Technique for detecting and predicting air filter condition
First Claim
1. A method of detecting air filter clogging for an air handling system comprising the steps of:
- a) determining a system resistance utilizing a power and speed of a fan;
b) comparing said determined system resistance to an estimated system resistance utilizing data indicative of current operating conditions; and
c) determining that the air filter is plugged in response to said determined system resistance being greater than a threshold value.
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Accused Products
Abstract
A method and system for detecting and predicting air filter condition for an air handling system operates by determining a system resistance to air flow. The system resistance is utilized to determine a detection statistic indicative of current filter condition and to predict remaining life of the air filter. The system resistance is determined using models that approximate the expected operation of the air handling system. The approximation is then compared to actual values to obtain a difference. Once the difference between the approximated value exceeds a threshold value, an alarm is initiated that is indicative of system resistance. The remaining air filter life is then determined by using historically gathered data, or by using a known degradation rate of the air filter. Once the remaining life of the air filter is estimated, replacement can be scheduled that would coincide with other maintenance.
236 Citations
23 Claims
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1. A method of detecting air filter clogging for an air handling system comprising the steps of:
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a) determining a system resistance utilizing a power and speed of a fan; b) comparing said determined system resistance to an estimated system resistance utilizing data indicative of current operating conditions; and c) determining that the air filter is plugged in response to said determined system resistance being greater than a threshold value. - View Dependent Claims (2, 3, 4, 5, 6)
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7. A method of detecting air filter clogging for an air handling system comprising the steps of:
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a) determining an estimated system resistance by calculating enthalpy at an inlet and outlet of a heat exchanger; obtaining refrigerant flow rate; determining heat exchange rate of the heat exchanger utilizing the refrigerant flow rate and the calculated enthalpies at the inlet and outlet of the heat exchanger; determining an airflow required to provide the determined heat exchange rate; and determining system resistance utilizing predetermined fan speed value and said determined airflow; b) comparing said determined system resistance to a threshold value; and c) determining that the air filter is plugged in response to said determined system resistance being greater than a threshold value. - View Dependent Claims (8, 9)
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10. A method of detecting air filter clogging for an air handling system comprising the steps of:
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a) determining a system resistance comprising detecting the system resistance immediately after installation of an unclogged air filter, and determining a condition of heat exchanger fins based upon several detected system resistance values immediately following installation of an unclogged air filter; b) comparing said determined system resistance to a threshold value; and c) determining that the air filter is plugged in response to said determined system resistance being greater than a threshold value. - View Dependent Claims (11)
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12. A method of predicting air filter clogging for a heating, ventilating and air conditioning system comprising the steps of:
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a) determining a system resistance value; b) calculating a detection statistic value utilizing according to the equation;
Rn=max(0, Rn-1+cn−
μ
)where R=the detection statistic; c=system resistance; n=sampling interval; and μ
=reference mean value of filter resistance;c) comparing said detection statistic value with a threshold value and indicating an alarm based on said comparison; and d) predicting a time fore air filter replacement base on said detection statistic.
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13. A method of predicting air filter clogging for a heating, ventilating and air conditioning system comprising the steps of:
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a) determining a system resistance value including a statistical model of air filter degradation and a finite state model of the degradation process, wherein said statistical model comprises probability distributions of a time between changes in air filter degradation, a time of the air filter degradation and a magnitude of each air filter degradation change; b) calculating a detection statistic value utilizing said determined resistance value; c) comparing said detection statistic value with a threshold value and indicating an alarm based on said comparison; and d) predicting a time for air filter replacement based on said detection statistic. - View Dependent Claims (14)
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15. A system for monitoring an air handling system comprising:
a controller for receiving data indicative of a system resistance of the air handling system, comparing the system resistance to an estimated resistance value, and determining that an air filter of the air handling system is plugged in response to the system resistance being greater than said estimated resistance value, wherein said controller receives information indicative of power and speed of a fan for determining the system resistance. - View Dependent Claims (16, 17, 19, 20, 21, 22, 23)
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18. A system for monitoring an air handling system comprising:
A controller for receiving data indicative of a system resistance of the air handling system, comparing the system resistance to an estimated resistance value, and determining that an air filter of the air handling system is plugged in response to the system resistance being greater than said estimated resistance value, wherein said controller receives information indicative of current air handling system operating conditions and utilizes said information indicative of air handling system operating conditions to determine a heat exchange rate and a rate of airflow required to provide the determined heat exchange rate.
Specification