Air purifier with selective cleaning feature
The present invention relates generally to the field of air purifiers, and more particularly to an air purifier having a control system providing a selective cleaning feature that detects when an ambient space is unoccupied and provides for increased fan speed and associated increased air filtration during periods of time in which the ambient space is determined to be unoccupied.
1 . An air purifier comprising:
a housing;
a filter within the housing;
a motorized fan within the housing positioned to draw air into the housing and through the filter, and to exhaust filtered air from the housing; and
a control system comprising:
an occupancy-aware controller including a proximity control that receives signals representing radar, carbon dioxide and room ACH and generates a blended enable signal to a speed controller;
wherein the speed controller is operatively connected to the occupancy-aware controller and is configured to determine whether a space is occupied as a function of the blended enable signal, and to provide a control signal for causing said motorized fan to operate at an increased fan speed when the speed controller determines that the space is not occupied.
2 . The air purifier of claim 1 , wherein the occupancy-aware controller comprises a presence sensor and the input signal is provided by the presence sensor.
3 . The air purifier of claim 2 , wherein the presence sensor comprises at least one of an infrared sensor, a wireless receiver, a lidar sensor, and a radar sensor.
4 . The air purifier of claim 1 , wherein the occupancy-aware controller comprises a carbon dioxide sensor and the input signal is provided by the carbon dioxide sensor.
5 . The air purifier of claim 4 , wherein the carbon dioxide sensor comprises at least one of an infrared-based photo sensor and a metal oxide semiconductor-based sensor.
6 . The air purifier of claim 1 , wherein the occupancy-aware controller comprises a presence sensor and a carbon dioxide sensor.
7 . The air purifier of claim 1 , wherein the occupancy-aware controller comprises multiple sensors for determining doppler radar, carbon dioxide levels, and a room natural ventilation rates.
8 . The air purifier of claim 1 , wherein the control system further comprises an AQI sensor and the speed controller receives a second input signal from the AQI sensor.
9 . The air purifier of claim 1 , wherein the speed controller comprises a housekeeper that receives the blended enable signal from the proximity control and combines the blended enable signal with signals representing one or more of fan reference, AQI, current fan speed, and results of a filter test to generate an updated fan speed.
10 . A control system for an air purifier, the control system comprising:
an occupancy-aware controller including a proximity control that receives signals representing radar, carbon dioxide and room ACH and generates a blended enable signal to a speed controller; and
wherein the speed controller is operatively connected to the occupancy-aware controller and is configured to determine whether a space is occupied as a function of the blended enable signal, and to provide a control signal for causing a fan to operate at an increased fan speed when the speed controller determines that the space is not occupied.
11 . The control system of claim 10 , wherein the occupancy-aware controller comprises a presence sensor and the input signal is provided by the presence sensor.
12 . The control system of claim 11 , wherein the presence sensor comprises at least one of an infrared sensor, a wireless receiver, a lidar sensor, and a radar sensor.
13 . The control system of claim 10 , wherein the occupancy-aware controller comprises a carbon dioxide sensor and the input signal is provided by the carbon dioxide sensor.
14 . The control system of claim 13 , wherein the carbon dioxide sensor comprises at least one of an infrared-based photo sensor and a metal oxide semiconductor-based sensor.
15 . The control system of claim 10 , wherein the occupancy-aware controller comprises a presence sensor and a carbon dioxide sensor.
16 . The control system of claim 10 , wherein the control system further comprises an AQI sensor and the speed controller receives a second input signal from the AQI sensor.
17 . The control system of claim 10 , wherein the speed controller comprises a housekeeper that receives the blended enable signal from the proximity control and combines the blended enable signal with signals representing one or more of fan reference, AQI, current fan speed, and results of a filter test to generate an updated fan speed.
18 . A method of operating an air purifier, comprising the steps of:
detecting whether an ambient space associated with the air purifier is occupied or unoccupied by one or more humans using an occupancy-aware controller that includes a proximity control that receives signals representing radar, carbon dioxide and room ACH and generates a blended enable signal to a speed controller;
automatically setting a fan speed of the air purifier to a desired baseline level if the ambient space is occupied, based on the blended enable signal sent to the speed controller; and
automatically setting the fan speed of the air purifier to a second higher level if the ambient space is unoccupied, based on the blended enable signal sent to the speed controller.