Power grid operation monitoring device and power grid operation monitoring system

Through the power grid operation monitoring device integrating operation monitoring components, emergency rescue equipment and environmental monitoring components, the problem of inability to comprehensively monitor the power grid operation environment and difficulty in emergency rescue in the existing technology is solved, and convenient and timely emergency response and efficient monitoring functions are achieved.

CN120150353APending Publication Date: 2025-06-13GUANGZHOU POWER SUPPLY BUREAU GUANGDONG POWER GRID CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510275535.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

The existing power grid operation monitoring device cannot fully monitor the various parameters of the power grid operation environment, and it is difficult to take into account convenient and timely emergency rescue.

Method used

A power grid operation monitoring device is designed, integrating operation monitoring components, emergency rescue equipment and environmental monitoring components, and storing various components through the housing cavity of the box body for easy portability and movement; in working state, the components can be installed on the box for monitoring and emergency rescue.

Benefits of technology

It realizes convenient and timely emergency rescue while monitoring the power grid operation, and improves the mobility flexibility and emergency response capabilities of the power grid operation monitoring device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120150353A_ABST
    Figure CN120150353A_ABST
Patent Text Reader

Abstract

The invention discloses a power grid operation monitoring device and a power grid operation monitoring system. The power grid operation monitoring device comprises a box body, a box door mechanism, an operation monitoring assembly and a control assembly. The control end is in communication connection with the driving connection assembly and the sensor. When the box body is in the storage state, the operation monitoring assembly and the emergency rescue equipment can be stored in the box body, and carrying and moving are convenient; when the box body is in the working state, the operation monitoring assembly can be installed on the box body to achieve power grid operation monitoring, and emergency rescue equipment in the box body can be adopted for emergency rescue when an emergency occurs. And convenient and timely emergency rescue is taken into account while power grid operation monitoring is carried out. The box body accommodates all the components, so that the power grid operation monitoring device can be moved conveniently, and the moving flexibility of the power grid operation monitoring device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of power grid monitoring, and in particular to a power grid operation monitoring device and a power grid operation monitoring system. Background Art

[0002] As an important public infrastructure, the power grid plays an important role in ensuring power grid supply, supporting economic and social development, and serving to improve people's livelihood. Power grid construction is divided into various types such as infrastructure construction, relocation and renovation, maintenance, and technical transformation, with the characteristics of numerous points, wide coverage, and complex and changeable environments. The complexity and danger of the operation site have become one of the main constraints on the high-quality development of the power grid. Currently, the monitoring of power grid operations is mainly achieved through power grid operation monitoring devices. Existing power grid operation monitoring devices generally at least have the function of operation monitoring.

[0003] However, the operation environment of the power grid system is complex and full of dangers. Whether it is equipment maintenance in a high-voltage substation or field construction operations in a harsh natural environment on a power line, operators are faced with safety hazards such as electric shock and cardiovascular emergencies caused by high-intensity work, especially cardiac arrest. Currently, when an emergency occurs during power grid operations, such as cardiac arrest or other medical emergencies caused by electric shock, etc., generally, real-time rescue is carried out from emergency rescue devices such as Automatic External Defibrillators (AEDs) fixedly configured near the power grid facilities, or contact the nearest hospital for medical treatment, resulting in low efficiency of emergency rescue.

[0004] Therefore, the existing technology has the technical problems that the power grid operation monitoring device cannot comprehensively and systematically monitor various parameters of the power grid operation environment, and at the same time, it is difficult to take into account convenient and timely emergency rescue. Summary of the Invention

[0005] The present invention provides a power grid operation monitoring device and a power grid operation monitoring system to solve the technical problems existing in the prior art that the power grid operation monitoring device cannot comprehensively monitor the power grid operation environment and at the same time is difficult to take into account convenient and timely emergency rescue.

[0006] The present invention provides a power grid operation monitoring device, including:

[0007] A box body main body, which includes a receiving cavity and an opening communicating with the receiving cavity;

[0008] A box door mechanism, which includes a driving connection component and a box door for opening and closing at the opening, and the box door is controlled by the driving connection component;

[0009] An operation monitoring component, which includes various sensors matching the power grid operation to be monitored;

[0010] A control component, whose control terminals are respectively communicatively connected to the driving connection component and the sensor;

[0011] When the box body is in the accommodating state, the operation monitoring component, the control component and the emergency rescue equipment are accommodated through the accommodating cavity;

[0012] When the box body is in the working state, the operation monitoring component is installed on the box body through a connecting piece to monitor the power grid operation, and the control component supplies power to the operation monitoring component through the operation monitoring power interface on the box body.

