Real-time debugging and monitoring device for fire control system

By introducing a debugging main control chip, communication interface, storage and display module, and Bluetooth module into the fire control system, the problems of real-time display of module status information and forwarding of control commands in the fire control system are solved, and efficient operation and maintenance in complex environments are achieved.

CN223986291UActive Publication Date: 2026-03-10JIANGSU ZHIANXING ENERGY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing fire control systems, when assembled and in operation, struggle to provide real-time and intuitive display of status information for each module. Furthermore, monitoring is limited by factors such as installation distance and power consumption, leading to maintenance challenges.

Method used

It adopts a combination of debugging main control chip, communication interface module, storage module, display module and Bluetooth module. It obtains the status and parameter information of fire control system through communication interface, and communicates with debugging control equipment through Bluetooth module to realize real-time display and control command forwarding.

Benefits of technology

It enables rapid and intuitive access and debugging of control equipment without being limited by cabin space and power supply, improving operation and maintenance efficiency. It also facilitates the installation, maintenance, upgrade and repair of fire control systems, simplifying the installation, maintenance, upgrade and repair process.

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Abstract

The utility model discloses a real-time debugging and monitoring device for a fire control system. The real-time debugging and monitoring device comprises a debugging main control chip; the communication interface module is used for being in communication connection with a fire control system to obtain the working state and parameter information of the fire control system and sending the working state and parameter information to the debugging main control chip; a storage module; the display module is used for displaying the working state and parameter information in real time; and the Bluetooth module is used for being in wireless communication connection with debugging control equipment and transmitting a control instruction sent by the accessed modulation control equipment to the debugging main control chip, and after the control instruction is translated into a control message readable by the fire control system through the debugging main control chip, the control message is sent to the fire control system through the communication interface module for debugging control. According to the utility model, the fire control system can be installed, maintained, upgraded, repaired and the like more conveniently and quickly without being restricted by factors such as space in a cabin, peripheral power supply, carrying equipment and the like, so that the working efficiency is greatly improved, and the time cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fire control system monitoring technical field especially is related to a fire control system real -time debugging monitoring device. BACKGROUND

[0002] The existing fire control system needs to monitor and analyze each equipment module component state in the control system in system establishment engineering and subsequent system formal operation. But due to the stability requirement of fire control system itself and the limitation of engineering construction cost, there is often no module that can display each module state information at any time and intuitively in the system.

[0003] The method for monitoring each module state information in the fire control system at present is to use CAN communication conversion card to access the fire control system, to input each module state information message transmitted in the fire control system into the computer, and then to display through computer analysis. But due to the hidden communication interface of most fire control system debugging data, or in the super high and extremely narrow position, and it is difficult to have a power supply interface nearby for notebook computer charging to keep endurance, so the monitoring work is often affected by installation distance, notebook computer power and other factors, which causes great trouble to installation and maintenance personnel. UTILITY MODEL CONTENTS

[0004] In order to overcome the defects of prior art, the purpose of the utility model is to provide a fire control system real-time debugging monitoring device, which has the advantages of convenient debugging and monitoring.

[0005] The purpose of the utility model is realized by the following technical scheme:

[0006] According to the utility model disclosed embodiment, a fire control system real-time debugging monitoring device is provided, which comprises:

[0007] Debugging main control chip;

[0008] Communication interface module, connected with the debugging main control chip, used for communication connection with the fire control system to obtain the working state and parameter information of the fire control system and send to the debugging main control chip;

[0009] Storage module, connected with the debugging main control chip, used for buffering the working state and parameter information;

[0010] Display module, connected with the debugging main control chip, used for real-time display of the working state and parameter information; and,

[0011] The Bluetooth module is connected with the debugging master control chip, is used for wireless communication connection with the debugging control device, and transmits the control instruction sent by the debugging control device to the debugging master control chip. After the debugging master control chip translates the control instruction into a control message readable by the fire control system, the control message is sent to the fire control system through the communication interface module to perform debugging control.

