IoT Gas Firefighting Linkage for Enterprise Risk-Based Control
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Solution Overview
Problem
Existing gas firefighting systems fail to account for the differences in firefighting needs of different gas users/enterprises, leading to ineffective fire control.
Innovation Solution
An Internet of Things (IoT) system for smart gas firefighting linkage based on government safety supervision, integrating a smart gas government safety supervision service platform, management platform, sensor network platform, object platform, and user platform, which assesses fire risk levels and adjusts operating parameters and inspection cycles for gas firefighting equipment based on production stage and feedback data.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a unified gas firefighting system is used for all enterprises, then system simplicity is maintained, but firefighting effectiveness deteriorates due to inability to account for different enterprise needs
Solution Approach 1:
The system segments enterprises into different risk levels (high, medium, low) based on production stages and gas consumption characteristics. Each risk level receives customized firefighting monitoring and control strategies, allowing the system to adapt to diverse enterprise needs while maintaining overall system manageability through structured classification.
Solution Approach 2:
The system dynamically adjusts firefighting control parameters and inspection cycles based on real-time production stage data and gas consumption statistics. As enterprises transition between production stages, their risk levels and corresponding firefighting measures are automatically updated, ensuring firefighting effectiveness matches actual operational conditions without requiring manual system redesign.
2Measurement precision
If comprehensive data collection from multiple platforms is implemented, then fire risk assessment accuracy is improved, but data integration complexity increases
Solution Approach 1:
The smart gas government safety supervision management platform serves as an intermediary that standardizes data interfaces and integration protocols between the gas equipment object platform, gas-using enterprise management platform, and gas company management platform. This intermediary layer handles data formatting, validation, and coordination, allowing comprehensive data collection from multiple sources while shielding upper-level applications from integration complexity.
Data Source
AI summary
Embodiments of the present disclosure provide a method for smart gas firefighting linkage based on government safety supervision, wherein the method is executed by a smart gas government safety supervision management platform based on an Internet-of-Things (IoTs) system for smart gas firefighting linkage based on government safety supervision. The method comprises: determining production stage information of the one or more enterprises based on gas consumption statistics information, current production data, and production planning information of the one or more enterprises; obtaining feedback information from a gas company management platform of the smart gas government safety supervision object platform based on the production stage information of the one or more enterprises; obtaining at least one of alarm information, malfunction information, operating parameters, and hidden danger processing data of at least one set of gas firefighting equipment of the one or more enterprises, and assessing a fire risk level of each of the one or more enterprises; determining fire control parameters of the one or more enterprises based on the fire risk level of the one or more enterprises and the hidden danger processing data; determining an update command based on adjusted operating parameters; and sending the update command to at least one set of gas firefighting equipment corresponding to the update command, and controlling the gas firefighting equipment to update.