[0013] In a further embodiment, the power grid operation monitoring device further includes:

[0014] An environmental monitoring component; the environmental monitoring component is communicatively connected to the control component;

[0015] The environmental monitoring component is used to monitor the environmental parameters during the power grid operation and send the monitored environmental parameters to the control component;

[0016] When the box body is in the accommodating state, the environmental monitoring component is accommodated through the accommodating cavity;

[0017] When the box body is in the working state, the environmental monitoring component is installed on the box body through a connecting piece to monitor the environmental parameters; the control component supplies power to the environmental monitoring component through the environmental monitoring power interface on the box body.

[0018] In a further embodiment, the environmental monitoring component includes a micro-meteorological instrument.

[0019] In a further embodiment, the power grid operation monitoring device further includes:

[0020] A multi-functional tool component; used to provide multi-functional tools for the power grid operation monitoring device; when the box body is in the accommodating state, the multi-functional tool component is accommodated through the accommodating cavity of the box body.

[0021] In a further embodiment, the multi-functional tool includes one or more of the following: a multi-foldable solar photovoltaic panel, an electronic display screen, and a harmful gas detector;

[0022] When the multi-foldable solar photovoltaic panel is in the folded state, the multi-foldable solar photovoltaic panel is stored in the accommodating cavity of the box body;

[0023] When the multi-foldable solar photovoltaic panel is in the unfolded state, the multi-foldable solar photovoltaic panel is installed on the box body and supplies power to the power grid operation monitoring device through the solar DC charging interface;

[0024] When the box body is in the working state, the electronic display screen is installed on the box body through a connecting piece, and the monitoring data of the operation monitoring component is displayed in real time; the control component supplies power to the electronic display screen through the display screen power interface on the box body;

[0025] When the box body is in the working state, the harmful gas detector is installed on the box body through a connecting piece to monitor harmful gases during the power grid operation; the control component supplies power to the harmful gas detector through the detector power interface on the box body.

[0026] In a further embodiment, the operation monitoring component includes a high-definition spherical camera;

[0027] The emergency rescue equipment includes one or more of the following: an automated external defibrillator, a portable medical kit, a pulse oximeter, an infrared thermometer, and an alcohol tester.

[0028] In a further embodiment, the control component includes a gateway host;

[0029] The gateway host is used to send the monitoring data and / or environmental data received by the control component to the remote control platform.

[0030] In a further embodiment, the control component further includes a power adapter and a storage battery;

[0031] The external alternating current is adaptively plugged into the external alternating current charging interface on the box body through the power adapter to supply power to the power grid operation monitoring device;

[0032] The storage battery is used to supply power to the power grid operation monitoring device in the absence of external alternating current.

[0033] In a further embodiment, a pull rod and / or universal wheels are provided on the box body.

[0034] Further, the present invention also provides a power grid operation monitoring system, including the power grid operation monitoring device of the foregoing embodiment. The power grid operation monitoring system further includes a mobile terminal and a remote control platform;

[0035] The power grid operation monitoring device is respectively communicatively connected to the mobile terminal and the remote control platform;

[0036] The power grid operation monitoring device is used to monitor the power grid operation and environmental parameters, send the monitoring data and environmental parameters to the mobile terminal and the remote control platform through the control component; and obtain the power grid operation task from the remote control platform and send the power grid operation task to the mobile terminal;

[0037] The mobile terminal is used to obtain the monitoring data and environmental parameters from the power grid operation monitoring device, and receive the power grid operation task sent by the power grid operation monitoring device;

[0038] The remote control platform is used to receive monitoring data and environmental parameters sent by the power grid operation monitoring device, and to issue power grid operation tasks to the power grid operation monitoring device.

