Wireless tracking system and method utilizing tags with variable power level transmissions
First Claim
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1. A method for determining a real-time location of an object within an indoor facility, the method comprising:
- generating a first reading set from a primary plurality of sensor readings transmitted from a tag at the first energy level, the tag attached to the object;
sorting the first reading set by a plurality of primary physical regions;
selecting a first primary physical region of the plurality of primary physical regions, the first physical region composed of a first plurality of sensor readings having a highest average signal strength from the first reading set;
sorting the first plurality of sensor readings into a second plurality of sensor readings, the second plurality of sensor readings corresponding to a zone within the first primary physical region;
selecting a selected primary zone having the highest average reading from the second plurality of sensor readings;
calculating the first preliminary location of the object from a plurality of the highest sensor readings from the second plurality of sensor readings corresponding to the selected primary zone;
calculating a second preliminary location of the object from a second plurality of sensor readings generated at a second power level, the second power level less than the first power level; and
analyzing the first preliminary location of the object and the second preliminary location of the object to determine a real-time location of the object within the indoor facility.
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Abstract
The present invention provides a solution to mistaken location calculations based on multipath effects. The present invention utilizes tags attached to objects that transmit signals at various power levels for reception by sensors stationed throughout a facility. Sensor readings at the various power levels are utilized to determine the location of the tagged object.
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Citations
4 Claims
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1. A method for determining a real-time location of an object within an indoor facility, the method comprising:
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generating a first reading set from a primary plurality of sensor readings transmitted from a tag at the first energy level, the tag attached to the object; sorting the first reading set by a plurality of primary physical regions; selecting a first primary physical region of the plurality of primary physical regions, the first physical region composed of a first plurality of sensor readings having a highest average signal strength from the first reading set; sorting the first plurality of sensor readings into a second plurality of sensor readings, the second plurality of sensor readings corresponding to a zone within the first primary physical region; selecting a selected primary zone having the highest average reading from the second plurality of sensor readings; calculating the first preliminary location of the object from a plurality of the highest sensor readings from the second plurality of sensor readings corresponding to the selected primary zone; calculating a second preliminary location of the object from a second plurality of sensor readings generated at a second power level, the second power level less than the first power level; and analyzing the first preliminary location of the object and the second preliminary location of the object to determine a real-time location of the object within the indoor facility. - View Dependent Claims (2, 3, 4)
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Specification