Oxygen generator altitude compensation control method, device, equipment, medium and product

By acquiring real-time environmental and equipment data and optimizing the working strategy of the oxygen concentrator using a time-series model, the problem of inaccurate oxygen concentration control in oxygen concentrators at different altitudes has been solved, achieving stable and efficient oxygen supply and meeting the needs of plateau or high-altitude areas.

CN121832673APending Publication Date: 2026-04-10SHENYANG RMS MEDICAL TECH
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Patent Information

Application Number
CN202511983272.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-25
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing oxygen concentrator control strategies are mostly based on fixed timing, which cannot meet the dynamic needs of different altitude environments, resulting in poor accuracy in oxygen concentration control. Especially in plateau or high-altitude areas, the general population and patients are prone to hypoxia symptoms.

Method used

By acquiring real-time environmental data and equipment operation data, and using a time-series model for comprehensive analysis, the optimal time-series model is obtained, and the working strategy of the oxygen concentrator is dynamically adjusted, including adsorption, desorption, and equalization time, to adapt to the needs of different altitudes and patients.

Benefits of technology

It enables accurate control of oxygen concentration in oxygen generators at different altitudes, ensuring the stability and efficiency of oxygen supply and reducing the occurrence of hypoxia symptoms.

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Abstract

The embodiment of the invention provides an oxygen generator altitude compensation control method, device and equipment, a medium and a product. The method comprises the steps of obtaining first data; the first data comprises environment state real-time data and equipment operation real-time data; according to the first data, input data of the time sequence mode model are obtained, and the input data comprise adsorption capacity information, oxygen generation demand information, pressure balance information and user feature data; obtaining an optimal time sequence mode output by the time sequence mode model according to input data of the time sequence mode model; and controlling the oxygen generator to work according to the optimal time sequence mode. According to the scheme provided by the invention, the oxygen generator is controlled based on different time sequence modes in different altitude environments, and the accuracy of oxygen generation concentration control of the oxygen generator is improved.
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