A non-intrusive LED luminaire status monitoring system
By using a non-intrusive monitoring system with a mobile installation platform and simulated external trigger signals, the compatibility and maintenance blind spots of LED lighting monitoring have been solved, enabling comprehensive status monitoring and diversified maintenance methods.
Patent Information
- Application Number
- CN202111608637.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2041-12-24
AI Technical Summary
In existing technologies, the status monitoring of LED lighting is mainly interventional monitoring, which is difficult to be compatible with products from multiple brands, the monitoring is not comprehensive, and external trigger signals are not monitored, resulting in blind spots in operation and maintenance.
A non-invasive monitoring system is adopted, including a mobile installation platform, a control module, a status acquisition module, and a signal simulation module. It acquires the status information of LED lights through infrared cameras and sensor components, and simulates external trigger signals for monitoring.
It enables comprehensive monitoring of LED lighting, eliminates blind spots in operation and maintenance, has strong compatibility, is easy to operate, and can monitor appearance, illuminance and environmental conditions, supporting rotating, fixed-point and timed inspections.
Smart Images

Figure CN114384440B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of LED lighting monitoring technology, specifically relating to a non-intrusive LED lighting status monitoring system. Background Technology
[0002] LEDs are hailed as the fourth generation of light sources in human history due to their novel light-emitting form and outstanding energy-saving advantages. Compared to traditional lighting methods, LED lighting fixtures exhibit significant energy-saving characteristics: releasing more light energy, consuming less electrical energy, and having an exceptionally long lifespan. Because of these substantial advantages over traditional lighting, LED lights have been widely used in scenarios such as subways and urban utility tunnels. However, LED lighting still accounts for a large proportion of energy consumption in these scenarios. To reduce energy consumption, LED lighting is typically kept in standby mode or at reduced illuminance when there is no lighting demand. The lights only resume normal operation when triggered by infrared, audible, or illuminance signals from maintenance personnel. Since LED lights in these scenarios operate at low power or in standby mode most of the time, comprehensive status monitoring of the LED lighting systems is necessary to ensure they function normally when lighting demand arises, eliminating blind spots in maintenance.
[0003] In existing technologies, the status monitoring of LED lighting lamps mainly involves interventional monitoring of the LED lighting lamp body when it is powered on. For LED lighting lamp products from a wide variety of brands, interventional monitoring is difficult to implement and promote. Furthermore, it only monitors the LED lighting lamp body when it is powered on, without monitoring the appearance of the LED lighting lamp or the status of external triggering systems such as infrared, sound, and illuminance signals. This leaves blind spots in the maintenance of LED lighting lamps and poses certain maintenance risks. Summary of the Invention
[0004] To overcome the above-mentioned technical defects, the present invention provides a non-intrusive LED lighting status monitoring system, which can conveniently monitor LED lighting.
[0005] To solve the above problems, the present invention is implemented according to the following technical solution:
[0006] A non-intrusive LED lighting status monitoring system includes:
[0007] The installation platform can be moved and installed inside subway tracks or urban utility tunnels;
[0008] The control module is connected to the installation platform and the external monitoring system, and drives the installation platform to move within the subway track or urban integrated utility tunnel according to the inspection instructions;
[0009] A state acquisition module is arranged on the mounting platform and connected with the control module, and acquires state information of the LED lighting lamp and sends the state information to the control module.
[0010] As a further improvement of the present application, the inspection instruction comprises a turn-by-turn inspection instruction, a fixed-point inspection instruction and a fixed-time inspection instruction.
[0011] As a further improvement of the present application, the state acquisition module comprises:
[0012] An infrared camera is arranged on the mounting platform and connected with the control module, and acquires appearance information and illumination information of the LED lighting lamp.
[0013] A sensor assembly is arranged on the mounting platform and connected with the control module, and acquires environmental information of the LED lighting lamp.
[0014] The control module is connected with the infrared camera and the sensor assembly, acquires the appearance information, the illumination information and the environmental information, and sends the information to an external monitoring system.
