Road lighting facility monitoring equipment and system based on intelligent gateway and intelligent air switch

By combining smart gateways and smart circuit breakers, the control equipment for road lighting facilities is simplified, the problems of complex wiring and high operation and maintenance costs are solved, real-time data acquisition and control are realized, and system complexity and operation and maintenance costs are reduced.

CN223599880UActive Publication Date: 2025-11-25CETC PUBLIC FACILITY OPERATION & MANAGEMENT CO LTD
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Patent Information

Application Number
CN202423137479.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-25
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In existing technologies, the wiring of road lighting control equipment is complex, resulting in high operation and maintenance costs.

Method used

By combining a smart gateway and a smart circuit breaker, and connecting the smart gateway with the smart circuit breaker, electricity meter module, data acquisition module, sensor module, switch quantity module and switch quantity control module, data acquisition and control signal transmission are realized, simplifying control equipment and acquisition equipment and reducing system complexity.

Benefits of technology

It effectively reduces the complexity and operation and maintenance costs of traditional lighting control systems, simplifies the circuit structure, and lowers construction and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a road lighting facility monitoring device and system based on an intelligent gateway and an intelligent air switch, and the device comprises the intelligent gateway, at least one intelligent air switch, an ammeter module, a data collection module, a sensor module, a switching value module, and a switching value control module. The intelligent gateway is connected with the communication end of each intelligent air switch, the communication end of the ammeter module, the communication end of the sensor module, the communication end of the data acquisition module, the communication end of the sensor module, the communication end of the switching value module and the communication end of the switching value control module, and the wire inlet end of each intelligent air switch is used for being connected with a lighting power supply. The wire outlet end of each intelligent air switch is used for being connected with a road lighting facility. According to the application, lighting facility monitoring is carried out through connection between the intelligent gateway and other modules, so that the problem of excessive control equipment and acquisition equipment in a traditional lighting control system is effectively reduced, the system complexity is reduced, the circuit is simple, and the construction cost and the operation and maintenance cost are reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of lighting monitoring, in particular to a road lighting facility monitoring device and system based on an intelligent gateway and an intelligent air switch. BACKGROUND

[0002] With the development of science and technology, the lighting equipment of traffic road construction is becoming more and more complex. Therefore, a control device for monitoring lighting equipment is urgently needed to ensure normal lighting of the road.

[0003] In the prior art, the control device for monitoring lighting equipment usually uses a regional controller. Specifically, the on-off of the power supply of the lighting equipment is realized through the contactors and intermediate relays in the regional controller, the feedback of the working state of the lighting equipment is realized through the voltage collector, current transformer and on-off quantity collector installed on the control loop, and the over-current protection of the power supply line is realized through the knife-fusion switch set on each control loop.

[0004] However, in the prior art, the regional controller has many contactors, intermediate relays, knife-fusion switches and sensors, which causes the line of the lighting control device to be complex and increases the operation and maintenance cost. CONTENT OF THE INVENTION

[0005] The present application aims to solve the problems of complex lighting control line and high operation and maintenance cost in the prior art by providing a road lighting facility monitoring device and system based on an intelligent gateway and an intelligent air switch.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the present application is as follows:

[0007] In a first aspect, the present application provides a road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch, which comprises an intelligent gateway, at least one intelligent air switch, an electric meter module, a data acquisition module, a sensor module, an on-off quantity module and an on-off quantity control module.

[0008] The communication end of each intelligent air switch, the communication end of the electric meter module, the communication end of the sensor module, the communication end of the data acquisition module, the communication end of the sensor module, the communication end of the on-off quantity module and the communication end of the on-off quantity control module are connected to the intelligent gateway.

[0009] The incoming line end of each intelligent air switch is used to access the lighting power supply, and the outgoing line end of each intelligent air switch is used to connect with the road lighting facility.

[0010] The intelligent gateway is used for receiving the acquisition data sent by the intelligent air switch, the electric meter module, the data acquisition module, the sensor module, the switch quantity module and the switch quantity control module, and respectively sending control signals to the intelligent air switch, the electric meter module, the data acquisition module and the switch quantity control module.

[0011] Optionally, the intelligent gateway comprises a first interface unit, a second interface unit, a third interface unit, a fourth interface unit and a gateway processing unit.

[0012] One end of the first interface unit is connected with the communication end of the sensor module, and the other end of the first interface unit is connected with the gateway processing unit.

[0013] One end of the second interface unit is connected with the communication end of the switch quantity module, and the other end of the second interface unit is connected with the gateway processing unit, and the second interface unit is used for receiving the switch quantity data sent by the switch quantity module.

[0014] One end of the third interface unit is connected with the communication end of the switch quantity control module, and the other end of the third interface unit is connected with the gateway processing unit, and the third interface unit is used for sending the switch quantity control signal generated by the gateway processing unit to the switch quantity control module.

