Air Purifier With Real-Time Detection and Feedback-Driven Filtration
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Solution Overview
Problem
Indoor air quality is difficult to control due to poor air circulation, leading to significant health risks from pollutants such as particulate matter, carbon monoxide, and bacteria, requiring real-time monitoring and filtration solutions.
Innovation Solution
An air purifier system with a gas detection module, filtration and purification component, and a microcontroller that adjusts airflow based on real-time pollution data to filter and divert air pollution sources.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If real-time detection and filtration systems are implemented, then air quality improvement is achieved, but device complexity increases
Solution Approach 1:
The patent combines the gas detection module, gas guider, and filtration and purification component into an integrated air purifier system. The detection module, guider, and filter are merged within a single main body structure, allowing simultaneous detection and response without requiring separate distributed systems, thereby improving air quality while controlling complexity through functional integration.
Solution Approach 2:
The system implements automatic control where the microcontroller receives detection data from the gas detection module and autonomously adjusts the gas guider and filtration component without manual intervention. The air purifier monitors its own operational status and self-regulates airflow and filtration based on real-time air quality conditions, reducing the need for external control systems.
2Productivity
If automated control systems are added to adjust airflow based on pollution data, then response efficiency improves, but device complexity increases
Solution Approach 1:
The system establishes a closed-loop feedback mechanism where the gas detection module continuously monitors air quality parameters and transmits data to the microcontroller. The microcontroller processes this feedback information and automatically adjusts the gas guider and filtration component settings, creating a responsive control system that adapts to changing air quality conditions in real-time without requiring complex external control infrastructure.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables real-time detection and filtration of indoor air pollutants, improving air quality by autonomously adjusting airflow to handle pollution sources effectively.
Implementation Method 1
The at least one gas detection module is disposed in the diversion path for detecting the air pollution source and transmitting a gas detection datum
Implementation Method 2
The filtration and purification component is disposed in the diversion path for filtering and purifying an air pollution source contained in the air convection guided by the gas guider
Data Source
AI summary
An air purifier for preventing air pollution is disclosed and includes a main body, a gas guider, a filtration and purification component and at least one gas detection module. The main body is configured to form a diversion path. The gas guider is disposed in the diversion path for guiding an air convection. The filtration and purification component is disposed in the diversion path for filtering and purifying an air pollution source contained in the air convection guided by the gas guider. The at least one gas detection module is disposed in the diversion path for detecting the air pollution source and transmitting a gas detection datum.


