CA2600529C

Multipoint air sampling system having common sensors to provide blended air quality parameter information for monitoring and building control

Abstract

A system for monitoring air quality conditions, comprising, a multi-point air monitoring system comprising, a plurality of sensors for collecting air quality data from a plurality of at least partially enclosed areas; one or more data processing units for processing one or more air quality parameters based on the collected air quality data; and one or more communication devices for communicating the data from the sensor to the processing unit; and a signal processing controller that generates one or more blended air quality parameter signals via the multi-point air monitoring system based at least in part on one or more of the processed air quality parameters representative of data from a plurality of the sensors.

CA2600529C, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Expired 10 March 2026, 0.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

40 claims: 2 independent, 38 dependent

  1. 1
    CA 02600529 2011-11-14 CLAIMS 1. A system for monitoring air quality conditions and controlling air flow in an environment that includes an airflow control device that controls at least one airflow volume, the system comprising:a multipoint air sampling system comprising one or more sensors that detect one or more of air comfort parameters or air contaminants, the sensors generating output signals indicative of the level of the detected air comfort parameters or air contaminants, wherein at least one of the sensors is a shared sensor that senses contaminants in the air that has been collected from a plurality of separate locations, the separate locations including an at least partially enclosed area and at least one location containing outside air or supply air;a signal processing controller that receives the sensor output signals and in response generates one or more blended air quality parameter signals and provides one or more of such blended air quality parameter signals to the airflow control device, to control at least the supply airflow volume provided to the at least partially enclosed area, wherein at least one of the blended air quality parameter signals comprises a differential air quality parameter signal that represents the magnitude of the difference between the sensed value of at least one air contaminant in the at least partially enclosed area and the sensed value of the same air contaminant in one of the outside air or the supply air, the signal processing controller comprising one or more demultiplexers that develop separate signals representing each sensed air contaminant in each of the separate locations;wherein the signal processing controller generates signals that cause the airflow control device to increase the supply air volume when the differential air quality parameter signal is greater than a threshold signal value or exhibits a predetermined signal pattern comprising a rapid increase in the sensed air contaminant.
  2. 38
    A system for monitoring air quality conditions and controlling air flow in an environment that includes an airflow control device that controls at least one airflow volume, the system comprising:a multipoint air sampling system comprising one or more sensors that detect one or more of air comfort parameters or air contaminants, the sensors generating output signals indicative of the level of the detected air comfort parameters or air contaminants, wherein at least one of the sensors is a shared sensor that senses contaminants in the air that has been collected from a plurality of separate locations, the separate locations including an at least partially enclosed area and at least one location containing outside air or supply air;a signal processing controller that receives the sensor output signals and in response generates one or more blended air quality parameter signals and provides one or more of such blended air quality parameter signals to the airflow control device, to control at least the supply airflow volume provided to the at least partially enclosed area, wherein at least one of the blended air quality parameter signals comprises a differential air quality parameter signal that represents the magnitude of the difference between the sensed value of at least one air contaminant in the at least partially enclosed area and the sensed value of the same air contaminant in one of the outside air or the supply air, the signal processing controller comprising one or more demultiplexers that develop separate signals representing each sensed air contaminant in each of the separate locations;wherein the signal processing controller generates signals that cause the airflow control device to increase the supply air volume when the differential air quality parameter signal is greater than a threshold signal value or exhibits a predetermined signal pattern comprising a rapid increase in the sensed air contaminant wherein at least one of said sensors is a shared sensor and at least one of said sensors is a local sensor;wherein at least one of said local sensors senses temperature and wherein at least one of said shared sensors senses one of a group of parameters including absolute humidity and dewpoint temperature and senses in the area where the said local temperature sensor is located to create at least one blended air quality parameter signal representing either the relative humidity, wet bulb temperature or enthalpy value of the area sensed;an air handling unit where a percentage of the return air from at least one partially enclosed area is mixed with a percentage of outside air to create the supply air to be provided to at least one partially enclosed area;and CA 02600529 2011-11-14 · wherein said signal processing controller uses the temperature values of said local temperature sensors to sense both return and outside air temperature of said air handling unit and also uses one of said shared sensors to generate a differential enthalpy signal equal to the blended air quality parameter signal represented by the difference between the enthalpy values of the air handler’s return air and outside air.