[0015] The communication end of each intelligent air switch is connected with each air switch input end of the fourth interface unit, the air switch output end of the fourth interface unit is connected with the gateway processing unit, the communication end of the electric meter module is connected with the electric meter input end of the fourth interface unit, the electric meter output end of the fourth interface unit is connected with the gateway processing unit, the communication end of the data acquisition module is connected with the acquisition input end of the fourth interface unit, and the acquisition output end of the fourth interface unit is connected with the gateway processing unit.

[0016] Optionally, the intelligent gateway further comprises a display unit, a key unit and a state unit.

[0017] The display unit is connected with the gateway processing unit, and the display unit is used for displaying the display information sent by the gateway processing unit.

[0018] The key unit is connected with the gateway processing unit, and the key unit is used for generating a key signal based on the pressing operation of a user and sending the key signal to the gateway processing unit.

[0019] The state unit is connected with the gateway processing unit, and the state unit is used for displaying the working state of the intelligent gateway and the power state of the intelligent gateway.

[0020] Optionally, the intelligent gateway further comprises an acceleration sensor.

[0021] The acceleration sensor is connected with the gateway processing unit, and the acceleration sensor is configured to send a tilt monitoring signal to the gateway processing unit in real time.

[0022] Optionally, the intelligent gateway further comprises a communication module, wherein the communication module comprises a Bluetooth unit, an Ethernet communication unit, and a mobile communication unit.

[0023] One end of the Bluetooth unit is connected with the gateway processing unit, and the Bluetooth unit is configured to send information sent by the gateway processing unit to a terminal device of a user through Bluetooth.

[0024] One end of the Ethernet communication unit is connected with the gateway processing unit, and the Ethernet communication unit is configured to send information sent by the gateway processing unit to a remote server through Ethernet.

[0025] One end of the mobile communication unit is connected with the gateway processing unit, and the mobile communication unit is configured to send information sent by the gateway processing unit to a terminal device of a user and / or a remote server through mobile communication.

[0026] Optionally, the intelligent air switch comprises a plurality of air switch units, a sensor unit, and an air switch processing unit.

[0027] Each air switch unit is configured to access a lighting power supply at an incoming line end, and each air switch unit is connected with each road lighting facility at an outgoing line end, and a control end of each air switch unit is connected with the air switch processing unit.

[0028] The sensor unit is connected with a collection end of the air switch processing unit, and the sensor unit is configured to collect current, voltage, and temperature flowing through each air switch unit.

[0029] A communication end of the air switch processing unit is connected with the intelligent gateway.

[0030] Optionally, the sensor module comprises a temperature sensor and a humidity sensor.

[0031] One end of the temperature sensor is connected with the intelligent gateway.

[0032] One end of the humidity sensor is connected with the intelligent gateway.

[0033] Optionally, the switch quantity module comprises a cabinet door switch sensor and a water immersion sensor.

[0034] One end of the cabinet door switch sensor is connected with the intelligent gateway.

[0035] One end of the water immersion sensor is connected with the intelligent gateway.

[0036] Optionally, the switch quantity control module comprises a cooling device and a dehumidification device.

[0037] The control end of the cooling device and the control end of the dehumidification device are respectively connected with the intelligent gateway.

[0038] In a second aspect, the application provides a road lighting facility monitoring system based on an intelligent gateway and an intelligent air switch, comprising a road lighting facility and a road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch as described in the first aspect.

[0039] The road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch is connected with the road lighting facility.

[0040] The application has the following beneficial effects: the intelligent gateway is connected with the intelligent air switch, the electric meter module, the sensor module, the data acquisition module, the sensor module, the switch quantity module and the switch quantity control module, respectively, for receiving the acquisition data sent by the modules, realizing real-time data acquisition of the road lighting facility and the control environment. Control signals are sent to the intelligent air switch, the electric meter module, the data acquisition module and the switch quantity control module, so as to realize real-time control of the road lighting facility and the control environment. The embodiment collects data through the intelligent gateway and sends control signals according to the collected data, thereby effectively reducing the problem of excessive control devices and acquisition devices in the traditional lighting control system, further reducing the system complexity, the circuit is simple, and the construction cost and the operation and maintenance cost are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0041] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0042] Figure 1 is a structural schematic diagram of a road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch provided by the embodiment of the application;

[0043] Figure 2 is a specific structural schematic diagram of an intelligent gateway provided by the embodiment of the application;

[0044] Figure 3 is a structural schematic diagram of another intelligent gateway provided by the embodiment of the application;

[0045] Figure 4 is a display content schematic diagram of a display unit provided by an embodiment of the present application;

[0046] Figure 5 is an appearance schematic diagram of a smart gateway provided by an embodiment of the present application;

