linkage action of the emergency power supply vehicle, one or more emergency power supply vehicles having an entity connection relationship with the target emergency power supply vehicle can be obtained from the emergency linkage monitoring topology network.

[0059] According to the association attribute corresponding to the entity connection between the target emergency power supply vehicle and the one or more emergency power supply vehicles, the linkage emergency power supply vehicle meeting the linkage condition with the target emergency power supply vehicle is obtained, and the linkage emergency power supply vehicle is monitored to link according to the linkage action of the target emergency power supply vehicle.

[0060] In the embodiment of the application, the network emergency power supply vehicle node corresponding to the target emergency power supply vehicle in the emergency linkage monitoring topology network is started, and the associated emergency power supply vehicle having an association relationship with the target emergency power supply vehicle is sequentially traversed.

[0061] Then, the linkage attribute between the target emergency power supply vehicle and each associated emergency power supply vehicle is obtained according to the entity connection between the target emergency power supply vehicle and each associated emergency power supply vehicle, and the associated emergency power supply vehicle having the linkage emergency power output mode with the target emergency power supply vehicle is obtained according to the linkage attribute between the target emergency power supply vehicle and each associated emergency power supply vehicle.

[0062] Secondly, based on the linkage sequence, according to the linkage emergency power output mode between the target emergency power supply vehicle and each associated emergency power supply vehicle, each linkage emergency power supply vehicle is sequentially monitored to link based on the corresponding linkage emergency power output mode.

[0063] In this embodiment, the linkage emergency power output mode includes a linkage time emergency power output mode and a linkage logic emergency power output mode. For example, the linkage time emergency power output mode can be the relative relationship between the current linkage action time of each associated emergency power supply vehicle and the target emergency power supply vehicle in the linkage sequence, for example, how long to start linkage after the current linkage action time. That is, the start sequence and the stop sequence are set.

[0064] In an embodiment of the present application, the emergency power supply vehicle operating condition recording system further comprises

[0065] 1) The operating condition recording server determines the linkage sequence of the emergency power supply vehicle from the historical emergency power output mode.

[0066] 2) The operating condition recording server obtains the emergency power output mode preset in each emergency power supply vehicle, and determines the target associated emergency power linkage output sequence of each emergency power supply vehicle from the historical emergency power output mode sequence according to the linkage correlation quantitative index of each historical emergency power output mode and the emergency power linkage monitoring information base.

[0067] The present application can first determine the feature vector of the historical emergency power output mode of the emergency power supply vehicle, determine the linkage correlation quantitative index of each historical emergency power output mode and the emergency power linkage monitoring information base according to the feature vector of the historical emergency power output mode, determine the historical emergency power output mode whose linkage correlation quantitative index reaches the preset correlation quantitative index threshold value, and obtain the target associated emergency power linkage output sequence of each emergency power supply vehicle. In this way, the accuracy of the subsequent linkage monitoring of the emergency power supply vehicle based on the obtained emergency linkage monitoring topology network can be improved, and the application demand of the actual application scene can be better matched.

[0068] 3) According to the target associated action sequence of each emergency power supply vehicle, the linkage correlation attribute of the emergency linkage monitoring topology network is obtained.

[0069] Based on the above content, another alternative 3) embodiment of the present application includes:

[0070] (1) The target associated emergency power linkage output sequence of each emergency power supply vehicle is classified according to different emergency power output modes, and a plurality of emergency power output mode categories and target associated emergency power linkage output sequences corresponding to each associated emergency power linkage output sequence category are obtained. For example, the target associated emergency power linkage output sequence can be classified according to the time domain dimension, spatial dimension, attribute dimension, etc. related to the corresponding action associated emergency power linkage output sequence.

[0071] (2) According to the operation information record of each emergency power vehicle, determine the corresponding associated emergency power linkage output sequence of each emergency power vehicle from the target associated emergency power linkage output sequence corresponding to each associated emergency power linkage output sequence category.

[0072] (3) Determine the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of each emergency power vehicle and each associated emergency power linkage output sequence category.

[0073] In the embodiment of the application, for each emergency power vehicle, the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of the emergency power vehicle and the target associated emergency power linkage output sequence corresponding to each associated emergency power linkage output sequence category can be calculated respectively to obtain the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of each emergency power vehicle and each associated emergency power linkage output sequence category.

[0074] For each emergency power vehicle, the calculation of the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of the emergency power vehicle and the target associated emergency power linkage output sequence corresponding to each associated emergency power linkage output sequence category can include: calculating the linkage association quantitative index of each linkage association action associated emergency power linkage output sequence in the corresponding associated emergency power linkage output sequence of the emergency power vehicle and each target linkage association action associated emergency power linkage output sequence in the target associated emergency power linkage output sequence corresponding to the associated emergency power linkage output sequence category, and taking the index weighting result of the calculated multiple linkage association quantitative indexes as the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of the emergency power vehicle and the target associated emergency power linkage output sequence corresponding to the associated emergency power linkage output sequence category.

