IP Library › Granted Patent US 10,808,955
Granted Patent B2
US 10,808,955 · App. 15/922,831 · Granted Oct 20, 2020

Environmentally efficient smart home air-quality network system

Inventor: Eeshan Tripathii (Montclair, NJ)
F24F11/0001F24F7/007F24F11/30F24F11/56F24F11/65F24F2011/0002F24F2110/52
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Quick Facts
Patent No.
US 10,808,955
App. No.
15/922,831
Granted
Oct 20, 2020
Kind
B2
Abstract

An air-quality network system for homes, the air-quality network system having an air inlet unit, an air outlet unit, and a monitoring unit. The monitoring unit monitors, measures, and transmits information regarding the air quality to a network. The data management algorithm in the network compares the air quality information against preset/user-defined values and accordingly, determines the operating parameters of the air inlet and/or air outlet units. The system provides real-time monitoring and visualization of the air quality in the home, and provides emergency alerts if air quality exceeds safety limits.

Claims (30)

1. A method of managing air-quality in a home using an air-quality network system, comprising:

measuring values of a plurality of air-quality parameters in said home using a plurality of monitoring units, each of said plurality of monitoring units having a plurality of processors and a plurality of sensors;

transmitting said measured values of said plurality of air-quality parameters to a remote data management application;

comparing said measured values of said plurality of air-quality parameters against pre-determined values; and

determining a response based on pre-determined threshold by checking air-quality conditions external to said home, and determining operation of a plurality of air inlet units and/or a plurality of air outlet units for a period of time,

wherein the plurality of air inlet units and/or the plurality of air outlet units are part of the air-quality network system which is a modular system,

wherein each of the plurality of air inlet units of the modular system comprises a controller unit, a modular heating unit, a core module with a fan and a filter, and a modular chamber, and

wherein the controller unit is in fluid communication with the modular heating unit, the modular heating unit is in fluid communication with the core module, and the core module is in fluid communication with the modular chamber.

2. The method of claim 1 , wherein the period of time is a pre-determined or user-defined period of time, or based on a computer algorithm.

3. The method of claim 1 , wherein the plurality of air inlet units and/or the plurality of air outlet units is operated at a user-regulated programmable rate.

4. The method of claim 3 , further comprising:

heating incoming air from outside the home to maintain a user-specified temperature inside the home.

5. The method of claim 3 , further comprising:

sanitizing incoming air from outside the home by treating it with UV light.

6. The method of claim 1 , wherein the plurality of sensors comprises a volatile organic compound (VOC) sensor, a carbon dioxide sensor, a carbon monoxide sensor, and a humidity sensor, and wherein the plurality of monitoring units further comprises add-on modules having a motion sensor unit, a Wi-Fi Speaker, and an LED light.

7. The method of claim 1 , wherein the plurality of sensors includes an indoor sensor and an outdoor sensor.

8. A method of managing air-quality in a home using a cloud-based air-quality network architecture, comprising:

measuring values of a plurality of air-quality parameters in said home using a plurality of monitoring units, each of said plurality of monitoring units having a plurality of processors and a plurality of sensors;

transmitting said measured values of said plurality of air-quality parameters to a remote data management application;

comparing said measured values of said plurality of air-quality parameters against pre-determined values;

checking air-quality conditions external to said home; and

determining operation of a plurality of air inlet units and/or a plurality of air outlet units for a stochastic algorithm determined dynamic period of time, the algorithm using half-life estimate to pre-code the period of time,

wherein the remote data management application is hosted on a cloud communicatively linked to the plurality of monitoring units, and

wherein the plurality of air inlet units and/or the plurality of air outlet units are part of a modular system for managing air quality in the home,

wherein each of the plurality of air inlet units of the modular system comprises a controller unit, a modular heating unit, a core module with a fan and a filter, a modular chamber, a pre-filter, an external ring, a modular UV light unit, and a housing unit, and

wherein the controller unit is in fluid communication with the modular heating unit, the modular heating unit is in fluid communication with the core module, the core module is in fluid communication with the modular chamber, and the modular chamber is in fluid communication with the pre-filter, the pre-filter being in fluid communication with the external ring.

9. The method of claim 8 , further comprising the step of: allowing a plurality of users to remotely monitor the air-quality on a plurality of user devices, said plurality of user devices being communicatively linked to the remote data management application hosted on the cloud.

10. The method of claim 9 , further comprising the step of: allowing a plurality of users to remotely control the air-quality by managing operations of the plurality of air inlet units, the plurality of air outlet units and the plurality of monitoring units.

11. The method of claim 9 , wherein emergency alert messages regarding high indoor toxicity at the home are sent to the plurality of user devices.

12. The method of claim 9 , wherein emergency alert messages regarding high indoor toxicity at the home are sent to the plurality of user devices and/or to emergency agencies.

Continuity (3)
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