[0047] Figure 6 is a structure schematic diagram of a smart air switch provided by an embodiment of the present application. DETAILED DESCRIPTION

[0048] In order to make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. It should be understood that the drawings in the present application only serve the purpose of description and illustration, and are not used to limit the scope of protection of the present application. In addition, it should be understood that the schematic drawings are not drawn according to the actual proportions. The flowcharts in the present application show the operations implemented according to some embodiments of the present application. It should be understood that the operations of the flowcharts can not be implemented in sequence, and the steps without logical context relationship can be reversed in sequence or implemented simultaneously. In addition, one or more other operations can be added to the flowcharts or one or more operations can be removed from the flowcharts under the guidance of the content of the present application.

[0049] In addition, the described embodiments are only some of the embodiments of the present application, not all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0050] It should be noted that the term "comprising" will be used in the embodiments of the present application to indicate the presence of the features declared thereafter, but does not exclude the addition of other features.

[0051] In the prior art, the control device for monitoring the lighting device is usually a regional controller, but the regional controller has many contactors, intermediate relays, knife-fusion switches, and sensors, etc., causing the line of the lighting control device to be complex and increasing the operation and maintenance cost.

[0052] Based on this, the application provides a road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch, which comprises an intelligent gateway, at least one intelligent air switch, an electric meter module, a data acquisition module, a sensor module, an on-off quantity module and an on-off quantity control module, so as to acquire the acquisition data sent by each module through the intelligent gateway and send control signals to each module to realize the functions of road lighting control, monitoring and protection, and overcome the problem of high operation and maintenance cost caused by complex lines in the controller.

[0053] Figure 1 FIG. 1 is a structural schematic diagram of a road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch provided by an embodiment of the application. As shown in FIG. 1, the road lighting facility monitoring device based on an intelligent gateway and an intelligent air switch comprises an intelligent gateway 10, at least one intelligent air switch 20, an electric meter module 30, a data acquisition module 40, a sensor module 50, an on-off quantity module 60 and an on-off quantity control module 70. Figure 1

[0054] Optionally, the intelligent gateway 10 is connected with the communication end of each intelligent air switch 20, the communication end of the electric meter module 30, the communication end of the sensor module 50, the communication end of the data acquisition module 40, the communication end of the sensor module 50, the communication end of the on-off quantity module 60 and the communication end of the on-off quantity control module 70 respectively.

[0055] As shown in FIG. 1, in the embodiment, each intelligent air switch is represented by an intelligent air switch 20, such as an intelligent air switch 20-1, an intelligent air switch 20-2 and an intelligent air switch 20-n. Figure 1

[0056] Optionally, the incoming line end of each intelligent air switch 20 is used for accessing a lighting power supply, and the outgoing line end of each intelligent air switch 20 is used for connecting with a road lighting facility.

[0057] Specifically, the number of the intelligent air switches 20 can be set according to the number of road lighting facilities. The intelligent air switch 20 can be connected with multiple road lighting facilities and respectively control the current of the power supply path of each lighting road facility.

[0058] Optionally, the lighting power supply can be provided by a power supply and distribution network.

[0059] Optionally, the intelligent gateway 10 is used for receiving the acquisition data sent by each intelligent air switch 20, the electric meter module 30, the data acquisition module 40, the sensor module 50, the on-off quantity module 60 and the on-off quantity control module 70, and respectively sending control signals to each intelligent air switch 20, the electric meter module 30, the data acquisition module 40 and the on-off quantity control module 70.

[0060] ​​The smart gateway 10 can support data transmission of multiple communication interfaces and protocols. Specifically, the smart gateway 10 can include an RS485 communication interface, a single bus interface, a switch value input interface, a switch value output interface, and an Ethernet interface. The smart gateway 10 is connected to the smart air switch 20, the electric meter module 30, the sensor module 50, the data acquisition module 40, the sensor module 50, the switch value module 60, and the switch value control module 70 through the interfaces.

[0061] As an optional implementation, the smart gateway 10 can be connected to a remote server, an Ethernet, and a mobile terminal through Bluetooth communication and fourth-generation mobile communication, so as to upload the collected data to the remote server and the mobile terminal.

[0062] The smart air switch 20 has a current limiting protection function, and can also collect current and voltage data flowing through the smart air switch 20, and send the data to the smart gateway 10 through the communication end. The smart air switch 20 can also receive control signals sent by the smart gateway 10 through the communication end, so as to control the opening and closing of each smart air switch 20.

[0063] The electric meter module 30 is used to measure the voltage, current, frequency, active power, reactive power, active energy, and reactive energy of the measured facility, and sends the collected data to the smart gateway 10 through the communication end. As an optional implementation, the electric meter module 30 can be connected to the smart gateway 10 through a differential signal transmission mode, specifically through an RS485 communication connection. After receiving the collected data sent by the electric meter module 30, the smart gateway 10 sends the collected data to a remote server or a mobile terminal through an Ethernet or a fourth-generation mobile communication antenna interface.