[0012] The above technical solution is realized. When the fire control system is established or operated, the communication interface module is in communication connection with the fire control system, the working state and parameter information of the fire control system are acquired and sent to the debugging master control chip, the debugging master control chip analyzes the received working state and parameter information and stores the working state and parameter information in the storage module for later calling, and simultaneously displays the working state and parameter information in real time through the display module, so that the installation and operation personnel can quickly and intuitively acquire the state of each module in the fire control system. Meanwhile, when debugging is needed, the Bluetooth module is in communication connection with the debugging control device, so that the debugging control device can also receive the working state and parameter information, so as to facilitate the operation personnel to perform debugging operation. The control instruction of the debugging control device is sent to the debugging master control chip through the Bluetooth chip, is translated into a control message readable by the fire control system by the debugging master control chip, and is sent to the fire control system through the communication interface module, so that the fire control system executes the control instruction to realize debugging control. Through the communication switching of the Bluetooth module, the installation, maintenance, upgrading, repair and other work of the fire control system can be more conveniently and quickly implemented without being restricted by cabin space, surrounding power supply, carrying equipment and other factors, the work efficiency is greatly improved, and the time cost is reduced.

[0013] In some exemplary embodiments, the debugging master control chip is further connected with an indicator light module for light indication according to the working state.

[0014] The above technical solution is realized. The working state can be displayed more quickly and intuitively, and the debugging efficiency is further improved.

[0015] In some exemplary embodiments, the indicator light module includes a fault alarm lamp, and the debugging master control chip controls the fault alarm lamp to work when the received working state and parameter information are abnormal.

[0016] The above technical solution is realized. The installation and operation personnel can be prompted more quickly and timely when a fault occurs.

[0017] In some exemplary embodiments, the communication interface module includes one or more of an RS232 interface, an RS485 interface, a CAN bus, an M-Bus bus and an I 2 C bus.

[0018] In some exemplary embodiments, the display module employs a touchscreen.

[0019] The above technical solution is implemented to enable the viewing operation.

[0020] In some exemplary embodiments, the debugging master control chip controls the Bluetooth module to listen for access requests from the debugging control device in real time when powered on, and controls the Bluetooth module to communicate with the debugging control device when a matching access request is received.

[0021] By implementing the above technical solution, Bluetooth devices can listen for access requests in real time, enabling debugging and control devices to connect quickly and promptly, facilitating debugging and control.

[0022] In summary, compared with the prior art, this utility model has the following beneficial effects:

[0023] This utility model provides a real-time debugging and monitoring device for a fire control system. During the setup or operation of the fire control system, a communication interface module connects to the fire control system to acquire its operating status and parameter information, which is then sent to the modulation main control chip. The main control chip parses the received operating status and parameter information and stores it in a storage module for later retrieval. Simultaneously, a display module shows the operating status and parameter information in real time, allowing installation and maintenance personnel to quickly and intuitively obtain the status of each module in the fire control system. Furthermore, when debugging is required, a Bluetooth module connects to the debugging control equipment, enabling the equipment to receive operating status and parameter information for maintenance personnel to perform debugging operations. Control commands from the debugging control equipment are transmitted to the main control chip via the Bluetooth chip, translated into control messages readable by the fire control system, and then sent to the fire control system via the communication interface module. This allows the fire control system to execute the control commands and perform debugging control. Communication via Bluetooth allows for more convenient and faster installation, maintenance, upgrades, and repairs of the fire control system, regardless of limitations such as cabin space, power supply, or portable equipment, significantly improving work efficiency and reducing time consumption. Attached Figure Description

[0024] Figure 1 This is a control block diagram of an embodiment of the present utility model. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] like Figure 1 As shown in the figure, this utility model embodiment provides a real-time debugging and monitoring device for a fire control system, including: a debugging main control chip; a communication interface module connected to the debugging main control chip for communicating with the fire control system to obtain the working status and parameter information of the fire control system and sending it to the debugging main control chip; a storage module connected to the debugging main control chip for caching the working status and parameter information; a display module connected to the debugging main control chip for displaying the working status and parameter information in real time; and a Bluetooth module connected to the debugging main control chip for wireless communication with the debugging control equipment, transmitting control commands issued by the connected modulation control equipment to the debugging main control chip, which then translates them into control messages readable by the fire control system according to the communication protocol and sends them to the fire control system through the communication interface module for debugging control.

[0027] Specifically, the debugging main control chip is usually mounted on a PCB circuit board for centralized control of various modules and for extracting and parsing various data and control signals according to pre-agreed message rules. In some embodiments, the debugging main control chip may also be a microcontroller unit (MCU), a central processing unit (CPU), a microprocessor, a digital signal processor (DSP), a programmable controller, a programmable logic device (PLD), or other similar devices or combinations thereof.

