20240037424. METHODS AND INTERNET OF THINGS (IOT) SYSTEMS FOR MANAGING OPERATION PROGRESSES OF SMART GAS PIPELINE NETWORKS simplified abstract (CHENGDU QINCHUAN IOT TECHNOLOGY CO., LTD.)

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METHODS AND INTERNET OF THINGS (IOT) SYSTEMS FOR MANAGING OPERATION PROGRESSES OF SMART GAS PIPELINE NETWORKS

Organization Name

CHENGDU QINCHUAN IOT TECHNOLOGY CO., LTD.

Inventor(s)

Zehua Shao of Chengdu (CN)

Yong Li of Chengdu (CN)

Bin Liu of Chengdu (CN)

METHODS AND INTERNET OF THINGS (IOT) SYSTEMS FOR MANAGING OPERATION PROGRESSES OF SMART GAS PIPELINE NETWORKS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240037424 titled 'METHODS AND INTERNET OF THINGS (IOT) SYSTEMS FOR MANAGING OPERATION PROGRESSES OF SMART GAS PIPELINE NETWORKS

Simplified Explanation

The embodiments of this patent application provide methods and an Internet of Things (IoT) system for managing the operation progress of a smart gas pipeline network. The method includes the following steps:

  • Obtaining the construction type and progress sequence of a gas operation based on a smart terminal and a sensing unit.
  • Predicting the future operation progress at a future moment using a progress prediction model based on the construction type and progress sequence. The progress prediction model is a machine learning model.
  • Generating a first prompt message and a second prompt message based on the future operation progress. The first prompt message includes the progress reminder data of the gas operation, and the second prompt message includes an approach plan of a gas associated object.
  • Sending the first prompt message to a gas operator and sending the second prompt message to the gas associated object.

Potential applications of this technology:

  • Efficient management of gas pipeline networks: This technology allows for real-time monitoring and prediction of the operation progress of gas pipeline networks, enabling efficient management and maintenance.
  • Improved safety and reliability: By predicting future operation progress and providing prompt messages, potential issues or delays can be identified and addressed in a timely manner, ensuring the safety and reliability of the gas pipeline network.

Problems solved by this technology:

  • Lack of real-time monitoring: Traditional methods of managing gas pipeline networks may not provide real-time information on the operation progress, leading to delays and potential safety hazards.
  • Inefficient maintenance and management: Without accurate prediction and prompt messages, it can be challenging to effectively plan and execute maintenance activities, resulting in inefficiencies and increased costs.

Benefits of this technology:

  • Enhanced operational efficiency: Real-time monitoring and prediction of operation progress allow for proactive decision-making and optimized resource allocation, leading to improved operational efficiency.
  • Increased safety and reliability: By promptly addressing potential issues or delays, this technology helps ensure the safety and reliability of gas pipeline networks, reducing the risk of accidents and disruptions.


Original Abstract Submitted

the embodiments of the present disclosure provide methods and internet of things (iot) system for managing an operation progress of a smart gas pipeline network. the method includes: obtaining a construction type and a progress sequence of a gas operation based on a smart terminal and a sensing unit; predicting a future operation progress at a future moment through a progress prediction model based on the construction type and the progress sequence, the progress prediction model being a machine learning model; generating a first prompt message and a second prompt message based on the future operation progress, the first prompt message including the progress reminder data of the gas operation, and the second prompt message including an approach plan of a gas associated object; and sending the first prompt message to a gas operator and sending the second prompt message to the gas associated object.