[0064] The data acquisition module 40 can be a device with data acquisition function, such as a sensor. The data acquisition module 40 has a MODUB communication interface to collect data. The data acquisition module 40 can be connected to the smart gateway 10 through a differential signal transmission mode. After receiving the collected data sent by the data acquisition module 40, the smart gateway 10 sends the collected data to a remote server or a mobile terminal through an Ethernet or a fourth-generation mobile communication antenna interface.

[0065] The sensor module 50 can include a temperature sensor and a humidity sensor, and is used to collect environmental data around the monitored device. The sensor module 50 can be connected to the smart gateway 10 through a single bus interface. After receiving the collected data sent by the sensor module 50, the smart gateway 10 sends the collected data to a remote server or a mobile terminal through an Ethernet or a fourth-generation mobile communication antenna interface.

[0066] The switch quantity module 60 can include a cabinet door switch sensor, a water immersion sensor, etc., for detecting switch quantity data such as cabinet door data and water immersion data of the monitoring device. The switch quantity module 60 can be connected with the intelligent gateway 10 through a switch quantity input interface. After the intelligent gateway 10 receives the collected data sent by the switch quantity module 60, the collected data is sent to a remote server or a mobile terminal through an Ethernet or a fourth generation mobile communication antenna interface.

[0067] The switch quantity control module 70 can include a cooling device, a dehumidification device, etc., for receiving a control signal sent by the intelligent gateway 10.

[0068] In the embodiment, the intelligent gateway is connected with the intelligent air switch, the electric meter module, the sensor module, the data collection module, the sensor module, the switch quantity module, and the switch quantity control module, respectively, for receiving collected data sent by the modules, and realizing real-time data collection of the road lighting facilities and the control environment. The intelligent gateway sends control signals to the intelligent air switch, the electric meter module, the data collection module, and the switch quantity control module, so as to realize real-time control of the road lighting facilities and the control environment. The embodiment collects data through the intelligent gateway and sends control signals according to the collected data, so as to effectively reduce the problem of too many control devices and collection devices in the traditional lighting control system, and further reduce the system complexity, the circuit is simple, and the construction cost and the operation and maintenance cost are reduced.

[0069] Figure 2 is a specific structure schematic diagram of an intelligent gateway provided by the embodiment of the application. As shown in Figure 2 The intelligent gateway 10 includes a first interface unit 102, a second interface unit 103, a third interface unit 104, a fourth interface unit 105, and a gateway processing unit 101.

[0070] The gateway processing unit 101 is configured to receive collected data sent by the first interface unit 102, the second interface unit 103, the third interface unit 104, and the fourth interface unit 105, and perform relevant processing on the collected data, and generate a control signal according to a processing result.

[0071] Optionally, one end of the first interface unit 102 is connected with a communication end of the sensor module 50, and the other end of the first interface unit 102 is connected with the gateway processing unit 101.

[0072] The first interface unit 102 can include a single bus interface. The gateway processing unit 101 in the intelligent gateway 10 is connected with the communication end of the sensor module 50 through the single bus interface, so as to transmit collected data and control signals.

[0073] It is worth mentioning that the first interface unit 102 can include a plurality of single bus interfaces, the number of interfaces being consistent with the number of sensors in the sensor module 50, and the specific number can be set according to actual needs.

[0074] Optionally, one end of the second interface unit 103 is connected with the communication end of the on-off quantity module 60, and the other end of the second interface unit 103 is connected with the gateway processing unit 101, and the second interface unit 103 is used for receiving the on-off quantity data sent by the on-off quantity module 60.

[0075] Among them, the second interface unit 103 can include an on-off quantity input interface. The gateway processing unit 101 in the intelligent gateway 10 is connected with the communication end of the on-off quantity module 60 through the on-off quantity input interface, so as to transmit the acquisition data sent by the on-off quantity module 60.

[0076] It is worth mentioning that the second interface unit 103 can include a plurality of on-off quantity input interfaces, the number of interfaces being consistent with the number of on-off quantity devices in the on-off quantity module 60, and the specific number can be set according to actual needs.

[0077] Optionally, one end of the third interface unit 104 is connected with the communication end of the on-off quantity control module 70, and the other end of the third interface unit 104 is connected with the gateway processing unit 101, and the third interface unit 104 is used for sending the on-off quantity control signal generated by the gateway processing unit 101 to the on-off quantity control module 70.

[0078] Among them, the third interface unit 104 can include an on-off quantity output interface. The gateway processing unit 101 in the intelligent gateway 10 is connected with the communication end of the on-off quantity control module 70 through the on-off quantity output interface, so as to transmit the control signal to the on-off quantity control module 70.

