Self-commissioning daylight switching system
First Claim
1. A method of programming a switch having a processor and a memory to control an electric luminaire in an indoor space responsive to signals from a photosensor, the method comprising the steps of:
- (a) calculating a first plurality of sensor signal values when the photosensor is disposed at a first location within the space;
(b) calculating a second plurality of sensor signal values when the photosensor is disposed at a second location within the space;
(c) calculating a first threshold value for causing the switch to turn on the luminaire when light in the space is less than a first value; and
(d) calculating a second threshold value for causing the switch to turn off the luminaire when light in the space is greater than a second value; and
(e) storing the first and second threshold values in the memory,wherein the calculations performed in steps (c) and (d) are based on the sensor signal values calculated in steps (a) and (b).
1 Assignment
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Accused Products
Abstract
A method of commissioning a switch to control an electric luminaire in an indoor space responsive to signals from a photosensor. A first plurality of sensor signal values is calculated when the photosensor is disposed at a first location within the space. A second plurality of sensor signal values is calculated when the photosensor is disposed at a second location within the space. A first threshold value is calculated for switching on the luminaire when light in the space is less than a first value. A second threshold value is calculated for switching off the luminaire when light in the space is greater than a second value.
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Citations
8 Claims
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1. A method of programming a switch having a processor and a memory to control an electric luminaire in an indoor space responsive to signals from a photosensor, the method comprising the steps of:
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(a) calculating a first plurality of sensor signal values when the photosensor is disposed at a first location within the space; (b) calculating a second plurality of sensor signal values when the photosensor is disposed at a second location within the space; (c) calculating a first threshold value for causing the switch to turn on the luminaire when light in the space is less than a first value; and (d) calculating a second threshold value for causing the switch to turn off the luminaire when light in the space is greater than a second value; and (e) storing the first and second threshold values in the memory, wherein the calculations performed in steps (c) and (d) are based on the sensor signal values calculated in steps (a) and (b). - View Dependent Claims (2, 3)
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4. A method of programming a switch having a processor and a memory to control an electric luminaire in an indoor space responsive to signals from a photosensor, the method comprising the steps of:
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(a) turning the luminaire off; (b) calculating a first sensor signal value when the photosensor is disposed at a first location within the space; (c) turning the luminaire on; (d) calculating a second sensor signal value when the photosensor is disposed at the first location within the space; (e) turning the luminaire off; (f) calculating a third sensor signal value when the photosensor is disposed at another location within the space; (g) turning the luminaire on; and (h) calculating a fourth sensor signal value when the photosensor is disposed at the other location within the space. - View Dependent Claims (5, 6, 7)
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8. A machine-readable medium having encoded on the medium a program code, wherein, when the program code is executed by a machine, the machine implements a method for programming a switch to control an electric luminaire in an indoor space, the method comprising the steps of:
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(a) calculating a first plurality of sensor signal values when the photosensor is disposed at a first location within the space; (b) calculating a second plurality of sensor signal values when the photosensor is disposed at a second location within the space; (c) calculating a first threshold value for causing the switch to turn on the luminaire when light in the space is less than a first value; (d) calculating a second threshold value for causing the switch to turn off the luminaire when light in the space is greater than a second value; and (e) storing the first and second threshold values in the memory wherein the calculations performed in steps (c) and (d) are based on the sensor signal values calculated in steps (a) and (b).
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Specification