[0015] As a further improvement of the present application, the present application further comprises:
[0016] A signal simulation module is arranged on the mounting platform and connected with the control module, and is used for sending a simulation signal, and the control module sends an inspection instruction according to the simulation signal.
[0017] As a further improvement of the present application, the signal simulation module comprises:
[0018] An infrared signal generator is arranged on the mounting platform and connected with the control module, and is used for sending a human body simulation signal, and the human body simulation signal is used for triggering the LED lighting lamp to start when a human body passes by the LED lighting lamp.
[0019] A sound generator is arranged on the mounting platform and connected with the control module, and is used for sending a sound signal, and the sound signal is used for triggering the LED lighting lamp to start by sound.
[0020] An external environment simulator is arranged on the mounting platform and connected with the control module, and is used for sending an environmental signal, and the environmental signal is used for triggering the LED lighting lamp to start or stop when an external environment changes.
[0021] As a further improvement of the present application, the present application further comprises:
[0022] A power module is connected with the control module and an external power supply, and connects the state acquisition module and the signal simulation module according to the inspection instruction, and provides power supply for the control module, the state acquisition module and the signal simulation module.
[0023] As a further improvement of the present application, the control module comprises:
[0024] a control unit for issuing the inspection instruction;
[0025] a communication unit connected with the control unit, receiving the inspection instruction, the communication unit is also connected with the state acquisition module and the signal simulation module, for sending the inspection instruction to the state acquisition module and the signal simulation module.
[0026] As a further improvement of the present application, the installation platform comprises:
[0027] an installation mechanism connected with an external installation foundation;
[0028] a motion mechanism connected with the installation mechanism and the control module, the control module drives the motion mechanism according to the inspection instruction to drive the installation mechanism.
[0029] As a further improvement of the present application, the power module is provided with an acquisition component for obtaining the working information of the power module, the acquisition component is connected with the control module and sends the working information to the control module.
[0030] As a further improvement of the present application, the motion mechanism is provided with a motion mechanism sensor for obtaining the motion information of the motion mechanism, the motion mechanism is connected with the control module and sends the motion information to the control module.
[0031] Compared with the prior art, the present application has the following beneficial effects: the present application is equipped with a movable installation platform, which can collect the state information of the LED lighting lamp in all directions, eliminates the operation and maintenance dead angle, and adopts non-invasive monitoring, which not only has strong compatibility, but also is easy to operate. BRIEF DESCRIPTION OF DRAWINGS
[0032] The specific embodiments of the present application will be further described in detail below in combination with the drawings, in which:
[0033] Figure 1 a frame diagram of the non-invasive LED lighting lamp state monitoring system described in embodiment 1;
[0034] Figure 2 a logic control diagram of the LED lighting lamp opening or closing in embodiment 1. DETAILED DESCRIPTION
[0035] The preferred embodiments of the present application will be described below in combination with the drawings, and it should be understood that the preferred embodiments described here are only used to illustrate and explain the present application, and are not used to limit the present application.
[0036] Embodiment 1
[0037] The embodiment provides a non-interventional LED lighting lamp state monitoring system, which comprises a mounting platform, a control module, a signal simulation module and a state acquisition module, as shown in the figure. Figure 1 The mounting platform is movably arranged in a subway track or a city comprehensive pipe gallery; the control module is connected with the mounting platform and an external monitoring system, and drives the mounting platform to move in the subway track or the city comprehensive pipe gallery according to a patrol instruction; the signal simulation module is arranged on the mounting platform and connected with the control module, and is used for sending a simulation signal; the control module sends a patrol instruction according to the simulation signal; the state acquisition module is arranged on the mounting platform and connected with the control module, moves with the mounting platform, acquires state information of the LED lighting lamp, sends the state information to the control module, and the control module sends the state information to the external monitoring system.
