Fire Control Cabinet Wireless Data Configuration
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Solution Overview
Problem
Current fire control data configuration processes for buildings are time-consuming and labor-intensive, especially for large buildings far from equipment suppliers, as they require manual data transfer using cables, which is inefficient and prone to errors.
Innovation Solution
A fire control system that utilizes a wireless communication module with Bluetooth or WIFI capabilities, encrypted using AES-CCM and TOTP algorithms, allowing secure data interaction between a local control unit, mobile communication terminal, and cloud services, enabling remote data management and updates, with physical security measures to prevent unauthorized access.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Manufacturing precision
If fire control data is written manually using data cables in the workshop, then data accuracy is ensured, but the process becomes time-consuming and labor-consuming for large buildings
Solution Approach 1:
The patent replaces the mechanical data cable connection system with a wireless communication system. The local control module uses a wireless communication module to communicate with the fire control cabinet wirelessly, eliminating the need for physical cable connections and manual data transfer operations while maintaining data accuracy through encrypted wireless transmission.
Solution Approach 2:
The patent introduces a wireless communication module as an intermediary between the local control module and the fire control cabinet. This intermediary enables indirect wireless data transmission, allowing fire control data to be written remotely without direct physical connection, thus reducing time and labor while ensuring data integrity through encryption protocols.
2Ease of operation
If personnel travel to remote buildings with computers and cables, then fire control data can be configured, but the process becomes labor-intensive and inefficient
Solution Approach 1:
The patent enables the fire control cabinet to perform self-service data configuration through wireless communication. The local control module automatically establishes wireless connections with the fire control cabinet and receives fire control data remotely, eliminating the need for personnel to physically travel to remote buildings with computers and cables.
Solution Approach 2:
The fire control cabinet is equipped with a wireless communication module that provides multi-functional capabilities: it can communicate with multiple local control modules simultaneously, support both data transmission and reception, and maintain secure communication through encryption. This universal communication interface replaces the need for separate computers, cables, and travel arrangements.
3Productivity
If wireless communication is implemented for remote data transfer, then efficiency is improved, but data security and unauthorized access risks increase
Solution Approach 1:
The patent applies preliminary anti-action by implementing encryption algorithms before data transmission. The fire control cabinet and local control module use preset encryption keys to encrypt fire control data before wireless transmission and decrypt it upon receipt, preventing unauthorized interception or modification during the wireless communication process.
Solution Approach 2:
The patent changes the parameter of data state from plain text to encrypted text during transmission. By transforming the data into an encrypted format with specific cryptographic parameters, the system maintains high productivity through wireless communication while ensuring data security, as the encrypted data cannot be understood or modified by unauthorized parties.
Data Source
Figure 1~2
AI summary
The present application provides a fire control cabinet (100) and a fire control system (200). The fire control cabinet (100) according to the present application includes: an openable and closable control cabinet body (110) and a local control unit (120) disposed inside the control cabinet body (110). The local control unit (120) is capable of acquiring fire control data from a cloud (210) by using a mobile communication terminal (220). With the fire control cabinet (100) and the fire control system (200) according to the present application, the fire control data interaction between the local control unit (120) and a remote fire-fighting service provider service system is achieved by means of the mobile communication terminal (220) and the cloud (210), so that the local control unit (120) can clearly learn the local fire control data, thereby achieving more convenient and efficient fire prevention and fire-fighting deployment.