[0039] The power grid operation monitoring device and the power grid operation monitoring system according to the embodiment of the present invention have the following beneficial effects compared with the prior art:

[0040] The power grid operation monitoring device provided by the present invention includes emergency rescue equipment on the basis of the operation monitoring component. When the box body is in the storage state, the operation monitoring component and the emergency rescue equipment can be stored in the box body, which is convenient for carrying and moving; and when the box body is in the working state, the operation monitoring component can be installed on the box body to realize power grid operation monitoring, and when an emergency occurs, the emergency rescue equipment in the box body can be used for emergency rescue. Therefore, convenient and timely emergency rescue can be taken into account while monitoring the power grid operation. In addition, by storing various components in the box body, the power grid operation monitoring device can also be portable and mobile, thereby improving the mobility flexibility of the power grid operation monitoring device. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 is a structural schematic diagram of a power grid operation monitoring device provided by an embodiment of the present invention in a working state from a first perspective;

[0042] Figure 2 is a structural schematic diagram of a power grid operation monitoring device provided by an embodiment of the present invention in a working state from a second perspective;

[0043] Figure 3 is a structural schematic diagram of a power grid operation monitoring device in a storage state provided by an embodiment of the present invention;

[0044] Figure 4 It is a structural diagram of a power grid operation monitoring system provided by an embodiment of the present invention. DETAILED DESCRIPTION

[0045] The following will be combined with the accompanying drawings in the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0046] See also Figures 1 - 3 , Figure 1 is a structural schematic diagram of a power grid operation monitoring device provided by an embodiment of the present invention in a working state from a first perspective; Figure 2It is a schematic structural diagram of a second perspective of a power grid operation monitoring device provided by an embodiment of the present invention in a working state. Figure 3 It is a schematic structural diagram of a power grid operation monitoring device provided by an embodiment of the present invention in a storage state. As Figures 1 - 3 shown, the power grid operation monitoring device 200 includes:

[0047] A box body 1, which includes an accommodation cavity (not shown in the figure) and an opening (not shown in the figure) communicating with the accommodation cavity.

[0048] A box door mechanism (not shown in the figure), which includes a driving connection component (not shown in the figure) and a box door for opening and closing at the opening, and the box door is controlled by the driving connection component.

[0049] An operation monitoring component 2, which includes various sensors matching the power grid operation to be monitored.

[0050] A control component (not shown in the figure), whose control end is respectively communicatively connected with the driving connection component and the sensor.

[0051] When the box body 1 is in the accommodation state, the operation monitoring component 2, the control component and emergency rescue equipment (not shown in the figure) are accommodated through the accommodation cavity.

[0052] When the box body 1 is in the working state, the operation monitoring component 2 is installed on the box body 1 through a connecting piece (not shown in the figure) to monitor the power grid operation, and the control component supplies power to the operation monitoring component 2 through the operation monitoring power interface 3 on the box body 1.

[0053] As Figures 1 to 3 shown, the power grid operation monitoring device 200 includes a box body, an operation monitoring component 2, a control component and emergency rescue equipment. The box body includes a box body 1 and a box door mechanism. The box body 1 includes an accommodation cavity and an opening communicating with the accommodation cavity; the box door mechanism includes a driving connection component and a box door controlled by the driving connection component. Among them, the driving connection component can include an electric zipper and can drive the electric zipper to open and close the box door based on an opening and closing instruction. The driving connection component can be communicatively connected with the control end of the control component. Or in another embodiment, the driving connection component includes a zipper, and the zipper is not communicatively connected with the control end of the control component, and the box door is opened and closed by manually controlling the zipper. The control component is communicatively connected with the operation monitoring component 2. Among them, the communication connection includes a mobile communication connection and a wired communication connection, and the mobile communication connection includes a 5G communication connection or a 4G communication connection or a 3G communication connection, etc.

[0054] Among them, the operation monitoring component 2 is used to monitor power grid operations and send the monitoring data to the control component; the control component is used to receive the monitoring data of the power grid operations sent by the operation monitoring component 2; the emergency rescue equipment is used to perform emergency rescue in case of sudden emergencies.

[0055] When the box body 1 is in the accommodation state, the operation monitoring component 2, the control component and the emergency rescue equipment are accommodated through the accommodation cavity. When the box body 1 is in the working state, the operation monitoring component 2 is taken out from the accommodation cavity of the box body 1 and installed on the box body 1 through a connecting piece to monitor power grid operations. While monitoring the power grid operations, the control component supplies power to the operation monitoring component 2 through the operation monitoring power interface 3 on the box body 1. Among them, the connecting piece includes a magnetic attraction structure, and may also include other connecting structures in addition to the magnetic attraction structure, such as a thread and nut structure, or a pin structure, etc.