[0079] It is worth mentioning that the third interface unit 104 can include a plurality of on-off quantity output interfaces, the number of interfaces being consistent with the number of on-off quantity control devices in the on-off quantity control module 70, and the specific number can be set according to actual needs.

[0080] Optionally, the communication ends of the intelligent air switches are connected with the air switch input ends of the fourth interface unit 105, the air switch output end of the fourth interface unit 105 is connected with the gateway processing unit 101, the communication end of the electric meter module 30 is connected with the electric meter input end of the fourth interface unit 105, the communication end of the data acquisition module 40 is connected with the acquisition input end of the fourth interface unit 105, and the acquisition output end of the fourth interface unit 105 is connected with the gateway processing unit 101.

[0081] The fourth interface unit 105 can include a differential signal interface. Specifically, the fourth interface unit 105 can be an RS485 communication interface. The gateway processing unit 101 can be connected to each smart air switch 20, the electric meter module 30, and the data acquisition module 40 through the plurality of RS485 communication interface units, respectively, so as to acquire the acquisition data sent by the smart air switch 20, the electric meter module 30, and the data acquisition module 40, respectively, and send the control signals to the smart air switch 20, the electric meter module 30, and the data acquisition module 40 through the respective RS485 communication interfaces.

[0082] It is worth mentioning that the number of differential signal interfaces in the fourth interface unit 105 can be set according to the specific number of the smart air switch 20, the electric meter module 30, and the data acquisition module 40.

[0083] In the embodiment, the smart gateway includes a first interface unit, a second interface unit, a third interface unit, and a fourth interface unit, which are connected to the sensor module, the on-off quantity module, the on-off quantity control module, the smart air switch, the electric meter module, the data acquisition module, and the gateway processing unit, respectively, so as to realize the data acquisition of the above-mentioned modules by the smart gateway, and send the control signals generated by the gateway processing unit to the smart air switch, the electric meter module, the data acquisition module, and the on-off quantity control module, respectively, to realize the same monitoring and management of the above-mentioned modules by the smart gateway, reduce the system complexity, simplify the circuit, and reduce the construction cost and operation and maintenance cost.

[0084] As an optional implementation, Figure 3 is another structural schematic diagram of a smart gateway provided by the embodiment of the application. Figure 3 In the embodiment, the smart gateway 10 further includes a display unit 106, a key unit 107, and a status unit 108.

[0085] Optionally, the display unit 106 is connected to the gateway processing unit 101, and the display unit 106 is configured to display the display information sent by the gateway processing unit 101.

[0086] Specifically, Figure 4 is a display content schematic diagram of a display unit provided by the embodiment of the application, as Figure 4 shown, the display unit 106 can display the display information sent by the gateway processing unit 101, including main interface display content, main menu display content, and data query display content. The main interface display content can display device terminal address, server login status, online number, network signal strength, Bluetooth connection status, company name, and time, etc. information, as Figure 4The main menu displays contents shown in Fig. a. In addition to displaying time, server login status, Bluetooth connection status, network signal strength, platform login status and other information, the main menu also includes data query, control operation, device parameter and local information, such as Figure 4 b. After the user selects Figure 4 b, the data query interface is displayed. The data query interface can include data of air switches, data of electric meters, environmental data, event query and alarm query, such as Figure 4 c. After the user selects Figure 4 b, the control operation interface is displayed. The control operation interface includes options of turning on all air switches, turning off all air switches, modifying address of air switches and modifying manufacturer of air switches, such as Figure 4 d. After the user selects Figure 4 b, the device parameter interface is displayed. The device parameter interface can include IP address of master station, port of master station, standby IP address, standby port, physical address, name of access point and control mode, such as Figure 4 e. After the user selects Figure 4 b, the local information interface is displayed. The local information interface includes the option of restarting the device and the software version number, such as Figure 4 f. After the user selects Figure 4 c, the air switch data interface is displayed. The air switch data interface includes voltage, current, active power, power factor and active energy of A phase, B phase and C phase corresponding to each air switch, such as Figure 4 g. After the user selects Figure 4 c, the electric meter data interface is displayed. The electric meter data interface includes address code corresponding to each electric meter, and voltage, current, active power, power factor and active energy of A phase, B phase and C phase, such as Figure 4 h. After the user selects Figure 4 c, the environmental data interface is displayed. The environmental data interface includes gateway address, environmental temperature, environmental humidity, chip temperature, power supply mode, clock voltage, digital input and digital output, such as Figure 4 i. After the user selects Figure 4 c, the event query interface is displayed. The event query interface includes time corresponding to each loop and time, such as Figure 4 j. After the user selects Figure 4 c, the alarm query interface is displayed. The alarm query interface includes alarm location and alarm event details, such as Figure 4 k. After the user selects Figure 4 d, the air switch address modification interface is displayed. The air switch address modification interface includes confirmation of number of air switches, current address of air switches, modified address of air switches, option of modifying address and option of refreshing address, such as Figure 5l as shown. The user selects Figure 5 After the user modifies the air switch manufacturer in d, the system displays a modification air switch manufacturer interface, which includes the names of various manufacturers. The user can select a manufacturer and make corresponding modifications, such as Figure 6 as shown in m.

