IP Library Granted Patent US 7,049,829
Granted Patent B2
US 7,049,829 · App. 10/685,077 · Granted May 23, 2006

Moisture sensor with capacitive moisture measuring element and method of determining air humidity

Assignee: Siemens Building Technology AG
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Quick Facts
Patent No.
US 7,049,829
App. No.
10/685,077
Granted
May 23, 2006
Kind
B2
Abstract

In a method of determining air humidity, a corrected moisture signal is calculated for a moisture signal (Hi) ascertained from electrical properties of a capacitive moisture measuring element. In a measuring phase ( 30 ) with rising relative air humidity (RH), the corrected moisture signal is the current moisture signal (Hi) increased by a correction value, whereas in a measuring phase ( 31 ) with falling relative air humidity (RH) the corrected moisture signal is the current moisture signal (Hi) reduced by a correction value. Depending on the respective properties of the moisture measuring element and the required degree of measuring accuracy, the correction value is constant or is taken into consideration in dependence on the relative air humidity RH. This method provides a higher level of measuring accuracy with a moisture sensor equipped with the moisture measuring element.

Claims (28)

1. A method of determining air humidity with a capacitive moisture measuring element, comprising:

determining a current moisture signal from properties of the capacitive moisture measuring element, and

determining a corrected moisture signal from the current moisture signal, wherein in a measuring phase with rising relative air humidity RH the corrected moisture signal is the current moisture signal increased by a correction value a(RH) and wherein in a measuring phase with falling relative air humidity RH the corrected moisture signal is the current moisture signal reduced by a correction value a(RH).

2. A method as set forth in claim 1 , wherein the correction value a(RH) is constant.

3. A method as set forth in claim 1 , wherein the correction value a(RH) is used from a stored table or is calculated as a mathematical function.

4. A method as set forth in claim 1 , wherein charging and/or discharging the capacitive moisture measuring element by way of a first measuring resistor provides for determining a first time constant or a first period duration of the charging and/or discharging operation, and charging and/or discharging the capacitive moisture measuring element by way of a second measuring resistor, whose value is different from the value of the first measuring resistor, provides for determining a second time constant or a second period duration of the charging and/or discharging operation.

5. A method as set forth in claim 4 , wherein the capacitance of the capacitive moisture measuring element is calculated from the two time constants or the two period durations, and the capacitive moisture measuring element for the calculation operation is modeled by a parallel circuit of an ideal capacitor and an ohmic resistance.

6. A method as set forth in claim 4 , wherein the ohmic resistance value of the capacitive moisture measuring element is calculated from the two time constants or the two period durations, and the moisture measuring element for the calculation operation is modeled by a parallel circuit of an ideal capacitor and an ohmic resistance.

7. A method as set forth in claim 1 , wherein the current moisture signal is determining with the capacitance of the capacitive moisture measuring element.

8. A moisture sensor, comprising;

a capacitive moisture measuring element;

a processing circuit configured to determine a current moisture signal from electrical properties of the capacitive moisture measuring element, and determine a corrected moisture signal from the current moisture signal, wherein in a measuring phase with rising relative air humidity RH the corrected moisture signal is the current moisture increased by a correction value a(RH) and wherein in a measuring phase with falling relative air humidity RH the corrected moisture signal reduced by a correction value a(RH).

9. A moisture sensor as set forth in claim 8 , further comprising a monitoring unit by which a certain deviation in an ohmic resistance value of the capacitive moisture measuring element over a relatively long period of time can be detected and signalled.

10. A moisture sensor as set forth in claim 8 , wherein the processing circuit includes a measurement determination unit configured to generate the current moisture signal and a correction unit configured to determine the corrected moisture signal.

11. A moisture sensor as set forth in claim 10 , wherein the measurement determination unit includes a timer unit and a control unit, the timer unit configured as a multivibrator.

12. A moisture sensor as set forth in claim 10 , wherein the measurement determination unit is further configured to:

charge and/or discharge the capacitive moisture measuring element by way of a first measuring resistor to provide for determining a first time constant or a first period duration of the charging and/or discharging, and charge and/or discharge the capacitive moisture measuring element by way of a second measuring resistor, whose value is different from the value of the first measuring resistor, to provide for determining a second time constant or a second period duration of the charging and/or discharging.

13. A method of determining air humidity with a capacitive moisture measuring element, comprising:

determining a current moisture signal from electrical properties of the moisture measuring element;

adjusting the current moisture signal in a first direction to generate a corrected current moisture signal if a rising relative air humidity is detected; and

adjusting the current moisture signal in a second direction to generate the corrected current moisture signal if a falling relative air humidity is detected, the second direction opposite of the first direction.

14. A method as set forth in claim 13 , wherein increasing the current moisture signal includes increasing the current moisture signal by a constant correction value.

15. A method as set forth in claim 13 , wherein increasing the current moisture signal includes increasing the current moisture value by a correction value obtained from a stored table.

16. A method as set forth in claim 13 , wherein the current moisture signal includes increasing the current moisture value by a correction value calculated from a mathematical function.

17. A method as set forth in claim 13 , wherein determining the current moisture signal further comprises:

charging and/or discharging the moisture measuring element by way of a first measuring resistor to provide for determining a first time constant or a first period duration of the charging and/or discharging operation, and

charging and/or discharging the moisture measuring element by way of a second measuring resistor, whose value is different from the value of the first measuring resistor, to provide for determining a second time constant or a second period duration of the charging and/or discharging operation.

18. A method as set forth in claim 17 , wherein the capacitance of the moisture measuring element is calculated from the two time constants or the two period durations, and the moisture measuring element for the calculation operation is modeled by a parallel circuit of an ideal capacitor and an ohmic resistance.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2015
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS SCHWEIZ AG
Reel/Frame 037165/0507 →
MERGER Recorded Mar 16, 2011
From: SIEMENS BUILDING TECHNOLOGIES AG
To: SIEMENS SCHWEIZ AG
Reel/Frame 025968/0221 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2011
From: SIEMENS SCHWEIZ AG
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 025968/0791 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2003
From: LUTHI, YVES
To: SIEMENS BUILDING TECHNOLOGY AG
Reel/Frame 014614/0206 →
Priority Claims (1)
EP 02023364 · Oct 18, 2002 · regional
Continuity (1)
Related Publication 20040075445A1 · Apr 22, 2004