Integrated lamp with monitoring function

By integrating information from the lighting control module and the monitoring module through a serial communication module, the problems of flickering lights when powered by a single battery and inaccurate power display when powered by a dual battery are solved, thus achieving stable lighting and power display for the lights.

CN223843929UActive Publication Date: 2026-01-27ZHONGSHAN STAR OF DANCE LIGHTING CO LTD
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Patent Information

Application Number
CN202520149785.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-27
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing lighting fixtures with monitoring functions have problems such as flickering lights when powered by a single battery and inaccurate power display when powered by dual batteries.

Method used

The system uses serial communication between the lighting control module and the monitoring module. The serial communication module transmits information from the lighting control module to the monitoring module, and the information is then fused in the monitoring module before being sent to the backend to achieve power display and control of the lighting control module.

Benefits of technology

In dual-battery power supply mode, flickering of lights is avoided, and the power levels of the lighting control module and monitoring module are accurately displayed, enabling remote control and management of the lights.

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Abstract

The utility model discloses an integrated lamp with a monitoring function, which comprises a lamp control module and a monitoring module, the lamp control module comprises a lamp for lighting, a battery pack I for supplying power to the lamp, a controller I for controlling the lamp and a serial port communication module for being connected with the monitoring module, the monitoring module comprises a camera used for monitoring, a battery pack II used for supplying power to the camera, a controller II used for controlling the camera and a communication module used for sending information of the monitoring module outwards and receiving and sending control information, and the information of a lamp of the lamp control module and the information of the battery pack I are sent to the background after being sent to the background through serial communication. And receiving the control information. The device is simple in structure and efficient; double batteries are used for supplying power, so that the camera does not cause flickering of light; the serial port communication module transmits information of the lamp control module to the monitoring module and then sends the information to a background, so that the electric quantity of the lamp control module and the monitoring module can be obtained; and information can be received through the monitoring module to control the lamp control module.
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Description

Technical Field

[0001] This utility model relates to the field of outdoor lighting technology, specifically an integrated lighting fixture with monitoring function. Background Technology

[0002] Existing lighting fixtures with monitoring functions generally fall into two power supply categories: single-battery power supply and dual-battery power supply. When the monitoring and lighting work together, single-battery power supply fixtures are prone to mutual interference. When the camera is turned on and off, the light may flicker due to voltage and current fluctuations. Dual-battery power supply can solve the mutual interference problem, but it is difficult to accurately display the battery levels of both batteries through the monitoring backend data. Summary of the Invention

[0003] In view of this, the present invention provides an integrated lighting fixture with monitoring function.

[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is: an integrated lighting fixture with monitoring function, including a lighting control module and a monitoring module. The lighting control module includes a lighting fixture for illumination, a battery pack I for powering the lighting fixture, a controller I for controlling the lighting fixture, and a serial communication module for connecting to the monitoring module. The monitoring module includes a camera for monitoring, a battery pack II for powering the camera, a controller II for controlling the camera, and a communication module for sending and receiving control information from the monitoring module. The lighting fixture and battery pack I information of the lighting control module are transmitted to the monitoring module through the serial communication, and the unified information is sent to the backend through the monitoring module, as well as the control information received from the monitoring module is received.

[0005] Preferably, in the lighting module, the controller I is electrically connected to the lighting fixture and the serial communication module, and the battery pack I is electrically connected to the lighting fixture, the controller I, and the serial communication module.

[0006] Preferably, in the monitoring module, the controller II is electrically connected to the camera and the communication module respectively, and the battery pack II is electrically connected to the camera, the controller II and the communication module respectively.

[0007] Preferably, the lighting control module further includes a solar photovoltaic panel electrically connected to the controller I and the battery pack I.

[0008] The main advantages of this invention are as follows: simple and efficient structure; the camera does not cause the lights to flicker when powered by dual batteries; a serial communication module is set between the lighting control module and the monitoring module to transmit the information of the lighting control module to the monitoring module in a timely manner, and then the information is sent to the backend after being integrated by the monitoring module. The backend can then accurately know the power levels of the lighting control module and the monitoring module respectively; the monitoring module can also receive information to control the lighting control module. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the overall process structure of this utility model;

[0010] Figure 2 This is a schematic diagram of a product according to an embodiment of the present utility model.