[0056] In a further embodiment, the operation monitoring component 2 includes a high-definition spherical camera. The operation monitoring component includes a 5G high-definition networked spherical camera or a 4G high-definition networked spherical camera, which has characteristics such as waterproof and shockproof, and can meet the special requirements of temporary deployment and quick installation. It realizes real-time monitoring of the remote operation site through 5G or 4G wireless network, and at the same time supports operation records such as face recognition and safety helmet detection. A magnetic attraction structure is installed at the bottom of the 5G high-definition networked spherical camera or the 4G high-definition networked spherical camera, and can be quickly positioned and installed with the top of the box body.

[0057] Among them, the emergency rescue equipment includes one or more of the following: an automated external defibrillator, a portable medical kit, a pulse oximeter, an infrared thermometer, and an alcohol tester.

[0058] Although a simple emergency medical kit is equipped at the power grid operation site, there is a lack of special rescue equipment such as harmful gas monitoring and defibrillators, and it is impossible to effectively respond to emergencies such as gas poisoning, cardiac arrest, and arrhythmia, missing the golden rescue time. The embodiment of the present invention can provide basic medical assistance for the operators and rescue in case of cardiac arrest and arrhythmia caused by electric shock.

[0059] Based on the operation monitoring component 2, the power grid operation monitoring device 200 provided by the present invention further includes emergency rescue equipment. When the box body 1 is in the storage state, the operation monitoring component 2 and the emergency rescue equipment can be stored in the box body 1, which is convenient for carrying and moving. When the box body 1 is in the working state, the operation monitoring component 2 can be installed on the box body 1 to achieve power grid operation monitoring. In case of sudden emergencies, the emergency rescue equipment in the box body 1 can be used for emergency rescue. Therefore, convenient and timely emergency rescue can be taken into account while monitoring power grid operations. In addition, by storing each component in the box body 1, the power grid operation monitoring device 200 can also be carried and moved conveniently, improving the mobility of the power grid operation monitoring device 200.

[0060] In a further embodiment, continue to refer to Figure 1 , the power grid operation monitoring device 200 further includes:

[0061] An environmental monitoring component 4, which is communicatively connected to the control component.

[0062] The environmental monitoring component 4 is used to monitor the environmental parameters during the power grid operation and send the monitored environmental parameters to the control component.

[0063] When the box body 1 is in the accommodation state, the environmental monitoring component 4 is accommodated through the accommodation cavity;

[0064] When the box body 1 is in the working state, the environmental monitoring component 4 is installed on the box body 1 through the connecting member to monitor environmental parameters; the control component supplies power to the environmental monitoring component 4 through the environmental monitoring power interface 5 on the box body 1.

[0065] The environmental monitoring component 4 sends the monitored environmental parameters to the control component by being communicatively connected to the control component. When the box body 1 is in the accommodation state, the environmental monitoring component 4 is stored through the accommodation cavity. When the box body 1 is in the working state, the environmental monitoring component 4 is taken out from the accommodation cavity of the box body 1 and installed on the box body 1 through the connecting member to monitor environmental parameters. While monitoring the environmental parameters, the control component supplies power to the environmental monitoring component 4 through the environmental monitoring power interface 5 on the box body 1. Among them, the connecting member includes a magnetic attraction structure and may also include other connecting structures in addition to the magnetic attraction structure, such as a screw and nut structure, or a pin structure, etc.

[0066] In a further embodiment, the environmental monitoring component 4 includes a micrometeorological instrument. The environmental monitoring component 4 is mainly equipped with a multi-parameter high-precision sensor for ultrasonic wind speed, wind direction, etc. (such as a micrometeorological instrument), which can quickly and accurately detect environmental parameters such as wind speed, wind direction, atmospheric temperature, atmospheric humidity, and atmospheric pressure. The built-in signal processing unit can be optionally integrated with elements such as PM2.5, PM10, noise, radiation, and rainfall according to different requirements. The data acquisition density can be set according to the observation needs from 1 to 60 minutes, and a large-capacity data memory is built in.