[0038] Specifically, considering the characteristics of large bending radius of the subway section and the city comprehensive pipe gallery, the mounting platform can move along the laying direction of the pipeline in the subway track and the city comprehensive pipe gallery, the mounting platform is arranged on the inner wall of the subway section and the city comprehensive pipe gallery, and the movement of the mounting platform does not affect the operation of other equipment. In combination with the characteristics that the subway section and the city comprehensive pipe gallery are segmented due to fire-fighting requirements, one set or multiple sets of movable mounting platforms can be arranged in each physical segment, so that the LED lighting lamp state monitoring can be performed in all directions.
[0039] Preferably, the patrol instruction comprises a turn-by-turn patrol instruction, a fixed-point patrol instruction and a fixed-time patrol instruction, the setting of the instruction can be set according to an actual monitoring period, or the patrol instruction type can be determined by pre-storing the patrol instruction in the control module through a selected mode.
[0040] Further, the state acquisition module comprises an infrared camera and a sensor assembly, the infrared camera is used for acquiring appearance information and illumination information of the LED lighting lamp, considering the diversity of LED lighting lamp arrangement in different scenes, the infrared camera can rotate by a certain angle to shoot, so as to realize focusing on the body of the LED lighting lamp, and when the mounting platform moves, the state of the LED lighting lamp at different positions can be patrolled. The sensor assembly is used for acquiring environmental information of the LED lighting lamp, the sensor assembly comprises a temperature sensor and a humidity sensor, and when the mounting platform moves, the environment state of the LED lighting lamp at different positions can be monitored. The control module is connected with the infrared camera and the sensor assembly, acquires and sends the appearance information, the illumination information and the environmental information to the external monitoring system, and provides data support for system operation.
[0041] Specifically, the signal simulation module comprises: an infrared signal generator, a sound generator and an external environment simulator, wherein the infrared signal generator is configured to emit a human body simulation signal, the human body simulation signal is configured to indicate that the LED lighting lamp is triggered to start when a human body passes through the LED lighting lamp; the sound generator is configured to emit a sound signal, the sound signal is configured to indicate that the LED lighting lamp is triggered to start by sound when a human body passes through the LED lighting lamp; and the external environment simulator is configured to emit an environment signal, the environment signal is configured to indicate that the LED lighting lamp is started or stopped when the external environment changes.
[0042] The infrared signal generator can be implemented by an infrared camera in the state acquisition module, which simulates specific infrared rays with a wavelength of 10 μm emitted from the surface of a human body to realize the process of triggering the LED lighting lamp to start when a human body passes through the LED lighting lamp, so as to monitor the state of the LED lighting lamp infrared signal triggering system and cooperate with the infrared camera of the state acquisition unit to monitor the state of the LED lighting lamp. The sound signal is simulated by the sound generator to simulate the sound process of a human body and the sound process of a human body contacting with the environment, to realize the process of triggering the LED lighting lamp to start when a human body passes through the LED lighting lamp, so as to monitor the state of the LED lighting lamp sound signal triggering system and cooperate with the infrared camera of the state acquisition unit to monitor the state of the LED lighting lamp. The external environment simulator can be a light emitting device to simulate the process of changing the environmental illumination, to realize the process of triggering the LED lighting lamp to start or stop under different environmental illumination, so as to monitor the state of the LED lighting lamp environmental illumination signal triggering system and cooperate with the infrared camera of the state acquisition unit to monitor the state of the LED lighting lamp.
[0043] In addition, the embodiment further comprises: a power module connected with the control module, an external power supply, and connected with the state acquisition module and the signal simulation module according to the inspection instruction, to provide multi-standard power supply for the control module, the state acquisition module and the signal simulation module. In other words, the power module always provides power supply for the control module, and is used to trigger the power module to be put into operation and removed, when no inspection instruction is received, the power module removes the power supply for the modules other than the control module to reduce energy consumption, and when the inspection instruction is received, the power module puts all the modules into operation to prepare for the inspection.