[0075] Further, the linkage association quantitative index between the action association emergency power linkage output sequence and the feature difference quantitative index of the feature vector of the action association emergency power linkage output sequence is related.

[0076] The index weighting result can be obtained by weighting calculation of the multiple linkage association quantitative indexes according to the preset weighting emergency power output mode.

[0077] The association attribute between the emergency power vehicles of the application can be determined according to the operation feature vector index between the emergency power vehicles. Further, the linkage monitoring between two emergency power vehicles can be realized according to the corresponding association attribute.

[0078] For each emergency power vehicle, the operation feature vector of each emergency power vehicle is generated according to the linkage association quantitative index of the corresponding associated emergency power linkage output sequence of the emergency power vehicle and each associated emergency power linkage output sequence category.

[0079] In the embodiment, the operation feature vector can include relevant operation data of each emergency power supply vehicle in a set historical operation time, which is vectorized, for example, the relevant operation data can include start information, operation state change information, and termination operation information. In this way, the operation feature vectors corresponding to different emergency power supply vehicles can obtain the association attributes between each emergency power supply vehicle, and the association attributes can be expressed by the object edges between the corresponding network emergency power supply vehicle nodes in the emergency linkage monitoring topology network. According to the operation feature vectors of each emergency power supply vehicle, the association attributes between each emergency power supply vehicle are determined.

[0080] The application takes each emergency power supply vehicle as a network emergency power supply vehicle node, generates an emergency linkage monitoring topology network for each emergency power supply vehicle according to the association attributes between each emergency power supply vehicle.

[0081] Therefore, on the basis of the above, the emergency linkage monitoring topology network for each emergency power supply vehicle can be generated according to the association attributes between each emergency power supply vehicle obtained from the operation feature vectors corresponding to each emergency power supply vehicle, and each emergency power supply vehicle is taken as a network emergency power supply vehicle node, and the emergency linkage monitoring topology network for each emergency power supply vehicle is generated according to the association attributes between each network entity.

[0082] The application takes each emergency power supply vehicle as a network emergency power supply vehicle node, generates an emergency linkage monitoring topology network for each emergency power supply vehicle according to the association attributes between each emergency power supply vehicle, and can also be: each emergency power supply vehicle and each associated emergency power supply linkage output sequence category are taken as network emergency power supply vehicle nodes, and the emergency linkage monitoring topology network for each emergency power supply vehicle is generated according to the association attributes between each emergency power supply vehicle, the association attributes between each emergency power supply vehicle and each associated emergency power supply linkage output sequence category, and the association attributes between each associated emergency power supply linkage output sequence category. In this way, in the emergency linkage monitoring topology network formed, the monitoring and operation process record of the emergency power supply vehicle during the emergency power supply vehicle operation condition recording process can be more competitive and more in line with the demand of on-site power consumption, which can further improve the stability of emergency power supply. Improve the quality and efficiency of emergency power supply, timely discover the safety hazards of emergency power supply and give early warning, improve the management level and efficiency of emergency power supply, control the risk of emergency power supply process, so as to realize the timeliness and scientificity of emergency power supply whole process supervision, management and control.

[0083] The units and algorithm steps of each example described in the embodiments disclosed in the emergency power supply vehicle operating condition recording system can be realized by electronic hardware, computer software or a combination of both. In order to clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been described in the above description in general terms. Whether the functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present application.

[0084] The block diagram of the emergency power supply vehicle operating condition recording system illustrates the architecture, functions and operations of possible implementations of the devices, methods and computer program products according to various embodiments of the present disclosure. In this regard, each block in the flowchart or block diagram can represent a module, a program segment, or a portion of code that contains one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions noted in the blocks can occur in different orders than those noted in the figure. For example, two blocks that are shown in succession can actually be executed substantially in parallel, and they can sometimes be executed in reverse order, depending on the involved functions. It should also be noted that each block in the block diagram and / or flowchart, and the combination of blocks in the block diagram and / or flowchart, can be realized by a dedicated hardware-based system that performs the specified functions or operations, or can be realized by a combination of dedicated hardware and computer instructions.

[0085] In the emergency power supply vehicle operating condition recording system, it should be understood that the disclosed system, device and method can be implemented in other ways. For example, the device embodiments described above are only illustrative, for example, the division of the units is only a logical function division, and actual implementation can have another division, for example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the displayed or discussed ones can be indirect coupling or communication connection through some interfaces, devices or units, and can also be electrical, mechanical or other form of connection.

[0086] Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. In the following description, numerous specific details are provided to provide a thorough understanding of embodiments of the application. One skilled in the relevant art will recognize, however, that the

[0087] The foregoing description of the disclosed embodiments enables a person skilled in the art to make or use the application. Modifications of these embodiments will occur to persons of skill in the art, and, although aspects of this application are recited specifically in this disclosure, they are not to be construed as prohibiting the application of the same principles or equivalents thereof. Therefore, the scope of the application is not to be limited to the specific embodiments illustrated and described. Rather, the scope of the application is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures.