[0067] Disaster weather such as frequent heavy rainfall, typhoons, high temperatures, freezing, etc. and micrometeorological phenomena such as tornadoes and hailstones bring great risks and challenges to power grid operations. Currently, there are no corresponding meteorological monitoring and early warning measures at the operation site. Usually, the emergency response for extreme weather such as wind prevention and flood control is initiated by relevant departments such as emergency departments and issued level by level. In the face of sudden situations at the operation site, it is difficult to give timely and effective early warnings and formulate emergency measures. Further paired with a mobile application, the work responsible person can bind the current device by scanning the device's QR code with the mobile phone and obtain environmental monitoring data, equipment operation data, and mobile phone early warning prompts for sudden situations at the operation site. According to relevant requirements, for example, when suddenly encountering strong winds with a wind force greater than level 5 (wind speed greater than 10.7 m / s), the device will trigger a wind warning signal at this time and synchronously feedback the warning information to the work responsible person's mobile application, and then immediately stop outdoor high-altitude operations and operations on live line poles.

[0068] In the embodiment of the present invention, through the environmental monitoring component 4, environmental monitoring can be carried out in real time to respond to sudden meteorological situations in a timely manner.

[0069] In a further embodiment, the power grid operation monitoring device 200 further includes:

[0070] A multi-functional tool component; used to provide multi-functional tools for the power grid operation monitoring device 200; when the box body 1 is in the accommodating state, the multi-functional tool component is accommodated through the accommodating cavity of the box body 1.

[0071] In a further embodiment, the multi-functional tool includes one or more of the following: a multi-foldable solar photovoltaic panel 6, an electronic display screen 7, and a harmful gas detector.

[0072] When the multi-foldable solar photovoltaic panel 6 is in the folded state, the multi-foldable solar photovoltaic panel 6 is stored in the accommodating cavity of the box body 1.

[0073] When the multi-foldable solar photovoltaic panel 6 is in the unfolded state, the multi-foldable solar photovoltaic panel 6 is installed on the box body 1 and powers the power grid operation monitoring device 200 through the solar DC charging interface 8.

[0074] When the box body 1 is in the working state, the electronic display screen 7 is installed on the box body 1 through the connecting piece, and the monitoring data of the operation monitoring component is displayed in real time; the control component supplies power to the electronic display screen 7 through the display screen power interface (not shown in the figure) on the box body 1.

[0075] When the box body 1 is in the working state, the harmful gas detector is installed on the box body 1 through the connecting piece to monitor harmful gases during the power grid operation; the control component supplies power to the harmful gas detector through the detector power interface on the box body 1.

[0076] Among them, the multi-functional tool may further include an emergency flashlight. The multi-foldable solar photovoltaic panel 6, for example, can be a three-foldable solar photovoltaic panel or a six-foldable solar photovoltaic panel, and can be in two states: a folded state and an unfolded state. When the multi-foldable solar photovoltaic panel 6 is in the folded state, it is stored in the accommodation cavity of the box body 1. When the multi-foldable solar photovoltaic panel 6 is in the unfolded state, the multi-foldable solar photovoltaic panel 6 is taken out from the box body 1 and installed on the box body 1, for example, hung on the pull rod of the box body 1. Among them, the multi-foldable solar photovoltaic panel 6 can supply power to the power grid operation monitoring device 200 through the solar DC charging interface 8 to provide additional clean energy compensation.

[0077] When the box body 1 is in the storage state, the electronic display screen 7 is stored in the accommodation cavity of the box body 1. When the box body 1 is in the working state, the electronic display screen 7 is taken out from the box body 1 and installed on the box body 1 through the connecting piece. The connecting piece includes a magnetic attraction structure, and may further include other connecting structures in addition to the magnetic attraction structure, such as a thread and nut structure, or a pin structure, etc. Among them, the electronic display screen 7 can display the monitoring data of the operation monitoring component in real time. In addition, the electronic display screen 7 can also display the environmental parameters, the device operation status, the operator information, etc. in real time. The control component supplies power to the electronic display screen 7 through the display screen power interface (not shown in the figure) on the box body 1.

[0078] In a further embodiment, the control component includes a gateway host;

[0079] The gateway host is used to send the monitoring data of the operation monitoring component and / or the environmental data of the environmental monitoring component received by the control component to the remote control platform 300.

[0080] The gateway host in the control component can send the monitoring data of the operation monitoring component and / or the environmental data of the environmental monitoring component received by the control component to the remote control platform 300 to realize remote data interaction with the remote control platform 300.