[0044] Further, the control module comprises: a control unit and a communication unit, the control unit is configured to issue an inspection instruction; the communication unit is connected with the control unit and receives the inspection instruction, and the communication unit is also connected with the state acquisition module and the signal simulation module, and is configured to send the inspection instruction to the state acquisition module and the signal simulation module. The communication form of the communication unit can adopt wired communication and wireless communication, and considering the engineering implementability and economy, the wired communication mode is recommended to adopt power carrier communication, and the wireless communication mode is recommended to adopt ZigBee communication.
[0045] Preferably, the mounting platform comprises a mounting mechanism connected with the external mounting base and a movement mechanism connected with the mounting mechanism and the control module, the control module driving the movement mechanism to drive the mounting mechanism according to the inspection instruction.
[0046] In the embodiment, the power module is provided with an acquisition component for acquiring the working information of the power module, the acquisition component being connected with the control module and sending the working information to the control module. The acquisition component can be a voltage acquisition sensor or a current acquisition sensor, which acquires the current working information of the power module and uploads it to the control module, thereby providing data support for the operation of the monitoring system.
[0047] In addition, the movement mechanism is provided with a movement mechanism sensor for acquiring the movement information of the movement mechanism, the movement mechanism being connected with the control module and sending the movement information to the control module. The movement mechanism sensor can be a rotation speed sensor, which acquires the rotation speed of the motor and sends it to the control module, thereby providing data support for the operation of the monitoring system.
[0048] The non-invasive LED lighting lamp state monitoring system comprises three states: shutdown, standby and working, which are described in detail as follows:
[0049] 1. When the monitoring system is in the shutdown state, the external power supply does not provide power to the power module, and the control module does not interact with the state acquisition module, the signal simulation module and the external monitoring system. If the monitoring system is shut down in the standby state, the mounting platform is parked at the initial default position. If the monitoring system is shut down in the working state, the mounting platform is parked at the position at the moment of shutdown. If it is necessary to convert the monitoring system from the shutdown state to the standby or working state, local and remote operation control can be adopted.
[0050] 2. When the monitoring system is in the standby state, the external power supply provides power to the power module, and the power module only supplies power to the control module, the control module interacts with the external monitoring system, and the mounting platform is parked at the initial default position. If the system receives an inspection instruction, the system is converted from the standby state to the working state.
[0051] 3. As Figure 2As shown, when the monitoring system is in working state, the external power supply provides power to the power module, the power module provides power to the state acquisition module and the signal simulation module, and the control module interacts with the state acquisition module and the signal simulation module. The inspection instruction includes round-robin inspection and fixed-point inspection, and can also set a timing inspection according to the operation and maintenance cycle. When the monitoring system receives the inspection instruction, the installation platform starts to move according to the predetermined track, and the monitoring system numbers the LED lighting lamp according to the moving distance of the installation platform. When the LED lighting lamp moves to a specific position, the monitoring system releases a trigger signal (such as an infrared signal, a sound information, and different environmental illumination information) through the analog signal unit, and monitors the state of the LED lighting lamp (such as the illumination of the LED lighting lamp, whether it is closed, whether it is turned on, etc.) through the infrared camera of the state acquisition unit, and synchronously monitors the environmental state information of the position. After completing the state monitoring of the position, it moves to the next position for state monitoring. The state information of the LED lighting lamp at each position, the environmental state information, and the state information of the internal sub-units of the system are named and uploaded to the local and remote according to the initial numbering combined with the time information. The collected information is used for further analysis to intelligently operate and maintain the LED lighting lamp system.
[0052] Based on the above settings, the communication between the control module and the installation platform is used to trigger the movement mechanism of the installation platform to move according to the inspection instruction, the communication between the control module and the state acquisition module is used to upload the collected state information of the appearance illumination of the LED lighting lamp, the state information of the environmental temperature and humidity, and the state information of the internal modules of the system to the local, providing data support for system operation; the communication between the control module and the signal simulation module is used to trigger the output of the external trigger signals such as analog infrared signals, sound signals, and illumination signals, to ensure that the inspection of the LED lighting lamp covers the external trigger signal system state monitoring. The information interaction between the monitoring system and the external monitoring system includes receiving the inspection instruction of the external monitoring system and uploading the local inspection monitoring data to the external monitoring system.