[0087] Optionally, the key unit 107 is connected to the gateway processing unit 101, and the key unit 107 is configured to generate a key signal based on a user's pressing operation and send the key signal to the gateway processing unit 101.

[0088] The key unit 107 can include multiple keys, for example, it can include four keys: up, down, left, and right. The up key is used to add one or select a function forward, the down key is used to subtract one or select backward, the left key is used to return to selection, and the right key is used to confirm selection.

[0089] Optionally, the status unit 108 is connected to the gateway processing unit 101, and the status unit 108 is configured to display the working status of the intelligent gateway 10 and the power status of the intelligent gateway 10.

[0090] The status unit 108 includes a running status display lamp and a power status display lamp, which are respectively used to display the running status and power status of the intelligent gateway 10. For example, if the display lamp is green, it indicates that the status is normal, and if the display lamp is red, it indicates that the status is abnormal.

[0091] In this embodiment, the intelligent gateway includes a display unit, a key unit, and a status unit. The display unit is configured to display collected data and status information to the user. The gateway processing unit causes the display unit to display different content based on the user's pressing operation on the key unit, and sends a control signal to the unit in the corresponding device to control the monitoring device based on the user's operation. The status unit can prompt the user to take relevant actions according to different power status and running status, so as to avoid the intelligent gateway being unable to monitor the road lighting device in real time.

[0092] As an optional implementation, the intelligent gateway 10 further includes an acceleration sensor.

[0093] The acceleration sensor can be arranged on the shell of the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch, to sense whether the intelligent gateway 10 is tilted.

[0094] Optionally, the acceleration sensor is connected to the gateway processing unit 101, and the acceleration sensor is configured to send a tilt monitoring signal to the gateway processing unit 101 in real time.

[0095] Optionally, after the gateway processing unit 101 receives the tilt monitoring signal, it can display a tilt monitoring abnormal alarm in the alarm query interface in the display unit 106.

[0096] In the embodiment, the acceleration sensor is used to monitor whether the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch is tilted, so as to avoid the tilt of the intelligent gateway due to external force and affect the monitoring effect.

[0097] As an optional implementation, the intelligent gateway 10 further comprises a communication module, which comprises a Bluetooth unit, an Ethernet communication unit and a mobile communication unit.

[0098] Optionally, one end of the Bluetooth unit is connected to the gateway processing unit 101, and the Bluetooth unit is used to send information sent by the gateway processing unit 101 to the terminal device of the user through Bluetooth.

[0099] It is worth noting that the terminal device of the user also needs to have Bluetooth function and complete pairing with the Bluetooth unit in the intelligent gateway 10.

[0100] Optionally, one end of the Ethernet communication unit is connected to the gateway processing unit 101, and the Ethernet communication unit is used to send information sent by the gateway processing unit 101 to the remote server through Ethernet.

[0101] Optionally, one end of the mobile communication unit is connected to the gateway processing unit 101, and the mobile communication unit is used to send information sent by the gateway processing unit 101 to the terminal device of the user and / or the remote server through mobile communication.

[0102] The mobile communication unit can comprise a fourth-generation mobile communication antenna interface and a fifth-generation mobile communication interface, etc.

[0103] Optionally, the Ethernet communication unit can be used to communicate with the remote server under the condition that the current environment does not have mobile communication.

[0104] The user can query the information sent by the gateway processing unit 101 through the remote server or the terminal device, and send a control instruction through the remote server or the terminal device, so that the gateway processing unit 101 performs relevant operations based on the control instruction.

[0105] In the embodiment, the Bluetooth unit, the Ethernet unit and the mobile communication unit are used to communicate with the terminal device of the user and the remote server, so that the user can remotely control the monitoring device and obtain the collected data of the monitoring device.

[0106] As an optional implementation, the intelligent gateway 10 further comprises a power supply unit for providing power supply for the intelligent gateway 10.

[0107] As an optional implementation, Figure 6 is a schematic view of the appearance of an intelligent gateway provided by the embodiment of the application. As shown in ​As shown, the intelligent gateway comprises an intelligent gateway housing, a mobile communication unit, a switching value input interface, a switching value output interface, a display unit, a key unit, a state unit, and an RS485 communication interface unit.