[0081] In a further embodiment, the control component further includes a power adapter and a storage battery.

[0082] The external alternating current is adaptively plugged into the external AC charging interface 9 on the box body 1 through the power adapter to supply power to the power grid operation monitoring device 200.

[0083] The storage battery is used to supply power to the power grid operation monitoring device 200 in the absence of external alternating current.

[0084] For the power supply of the power grid operation monitoring device 200, in addition to using the multi-foldable solar photovoltaic panel 6 for power supply, the power adapter and the storage battery can also be used for power supply. Specifically, the external alternating current can be adaptively plugged into the external AC charging interface 9 on the box body 1 through the power adapter, so as to supply power to the power grid operation monitoring device 200. In the absence of an external power source, the storage battery can also be used to supply power to the power grid operation monitoring device 200 (sensors, micro-meteorological instruments, cameras, displays, etc.), and the operation endurance time can reach 10 hours.

[0085] The embodiment of the present invention can provide multiple flexible power supply methods such as a power adapter, a storage battery, and a multi-foldable solar photovoltaic panel 6.

[0086] In a further embodiment, refer to Figures 1 to 3 , a pull rod and / or universal wheels 10 are provided on the box body 1. It is convenient for power grid operation personnel to push, pull and carry as a whole, and improves the portability and mobility of the power grid operation monitoring device 200.

[0087] In a further embodiment, the power grid operation monitoring device 200 adopts the shape of a suitcase as the main body, and the sum of the lengths of the three sides of the length, width and height does not exceed 158 cm, and is equipped with a pull rod and universal wheels 10, which is convenient for power grid operation personnel to push, pull and carry as a whole. The inside of the box is divided into a "4 + 1" functional area: an environmental monitoring component 4, an operation monitoring component, an emergency rescue device, a multi-functional tool component, and a control component (each component is installed inside the box, and the corresponding component or device is taken out according to the actual work requirements at the operation site).

[0088] Refer to Figure 4 , Figure 4 is a schematic structural diagram of a power grid operation monitoring system provided by an embodiment of the present invention. As Figure 4 shown, the power grid operation monitoring system includes a power grid operation monitoring device 200, and the power grid operation monitoring system further includes a mobile terminal 100 and a remote control platform 300.

[0089] The power grid operation monitoring device 200 is respectively communicatively connected with the mobile terminal 100 and the remote control platform 300.

[0090] The power grid operation monitoring device 200 is used to monitor power grid operations and environmental parameters, and send the monitoring data and the environmental parameters to the mobile terminal 100 and the remote control platform 300 through the control component; and obtain power grid operation tasks from the remote control platform 300 and send the power grid operation tasks to the mobile terminal 100.

[0091] The mobile terminal 100 is used to obtain the monitoring data and the environmental parameters from the power grid operation monitoring device 200, and receive the power grid operation tasks sent by the power grid operation monitoring device 200.

[0092] The remote control platform 300 is used to receive the monitoring data and the environmental parameters sent by the power grid operation monitoring device 200, and send the power grid operation tasks to the power grid operation monitoring device 200.

[0093] Among them, the communication connection includes a wired communication connection and a wireless communication connection, and the wireless communication connection includes a 5G mobile communication connection or a 4G mobile communication connection, etc.

[0094] The power grid operation monitoring device 200 is not only used to send the monitoring data and the environmental parameters to the mobile terminal 100 and the remote control platform 300 through the control component, but also send the power grid operation tasks obtained from the remote control platform 300 to the mobile terminal 100. The mobile terminal 100 is not only used to obtain the monitoring data and the environmental parameters from the power grid operation monitoring device 200, but also used to receive the power grid operation tasks sent by the power grid operation monitoring device 200. The remote control platform 300 is not only used to receive the monitoring data and the environmental parameters sent by the power grid operation monitoring device 200, but also used to send the power grid operation tasks to the power grid operation monitoring device 200.

[0095] The power grid operation monitoring device 200 integrates an operation monitoring component, an environmental monitoring component 4, emergency rescue equipment, etc., and manages and operates the system in three ways: a local management system, a remote network system, and the mobile terminal 100.

[0096] The local management system (power grid operation monitoring device 200) relies on the device's own electronic display screen 7 to switch the interfaces of environmental monitoring information, operator information, and device operation status. The gateway host in the control component uses a high-performance microprocessor as the main control CPU, a large-capacity built-in memory, a portable shock-proof structure, and an industrial control standard design to meet the use in harsh operating environments.

