Method and apparatus for indoor position tagging
First Claim
1. A system for providing position tagging within an environment, the system comprising:
- at least one mobile electronic device adapted to be moved within the environment, the at least one mobile electronic device including an inertial measurement unit, a radio frequency receiver, and at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver;
a pedestrian dead reckoning module adapted to query and record time stamped readings from the inertial measurement unit, the radio frequency receiver, and the at least one of the near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver;
wherein the pedestrian dead reckoning module is adapted to;
translate the recorded time stamped readings from the inertial measurement unit into geographic coordinates for respective steps taken by a user carrying the mobile electronic device;
estimate a heading of the user within the environment using a combination of a yaw value and a pocket offset angle determined based on the recorded time stamped readings from the inertial measurement unit;
record absolute position data input through the at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver; and
set, in the pedestrian dead reckoning module, a reference position for the at least one mobile electronic device to the recorded absolute position data; and
a refinement module adapted to smooth a trajectory defined by the geographic coordinates using the at least one time stamped signal from the radio frequency receiver of the at least one mobile electronic device.
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Accused Products
Abstract
A system and method for position tagging within an environment includes at least one mobile electronic device adapted to be moved within the environment and a pedestrian dead reckoning module. The at least one mobile electronic device includes an inertial measurement unit and at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver. The pedestrian dead reckoning module is adapted to query and record time stamped readings from the inertial measurement unit and the at least one of the near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver. The system and method may generate one or more spatial maps of the environment through the collection of radio frequency signal data along with the time stamped readings.
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Citations
12 Claims
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1. A system for providing position tagging within an environment, the system comprising:
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at least one mobile electronic device adapted to be moved within the environment, the at least one mobile electronic device including an inertial measurement unit, a radio frequency receiver, and at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver; a pedestrian dead reckoning module adapted to query and record time stamped readings from the inertial measurement unit, the radio frequency receiver, and the at least one of the near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver; wherein the pedestrian dead reckoning module is adapted to; translate the recorded time stamped readings from the inertial measurement unit into geographic coordinates for respective steps taken by a user carrying the mobile electronic device; estimate a heading of the user within the environment using a combination of a yaw value and a pocket offset angle determined based on the recorded time stamped readings from the inertial measurement unit; record absolute position data input through the at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver or WiFi receiver; and set, in the pedestrian dead reckoning module, a reference position for the at least one mobile electronic device to the recorded absolute position data; and a refinement module adapted to smooth a trajectory defined by the geographic coordinates using the at least one time stamped signal from the radio frequency receiver of the at least one mobile electronic device. - View Dependent Claims (2, 3, 4)
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5. A computerized method comprising the steps of:
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recording, through a pedestrian dead reckoning module executed by a processor of a mobile device, time stamped readings from an inertial measurement unit of the mobile device, at least one time stamped signal from a radio frequency receiver of the mobile electronic device, and absolute position data input through at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver, WiFi receiver or the radio frequency receiver of the mobile device; translating, through the pedestrian dead reckoning module executed by the processor of the mobile device, the recorded time stamped readings from the inertial measurement unit into geographic coordinates for respective steps taken by a user carrying the mobile device; estimating a heading of the user within an environment using a combination of a yaw value and a pocket offset angle determined based on the recorded time stamped readings from the inertial measurement unit; setting, in the pedestrian dead reckoning module, a reference position for the mobile device to the recorded absolute position data; and smoothing, by a refinement module on a server, a trajectory defined by the geographic coordinates using the at least one time stamped signal from the radio frequency receiver of the mobile electronic device. - View Dependent Claims (6, 7, 8, 9)
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10. A non-transitory, tangible computer-readable medium storing instructions adapted to be executed by at least one processor to perform a method comprising the steps of:
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recording, through a pedestrian dead reckoning module executed by a processor of a mobile device, time stamped readings from an inertial measurement unit of the mobile device, at least one time stamped signal from a radio frequency receiver of the mobile electronic device, and absolute position data input through at least one of a near field communication chip, barcode scanner, global positioning system, Bluetooth receiver, WiFi receiver or the radio frequency receiver of the mobile device; translating, through the pedestrian dead reckoning module executed by the processor of the mobile device, the recorded time stamped readings from the inertial measurement unit into geographic coordinates for each step taken by a user carrying the mobile device; estimating a heading of the user within an environment using a combination of a yaw value and a pocket offset angle determined based on the recorded time stamped readings from the inertial measurement unit; setting, in the pedestrian dead reckoning module, a reference position for the mobile device to the recorded absolute position data; and smoothing, by a refinement module on a server, a trajectory defined by the geographic coordinates using the at least one time stamped signal from the radio frequency receiver of the mobile electronic device. - View Dependent Claims (11, 12)
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Specification