Claims

1. An emergency power supply vehicle operation status recording system, characterized in that, The emergency power supply vehicle and a working condition recording server are included. The emergency power supply vehicle is installed with a camera, a vibration data collector, a Beidou positioning module, an environmental sensor module, a chassis state sensor, and a terminal. The camera is used to capture the peripheral video image information of the emergency power supply vehicle. The vibration collector is used to collect the vibration information of the emergency power supply vehicle. The Beidou positioning module is used to position the emergency power supply vehicle to obtain the position information. The environmental sensor module is used to sense the temperature and humidity information inside the emergency power supply vehicle. The chassis state sensor is used to monitor the speed and attitude information of the chassis. The emergency power supply vehicle collects and stores the peripheral video image information, vibration information, position information, temperature and humidity information, speed and attitude information based on the terminal, and collects the output voltage, output current, frequency information of the emergency power supply vehicle, and records the working time and working duration. The emergency power supply vehicle uploads the above information to the working condition recording server, and the working condition recording server saves the received information and displays it according to the user's control instructions. The working condition recording server constructs an emergency linkage monitoring topology network of the emergency power supply vehicle based on the emergency power supply area, and monitors each emergency power supply vehicle based on the emergency linkage monitoring topology network. The working condition recording server starts from the network emergency power supply vehicle node corresponding to the target emergency power supply vehicle in the emergency linkage monitoring topology network, and iterates the associated emergency power supply vehicles associated with the target emergency power supply vehicle. Then, the linkage properties between the target emergency power supply vehicle and each associated emergency power supply vehicle are obtained according to the entity edges between them, and the associated emergency power supply vehicles with linkage emergency power output mode are added to the linkage sequence according to the linkage properties. Based on the linkage sequence, each linkage emergency power supply vehicle is monitored based on the corresponding linkage emergency power output mode in sequence.

2. The emergency power supply vehicle working condition recording system of claim 1, wherein the working condition recording server sends an emergency power output mode to the emergency power supply vehicle; the emergency power supply vehicle obtains the running data of the electrical equipment and the corresponding emergency power output mode, and supplies power to the electrical equipment based on the emergency power output mode.

3. The emergency power supply vehicle working condition recording system of claim 1, wherein the working condition recording server adds emergency power supply vehicle identification information corresponding to the emergency power output mode in each emergency power output mode; when the emergency power supply vehicle receives the emergency power output mode sent by the working condition recording server, the identification information of the emergency power output mode is matched with the emergency power supply vehicle to determine the emergency power output mode that the current emergency power supply vehicle can execute, and the matched electrical equipment of the determined emergency power output mode is stored.

4. The emergency power supply vehicle working condition recording system of claim 1, wherein ​ ​ The working condition recording server receives output information of the emergency power supply vehicle in real time, and performs alarm prompting when any of output voltage, output current and frequency information exceeds a threshold value.

5. The emergency power supply vehicle working condition recording system according to claim 1, characterized in that, The working condition recording server determines the linkage sequence of the emergency power supply vehicle from historical emergency power output modes; The emergency power output mode preset in each emergency power supply vehicle is obtained, and the target correlation emergency power linkage output sequence of each emergency power supply vehicle is determined from the historical emergency power output mode sequence according to the linkage correlation quantitative index of each historical emergency power output mode and the emergency power linkage monitoring information base.

6. The emergency power supply vehicle working condition recording system according to claim 5, characterized in that, The working condition recording server first determines the feature vector of the historical emergency power output mode of the emergency power supply vehicle, and determines the linkage correlation quantitative index of each historical emergency power output mode and the emergency power linkage monitoring information base according to the feature vector of the historical emergency power output mode; the historical emergency power output mode whose linkage correlation quantitative index with the emergency power linkage monitoring information base reaches a preset correlation quantitative index threshold value is determined to obtain the target correlation emergency power linkage output sequence of each emergency power supply vehicle; According to the target correlation action sequence of each emergency power supply vehicle, the linkage correlation attribute of the emergency linkage monitoring topology network is obtained.

7. The emergency power supply vehicle working condition recording system according to claim 6, characterized in that, The working condition recording server generates the operation feature vector of each emergency power supply vehicle according to the corresponding correlation emergency power linkage output sequence of the emergency power supply vehicle and the linkage correlation quantitative index of each correlation emergency power linkage output sequence category; The operation feature vector includes the relevant operation data of each emergency power supply vehicle within a set historical operation time for vector conversion, and the correlation attribute between each emergency power supply vehicle is obtained through the respective operation feature vectors of different emergency power supply vehicles, which is expressed through the object edge between the corresponding network emergency power supply vehicle nodes in the emergency linkage monitoring topology network. According to the operation feature vector of each emergency power supply vehicle, the correlation attribute between each emergency power supply vehicle is determined.

8. The emergency power supply vehicle working condition recording system according to claim 7, characterized in that, The working condition recording server takes each emergency power supply vehicle as a network emergency power supply vehicle node, and generates the emergency linkage monitoring topology network for each emergency power supply vehicle according to the correlation attribute between each emergency power supply vehicle.

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