[0097] The remote network system relies on the remote control platform 300 for grid operations. Through 4G communication, environmental monitoring information such as the temperature, humidity, wind force, wind speed, and longitude and latitude of the operation location is uploaded to the remote control platform 300. At the same time, grid operation tasks and relevant data information of the operation personnel on the remote control platform 300 are downloaded to the local management system (grid operation monitoring device 200).

[0098] When paired with the mobile terminal 100, scanning the QR code of the grid operation monitoring device 200 with the mobile terminal 100 can bind the current device, and obtain on-site operation environmental monitoring data, equipment operation data, and mobile phone early warning prompts for emergencies. According to relevant requirements such as the Electric Safety Work Regulations, if suddenly encountering strong winds with a wind force greater than level 5 (wind speed greater than 10.7 m / s), at this time, the grid operation monitoring device 200 will trigger a wind warning signal and synchronously feedback the warning information to the mobile terminal 100, reminding to immediately stop open-air high-altitude operations, stop operations on live line towers, etc.

[0099] In the embodiment of the present invention, the grid operation monitoring device 200 has a square shape, occupies a small area, and the overall weight does not exceed 15 kg. The collector and the sensor adopt a modular design concept, and the connection with the box body adopts a plug-and-play installation mode, and it can be installed and enter the normal monitoring state in 30 seconds. Moreover, it has high measurement accuracy, reliable stability, and the product technical indicators meet the requirements of meteorological observation specifications. At the same time, it also has a low-power and energy-saving design. Combined with a battery and a solar photovoltaic panel, it can ensure long-term standby use at a power-free operation site.

[0100] In the embodiment of the present invention, the grid operation monitoring device 200 integrating multiple functions such as environmental monitoring and early warning, on-site operation monitoring, and emergency medical rescue is equipped with a multi-dimensional model of environmental parameters - warning information - response measures. Through technical means such as on-site monitoring, data transmission, and human-computer interaction, it realizes the rapid transmission of on-site operation environmental monitoring data and the early warning response mechanism, effectively enhancing the accuracy and timeliness of micro-meteorological monitoring in the operation environment and improving the "digital intelligence" level of on-site operation management.

[0101] The power grid operation monitoring device 200 can be widely used in power infrastructure, relocation, and technical transformation operations, effectively implement the monitoring requirements of various indicators such as wind force, temperature, humidity, and oxygen content related to operation safety and occupational health, and build a digital safety risk warning and operation control system for power production personnel, equipment, and environment. Effectively improve the accuracy and timeliness of on-site environmental monitoring, realize the identification and early warning of power operation safety risks, improve operation safety and construction efficiency, improve safe and civilized construction and emergency management, and promote the "digitalization" transformation of power safety production. This power grid operation monitoring device 200 conducts research on three aspects: environmental monitoring, visual control, and emergency medical rescue. It aims to provide a comprehensive and efficient solution for intelligent control of power grid operation sites and promote the high-quality development of distribution networks under the new situation.

[0102] In summary, the present invention provides a power grid operation monitoring device 200 and a power grid operation monitoring system, which, on the basis of the operation monitoring component 2, also includes emergency rescue equipment. When the box body 1 is in the storage state, the operation monitoring component 2 and the emergency rescue equipment can be stored in the box body 1, which is convenient for carrying and moving; and when the box body 1 is in the working state, the operation monitoring component 2 can be installed on the box body 1 to realize power grid operation monitoring, and when an emergency occurs, the emergency rescue equipment in the box body 1 can be used for emergency rescue. Therefore, convenient and timely emergency rescue can be taken into account while monitoring the power grid operation. In addition, by storing various components in the box body 1, the power grid operation monitoring device 200 can also be portable and movable, thereby improving the mobility flexibility of the power grid operation monitoring device 200.

[0103] The above-mentioned embodiments only express several implementation methods of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the scope of the present invention. It should be pointed out that, for a person of ordinary skill in the art, several variations and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the attached claims.