[0108] Next, referring to ​ The structure of the intelligent air switch 20 in the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch will be described. ​ is a structural schematic diagram of an intelligent air switch provided by the present application. The intelligent air switch 20 comprises a plurality of air switch units 201, a sensor unit 202, and an air switch processing unit 203.

[0109] Optionally, the incoming line end of each air switch unit 201 is used to access a lighting power supply, the outgoing line end of each air switch unit 201 is connected with each road lighting facility, and the control end of each air switch unit 201 is connected with the air switch processing unit 203.

[0110] Optionally, the sensor unit 202 is connected with the collection end of the air switch processing unit 203, and the sensor unit 202 is used to collect the current, voltage, and temperature flowing through each air switch unit 201.

[0111] Optionally, the sensor unit 202 can be an integrated sensor, which can collect data such as current, voltage, and temperature flowing through each air switch unit 201. It is worth mentioning that the sensor unit 202 can be arranged at the incoming line end or the outgoing line end of each air switch unit 201.

[0112] Optionally, the communication end of the air switch processing unit 203 is connected with the intelligent gateway 10.

[0113] Optionally, the air switch processing unit 203 is used to determine active power, power factor, and active energy based on current and voltage, and send the current, voltage, temperature, active power, power factor, and active energy of each air switch unit 201 to the intelligent gateway 10, receive the opening and closing control signal sent by the intelligent gateway 10, and control the opening and closing of each air switch unit 201 according to the opening and closing control signal.

[0114] Specifically, one intelligent air switch 20 can comprise a plurality of air switch units 201, and each air switch unit 201 is used to provide current-limiting protection for the power supply of one road lighting facility.

[0115] In the present embodiment, the plurality of air switch units in the intelligent air switch are used to protect the power supply of each lighting facility, the sensor unit and the air switch processing unit send the collected data to the intelligent gateway, and the air switch processing unit controls the opening and closing of each air switch unit according to the opening and closing control signal, thereby realizing the centralized control of each air switch unit and the centralized control of the power supply of the road lighting facility.

[0116] As an optional implementation, the sensor module 50 comprises a temperature sensor and a humidity sensor.

[0117] Optionally, one end of the temperature sensor is connected to the intelligent gateway 10.

[0118] Optionally, one end of the humidity sensor is connected to the intelligent gateway 10.

[0119] Optionally, the sensor module 50 can further comprise other sensors for monitoring the environment and be connected to the intelligent gateway 10, so as to send the collected data to the intelligent gateway 10.

[0120] In this embodiment, the temperature sensor and the humidity sensor in the sensor module collect the environmental data of the road lighting facility detection device, so that the intelligent gateway determines the abnormality according to the environmental data and makes a corresponding response.

[0121] As an optional implementation, the on-off quantity module 60 comprises a cabinet door switch sensor and a water immersion sensor.

[0122] Optionally, one end of the cabinet door switch sensor is connected to the intelligent gateway 10. The cabinet door switch sensor is used to monitor whether the cabinet door of the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch is closed. If not, the intelligent gateway 10 is sent abnormal data.

[0123] Optionally, one end of the water immersion sensor is connected to the intelligent gateway 10.

[0124] Optionally, the on-off quantity module 60 can further comprise other sensors for monitoring the on-off quantity and be connected to the intelligent gateway 10, so as to send the on-off quantity data to the intelligent gateway 10.

[0125] In this embodiment, the cabinet door switch sensor and the water immersion sensor in the on-off quantity module collect the on-off quantity data of the road lighting facility detection device, so that the intelligent gateway determines the abnormality according to the on-off quantity data and makes a corresponding response.

[0126] As an optional implementation, the on-off quantity control module 70 comprises a cooling device and a dehumidification device.

[0127] Optionally, the control end of the cooling device and the control end of the dehumidification device are respectively connected to the intelligent gateway 10.

[0128] The cooling device can be a fan, and the dehumidification device can be a water pump.

[0129] After the intelligent gateway 10 detects the environmental abnormality through the sensor module 50, the control signal is sent to the device in the on-off quantity control module 70 according to the abnormal environmental value, so as to start the corresponding device in the on-off quantity control module 70 to cope with the abnormal situation.

[0130] In the embodiment, the abnormal environment is responded by the cooling device and the dehumidifying device, so that the box environment of the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch is timely out of the abnormal state, and the safety of the monitoring device is ensured.

[0131] The embodiment also provides a road lighting facility monitoring system based on an intelligent gateway and an intelligent air switch, which comprises a road lighting facility and the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch. The road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch is connected with the road lighting facility.

[0132] The above merely illustrates the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application.