[0011] System circuit structure Detailed Implementation

[0012] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, so that the technical solution of this utility model can be more easily understood and mastered. Example

[0013] according to Figure 1-2 As shown, an integrated lighting fixture with monitoring function includes a lighting control module 1 and a monitoring module 2. When powered by a single battery, voltage and current fluctuations occur in the circuit during the start-up and shutdown of the monitoring module 2, affecting the connected lighting control module 1 and causing the light to flicker. Although dual-battery power supply solves the flickering problem, while the monitoring module 2 can be controlled via a backend app for start-up, shutdown, and reset, and its information can be displayed, the integration between the lighting control module 1 and the monitoring module 2 is not high. Therefore, information from the lighting control module 1, not limited to power information, cannot be transmitted to the monitoring backend app, and the lighting control module 1 cannot be controlled via the monitoring backend app.

[0014] In this application, the lighting control module 1 includes a lamp for illumination, a battery pack I for powering the lamp, a controller I for controlling the lamp, and a serial communication module for connecting to the monitoring module 2. Specifically, in the lamp module, the controller I is electrically connected to both the lamp and the serial communication module, and the battery pack I is electrically connected to the lamp, the controller I, and the serial communication module. The monitoring module 2 includes a camera for monitoring, a battery pack II for powering the camera, a controller II for controlling the camera, and a communication module for sending and receiving control information from the monitoring module 2. Specifically, in the monitoring module 2, the controller II is electrically connected to both the camera and the serial communication module. The battery pack II is electrically connected to the camera, controller II, and communication module. The serial communication module transmits the lighting control module 1's lighting fixture and battery pack I information to the monitoring module 2. The monitoring module 2 then merges and unifies the information before sending it to the backend, and receives control information from the monitoring module 2. The monitoring module 1 can be monitored and controlled simultaneously via a monitoring backend app. The power information of both the monitoring module 2 and the lighting control module 1 can be displayed accurately and promptly. Furthermore, the monitoring module 1 can control the lighting fixtures, such as selecting lighting curves, adjusting light intensity, and setting lighting modes.

[0015] The lighting control module 1 also includes a solar photovoltaic panel electrically connected to the controller I and the battery pack I. During the day, the solar photovoltaic panel charges the battery pack I. Once the battery pack I is fully charged, the controller I will cut off the charging to protect the battery pack I.

[0016] The lighting control module 1 can perform the following functions: (1) It connects to the monitoring module 2 via a serial communication module, sends the power information, lighting status, and brightness of the lighting control module 1 to the monitoring module 2, and receives control commands from the monitoring module 2; (2) The lights automatically turn on at night and the lighting mode is adjusted via the monitoring module 2; (3) The battery pack I is charged via a solar photovoltaic panel and disconnected after it is fully charged; (4) When the power is insufficient, the brightness of the lighting control module 1 can be adjusted, and the output of the battery pack I is disconnected before the power is depleted to prevent the battery pack I from being over-discharged.

[0017] The monitoring module 2 can perform the following functions: (1) When monitoring is turned on, it can take pictures when someone is present and keep in a low-power standby state when no one is present; (2) It can receive information from the lighting control module 1 through the serial communication module, merge the information from the lighting control module 1 and the information from the monitoring module 2 and send it to the monitoring backend app in a timely manner, such as the power information of both, and can send control command information to the lighting control module 1 to control the operation of the lighting control module 1.

Claims

1. An integrated lighting fixture with monitoring function, comprising a lighting control module and a monitoring module, characterized in that: The lighting control module includes a lighting fixture, a battery pack I that powers the lighting fixture, a controller I that controls the lighting fixture, and a serial communication module for connecting to the monitoring module. The monitoring module includes a camera for monitoring, a battery pack II that powers the camera, a controller II that controls the camera, and a communication module for sending and receiving control information from the monitoring module. The lighting fixture and battery pack I information from the lighting control module are transmitted to the monitoring module via the serial communication, and the monitoring module merges and unifies the information and sends it to the backend, and receives control information received from the monitoring module.

2. The integrated lighting fixture with monitoring function according to claim 1, characterized in that: In the lighting module, the controller I is electrically connected to the lighting fixture and the serial communication module, and the battery pack I is electrically connected to the lighting fixture, the controller I, and the serial communication module.

3. The integrated lighting fixture with monitoring function according to claim 1, characterized in that: In the monitoring module, the controller II is electrically connected to the camera and the communication module, and the battery pack II is electrically connected to the camera, the controller II, and the communication module.

4. An integrated lighting fixture with monitoring function according to claim 1, characterized in that: The lighting control module also includes a solar photovoltaic panel electrically connected to the controller I and the battery pack I.