[0028] The communication interface module includes: RS232 interface, RS485 interface, CAN bus, M-Bus bus, and I... 2 One or more of the C-bus, preferably, in this embodiment the communication interface module adopts the CAN bus; the storage module can be, for example, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), etc. The storage module is mainly used for data caching so that installation and maintenance personnel can call it later; the display module preferably adopts a touch screen for viewing operations.

[0029] Furthermore, the main control chip is also connected to an indicator light module, which provides light indication based on the working status. This module can include LEDs with multiple indicator colors, such as green, yellow, and red, to more quickly and intuitively display the working status and further improve debugging efficiency. Simultaneously, the indicator light module includes a fault alarm light. When the main control chip detects abnormalities in the received working status and parameter information, it controls the fault alarm light to activate. The fault alarm light can be, for example, a flashing light or a tri-color light, allowing for faster and more timely alerts to installation and maintenance personnel in the event of a fault.

[0030] Meanwhile, when the main control chip is powered on, it controls the Bluetooth module to listen for access requests from debugging control devices in real time. When a matching access request is received, the Bluetooth module is controlled to communicate with the debugging control device. By listening for access requests in real time through the Bluetooth device, the debugging control device can be connected quickly and timely, facilitating debugging and control.

[0031] During the setup or operation of the fire control system, the communication interface module communicates with the fire control system to obtain its operating status and parameter information, which is then sent to the modulation main control chip. The main control chip parses the received operating status and parameter information and stores it in the storage module for later retrieval. Simultaneously, the display module shows the operating status and parameter information in real time, allowing installation and maintenance personnel to quickly and intuitively obtain the status of each module in the fire control system. Furthermore, when debugging is required, a Bluetooth module communicates with the debugging control equipment, enabling the equipment to receive operating status and parameter information for maintenance personnel to perform debugging operations. Control commands from the debugging control equipment are transmitted to the debugging main control chip via the Bluetooth chip, which translates them into control messages readable by the fire control system and sends them to the fire control system via the communication interface module. This allows the fire control system to execute the control commands and perform debugging control. Communication via Bluetooth allows for more convenient and faster installation, maintenance, upgrades, and repairs of the fire control system, regardless of limitations such as cabin space, power supply, or portable equipment, significantly improving work efficiency and reducing time consumption.

[0032] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the concept of this utility model. These are all equivalent modifications and improvements made to the above embodiments based on the essential technology of this utility model, and all of these fall within the protection scope of this utility model.

Claims

1. A fire control system real-time commissioning monitoring device, characterized in that, The application relates to a debugging control device for a fire control system, which comprises the following parts: a debugging master control chip; a communication interface module, which is connected with the debugging master control chip and is used for being connected with the fire control system to obtain the working state and parameter information of the fire control system and sending the working state and parameter information to the debugging master control chip; a storage module, which is connected with the debugging master control chip and is used for buffering the working state and parameter information; a display module, which is connected with the debugging master control chip and is used for displaying the working state and parameter information in real time; a Bluetooth module, which is connected with the debugging master control chip, is used for being wirelessly connected with a debugging control device, and transmits the control instruction of the accessed debugging control device to the debugging master control chip; after the control instruction is translated into a control message which can be read by the fire control system by the debugging master control chip, the control message is sent to the fire control system by the communication interface module to perform debugging control. The debugging master control chip is further connected with an indicating lamp module, which is used for light indication according to the working state.

2. The real-time commissioning monitoring device for fire control system according to claim 1, characterized in that, The indicating lamp module comprises a fault alarm lamp; when the debugging master control chip judges that the received working state and parameter information are abnormal, the fault alarm lamp is controlled to work.

3. The real-time commissioning monitoring device for fire control systems of claim 2, wherein, The display module adopts a touch screen.

4. The real-time commissioning monitoring device for fire control systems of claim 1, wherein, The communication interface module includes one or more of an RS232 interface, an RS485 interface, a CAN bus, an M-Bus bus, and an I 2 C bus.

5. The real-time commissioning monitoring device for fire control systems of claim 1, wherein, When the debugging master control chip is powered on, the Bluetooth module is controlled to listen to whether there is an access request of the debugging control device in real time; when a matched access request is received, the Bluetooth module is controlled to communicate with the debugging control device.

6. The real-time commissioning monitoring device for fire control systems of claim 1, wherein, ​