Claims

1. A road lighting facility monitoring device based on intelligent gateway and intelligent air opening, characterized by, The road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch comprises an intelligent gateway, at least one intelligent air switch, an electric meter module, a data acquisition module, a sensor module, an on-off quantity module and an on-off quantity control module; The communication end of each intelligent air switch, the communication end of the electric meter module, the communication end of the sensor module, the communication end of the data acquisition module, the communication end of the sensor module, the communication end of the on-off quantity module and the communication end of the on-off quantity control module are connected with the intelligent gateway respectively; The incoming line end of each intelligent air switch is used for accessing the lighting power supply, and the outgoing line end of each intelligent air switch is used for connecting with the road lighting facility; The intelligent gateway is used for receiving the acquisition data sent by each intelligent air switch, the electric meter module, the data acquisition module, the sensor module, the on-off quantity module and the on-off quantity control module, and sending control signals to each intelligent air switch, the electric meter module, the data acquisition module and the on-off quantity control module respectively.

2. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 1 wherein, The intelligent gateway comprises a first interface unit, a second interface unit, a third interface unit, a fourth interface unit and a gateway processing unit; One end of the first interface unit is connected with the communication end of the sensor module, and the other end of the first interface unit is connected with the gateway processing unit; One end of the second interface unit is connected with the communication end of the on-off quantity module, and the other end of the second interface unit is connected with the gateway processing unit, and the second interface unit is used for receiving the on-off quantity data sent by the on-off quantity module; One end of the third interface unit is connected with the communication end of the on-off quantity control module, and the other end of the third interface unit is connected with the gateway processing unit, and the third interface unit is used for sending the on-off quantity control signal generated by the gateway processing unit to the on-off quantity control module; The communication end of each intelligent air switch, the communication end of the electric meter module, the communication end of the sensor module, the communication end of the data acquisition module, the communication end of the sensor module, the communication end of the on-off quantity module and the communication end of the on-off quantity control module are connected with the intelligent gateway respectively; 3. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 2, wherein, The intelligent gateway further comprises a display unit, a key unit and a state unit; The display unit is connected with the gateway processing unit, and the display unit is used for displaying the display information sent by the gateway processing unit; The key unit is connected with the gateway processing unit, and the key unit is used for generating the key signal based on the pressing operation of the user and sending the key signal to the gateway processing unit; The state unit is connected with the gateway processing unit, and the state unit is used for displaying the working state of the intelligent gateway and the power state of the intelligent gateway.

4. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 2, wherein, The intelligent gateway further comprises an acceleration sensor; The acceleration sensor is connected with the gateway processing unit, and the acceleration sensor is used for sending the inclination monitoring signal to the gateway processing unit in real time.

5. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 2, wherein, The intelligent gateway further comprises a communication module, which comprises a Bluetooth unit, an Ethernet communication unit and a mobile communication unit; One end of the Bluetooth unit is connected to the gateway processing unit, and the Bluetooth unit is used to send information sent by the gateway processing unit to the terminal device of the user through Bluetooth; One end of the Ethernet communication unit is connected to the gateway processing unit, and the Ethernet communication unit is used to send information sent by the gateway processing unit to the remote server through Ethernet; One end of the mobile communication unit is connected to the gateway processing unit, and the mobile communication unit is used to send information sent by the gateway processing unit to the terminal device of the user and / or the remote server through mobile communication.

6. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 1, wherein, The intelligent air switch comprises a plurality of air switch units, a sensor unit and an air switch processing unit; The line-in end of each air switch unit is used to access the lighting power supply, the line-out end of each air switch unit is connected to the road lighting facility, and the control end of each air switch unit is connected to the air switch processing unit; The sensor unit is connected to the collection end of the air switch processing unit, and the sensor unit is used to collect the current, voltage and temperature flowing through each air switch unit; The communication end of the air switch processing unit is connected to the intelligent gateway.

7. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 1, wherein, The sensor module comprises a temperature sensor and a humidity sensor; One end of the temperature sensor is connected to the intelligent gateway; One end of the humidity sensor is connected to the intelligent gateway.

8. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 1, wherein, The on-off quantity module comprises a box door switch sensor and a water immersion sensor; One end of the box door switch sensor is connected to the intelligent gateway; One end of the water immersion sensor is connected to the intelligent gateway.

9. The smart gateway and smart air gap based road lighting facility monitoring device as claimed in claim 1, wherein, The on-off quantity control module comprises a cooling device and a dehumidification device; The control end of the cooling device and the control end of the dehumidification device are respectively connected to the intelligent gateway.

10. A road lighting facility monitoring system based on intelligent gateway and intelligent air gap, characterized by, The road lighting facility monitoring system based on the intelligent gateway and the intelligent air switch comprises a road lighting facility and the road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch according to any one of claims 1-9; The road lighting facility monitoring device based on the intelligent gateway and the intelligent air switch is connected to the road lighting facility.