[0053] In summary, the embodiment has the following technical effects:
[0054] 1. It can match all manufacturers' LED products without the need for targeted adaptation of LED products, and the system has good compatibility;
[0055] 2. It can monitor the appearance, illumination, and environmental state of the LED lighting lamp, and the trigger system of the LED lighting lamp, realize all-round state monitoring of the LED lighting lamp, and eliminate the operation and maintenance dead angle;
[0056] 3. It can monitor the LED lighting lamp by moving the installation platform, and has strong mobility;
[0057] 4. The rotation inspection and fixed-point inspection can be realized, and the timing inspection can be set according to the operation and maintenance cycle, and the operation and maintenance mode is diversified.
[0058] The above are only preferred embodiments of the present application, and are not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A non-intrusive LED luminaire state monitoring system, characterized by, The utility model relates to a kind of LED lighting inspection system, including: Mounting platform, movably arranged in subway track or city comprehensive pipe gallery; Control module, with the mounting platform, external monitoring system is connected, and according to the inspection instruction driving the mounting platform moves in subway track or city comprehensive pipe gallery; Signal simulation module, set on the mounting platform and connected with the control module, for sending analog signal, the control module according to the analog signal sends inspection instruction; State acquisition module, set on the mounting platform and connected with the control module, with the mounting platform moves, obtains the state information of LED lighting lamp, sends the state information to the control module, and the control module sends the state information to external monitoring system; The signal simulation module includes: Infrared signal generator, for sending human body analog signal, the human body analog signal is used to indicate that human body passes through LED lighting lamp, triggers LED lighting lamp to start; Sound generator, for sending sound signal, the sound signal is used to indicate that human body passes through sound trigger LED lighting lamp to start; External environment simulator, for sending environment signal, the environment signal is used to indicate when external environment changes, LED lighting lamp starts or closes.
2. The non-invasive LED luminaire state monitoring system of claim 1, wherein, The inspection instruction includes: in turn inspection instruction, fixed-point inspection instruction and timing inspection instruction.
3. The non-invasive LED luminaire state monitoring system of claim 1, wherein, The state acquisition module includes: Infrared camera, for obtaining the appearance information of LED lighting lamp, illumination information; Sensor component, for obtaining the environmental information of LED lighting lamp; The control module is connected with the infrared camera, the sensor component, obtains and sends the appearance information, illumination information, the environmental information to external monitoring system.
4. The non-invasive LED luminaire state monitoring system according to any one of claims 1 to 3, characterized in that, Further including: Power module, with the control module, external power supply is connected, and according to the inspection instruction connection state acquisition module, signal simulation module, for the control module, the state acquisition module, signal simulation module provides power supply.
5. The non-invasive LED luminaire state monitoring system of claim 4, wherein, The control module includes: Control unit, for sending the inspection instruction; Communication unit, connected with the control unit, receives the inspection instruction, and the communication unit is also connected with the state acquisition module, signal simulation module, for sending the inspection instruction to the state acquisition module, signal simulation module.
6. The non-invasive LED luminaire state monitoring system of claim 4, wherein, The mounting platform includes: Mounting mechanism, connected with external installation foundation; Motion mechanism, with the mounting mechanism, the control module is connected, and the control module drives the motion mechanism according to inspection instruction, to drive the mounting mechanism.
7. The non-invasive LED luminaire state monitoring system of claim 4, wherein, The power module is provided with acquisition component, for obtaining the working information of the power module, and the acquisition component is connected with the control module, and sends the working information to the control module.
8. The non-invasive LED luminaire state monitoring system of claim 6, wherein, Motion mechanism sensor is arranged on the motion mechanism, for obtaining the motion information of the motion mechanism, and the motion mechanism is connected with the control module, and sends the motion information to the control module.
Citation Information
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