Plasma electro-generation fire preparation system, process and application

By introducing a multi-layer grid discharge structure and real-time operating parameter detection into the plasma ignition system, and dynamically selecting the appropriate discharge layer and ignition voltage, the stability and reliability issues of the plasma ignition system under complex operating conditions are solved, achieving efficient ignition effect and energy utilization.

CN122438239APending Publication Date: 2026-07-21ZHONGSHAN QILI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ZHONGSHAN QILI INTELLIGENT TECHNOLOGY CO LTD
Filing Date
2026-03-09
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing plasma ignition systems struggle to achieve stable and reliable ignition results under varying gas conditions, lacking the ability to adapt to changes in gas conditions. In particular, they suffer from low ignition success rates and high energy consumption under complex conditions.

Method used

It adopts a multi-layer grid discharge structure module, combined with real-time operating parameters such as gas pressure, flow rate and temperature. The operating condition detection module detects gas parameters in real time, the discharge parameter decision module selects the appropriate discharge layer and ignition voltage, and the high-voltage discharge control module applies a high-voltage pulse voltage to discharge and ignite.

Benefits of technology

It significantly improves the success rate of plasma ignition and discharge stability, enhances the system's adaptability to changes in gas pressure, flow rate and temperature, reduces unnecessary high-pressure energy consumption, and improves the system's reliability and intelligence level.

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Abstract

The application provides a plasma electrically generated fire preparation system, process and application, the system comprises a working condition detection module, a multi-layer grid discharge structure module, a discharge parameter decision module and a high-voltage discharge control module; the working condition detection module is used for real-time detection of the gas working condition parameters in the ignition cavity; the multi-layer grid discharge structure module is arranged in the ignition cavity and is used for forming a plurality of metal mesh grid electrodes with optional spacing; the discharge parameter decision module is used for determining the ignition discharge parameters according to the current gas working condition parameters; the high-voltage discharge control module is used for applying high-voltage pulse voltage to the selected metal mesh grid electrode according to the ignition discharge parameters to complete the discharge fire generation process; the application sets the multi-layer metal mesh grid electrode and combines the gas working condition parameters to make self-adaptive decisions on the discharge layer and the ignition voltage, improves the success rate and stability of the plasma ignition, and enhances the adaptability of the system to the complex gas working condition changes.
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Citation Information

Patent Citations

  • Enhanced plasma ignition system and method

    CN120120589A