Claims

1. A power grid operation monitoring device, characterized in that: include: A box body, comprising a receiving cavity and an opening communicating with the receiving cavity; A door mechanism, comprising a drive connection assembly and a door for opening and closing at the opening, wherein the door is controlled by the drive connection assembly; An operation monitoring component, which includes various sensors that match the power grid operation to be monitored; A control component, whose control end is communicatively connected to the drive connection component and the sensor respectively; When the box body is in a receiving state, the operation monitoring component, the control component and the emergency rescue equipment are received by the receiving cavity; When the box body is in working state, the operation monitoring component is installed on the box body through a connector to monitor the power grid operation, and the control component supplies power to the operation monitoring component through an operation monitoring power supply interface on the box body.

2. The power grid operation monitoring device according to claim 1, characterized in that: The power grid operation monitoring device further includes: An environmental monitoring component; the environmental monitoring component is in communication connection with the control component; The environmental monitoring component is used to monitor environmental parameters during the operation of the power grid and send the monitored environmental parameters to the control component; When the box body is in a receiving state, the environment monitoring component is received by the receiving cavity; When the box body is in working state, the environmental monitoring component is installed on the box body through the connecting piece to monitor environmental parameters; the control component supplies power to the environmental monitoring component through the environmental monitoring power interface on the box body.

3. The power grid operation monitoring device according to claim 2, characterized in that: The environmental monitoring component includes a micro-meteorological instrument.

4. The power grid operation monitoring device according to claim 1 or 3, characterized in that: The power grid operation monitoring device further includes: A multifunctional tool assembly; used to provide a multifunctional tool for the power grid operation monitoring device; when the box body is in an accommodating state, the multifunctional tool assembly is accommodated by the accommodating cavity of the box body.

5. The power grid operation monitoring device according to claim 4, characterized in that: The multifunctional tool includes one or more of the following: a multi-foldable solar photovoltaic panel, an electronic display screen, and a harmful gas detector; When the multi-foldable solar photovoltaic panel is in a folded state, the multi-foldable solar photovoltaic panel is stored in the accommodating cavity of the box body; When the multi-foldable solar photovoltaic panel is in an unfolded state, the multi-foldable solar photovoltaic panel is mounted on the box body, and the power grid operation monitoring device is powered by a solar DC charging interface; When the box body is in working state, the electronic display screen is installed on the box body through the connecting piece, and the monitoring data of the operation monitoring component is displayed in real time; the control component supplies power to the electronic display screen through the display screen power interface on the box body; When the box body is in working condition, the harmful gas detector is installed on the box body through the connecting piece to monitor harmful gases in the power grid operation process; the control component supplies power to the harmful gas detector through the detector power interface on the box body.

6. The power grid operation monitoring device according to claim 1, characterized in that: The operation monitoring component includes a high-definition spherical camera; The emergency rescue equipment includes one or more of the following: an automatic external defibrillator, a portable medical kit, a pulse oximeter, an infrared thermometer and an alcohol tester.

7. The power grid operation monitoring device according to claim 2, characterized in that: The control component includes a gateway host; The gateway host is used to send the monitoring data of the operation monitoring component and / or the environmental data of the environment monitoring component received by the control component to the remote control platform.

8. The power grid operation monitoring device according to claim 1 or 7, characterized in that: The control assembly also includes a power adapter and a battery; The external AC power is connected to the external AC charging interface on the box body through the power adapter to supply power to the power grid operation monitoring device; The storage battery is used to supply power to the power grid operation monitoring device in the absence of external alternating current.

9. The power grid operation monitoring device according to claim 1, characterized in that: A pull rod and / or a universal wheel are arranged on the box body.

10. A power grid operation monitoring system, characterized in that: The power grid operation monitoring device comprises the power grid operation monitoring device according to any one of claims 1 to 9, wherein the power grid operation monitoring system further comprises a mobile terminal and a remote control platform; The power grid operation monitoring device is communicatively connected with the mobile terminal and the remote control platform respectively; The power grid operation monitoring device is used to monitor power grid operation and environmental parameters, send the monitoring data and environmental parameters to the mobile terminal and the remote control platform through the control component; and obtain power grid operation tasks from the remote control platform, and send the power grid operation tasks to the mobile terminal; The mobile terminal is used to obtain the monitoring data and the environmental parameters from the power grid operation monitoring device, and receive the power grid operation task sent by the power grid operation monitoring device; The remote control platform is used to receive the monitoring data and the environmental parameters sent by the power grid operation monitoring device, and send the power grid operation task to the power grid operation monitoring device.