IP Library › Granted Patent US 12,265,944
Granted Patent B2
US 12,265,944 · App. 18/098,372 · Granted Apr 1, 2025

Adaptive RFID inventory system

Inventor: Jonathan Michael Butler (Gainesville, GA)
Assignee: VenaResourses, Inc.
G06Q10/087G06K7/10128G06K7/10227G06K7/10366G06K19/0723
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Quick Facts
Patent No.
US 12,265,944
App. No.
18/098,372
Granted
Apr 1, 2025
Kind
B2
Abstract

An adaptive inventory management system for use in a materials handling facility storing a plurality of items that are each associated with a Radio Frequency Identification (RFID) tag. The management system including a global inventory database subsystem and a RFID interrogator subsystem comprising a plurality of RFID interrogators that are each configured to read the unique identifier of the RFID tag associated with each of the plurality of items that are within a defined boundary of at least one scan zone generated by the respective RFID interrogator and to communicate the unique identifier of the each scanned RFID tag identified within each scan zone of the respective RFID interrogator to the global inventory database subsystem. The management system being selectively configured to effect user desired levels of fidelity and/or resolution with respect to the generated unique identifier of each scanned RFID tag within a defined space of the materials handling facility.

Claims (26)

1. An adaptive inventory management system for use in a materials handling facility, comprising:

a plurality of items, wherein each of the plurality of items is associated with a Radio Frequency Identification (RFID) tag, wherein each RFID tag stores a unique identifier;

a global inventory database subsystem having a processing system, wherein an at least one memory of the processing system is configured to store program instructions; and

an RFID interrogator subsystem comprising:

a plurality of fixed RFID interrogators mounted in respective fixed geospatial locations in the materials handling facility, wherein each of the plurality of fixed RFID interrogators are spaced from each other, wherein the geospatial location of the plurality of fixed RFID interrogators is stored within the at least one memory of the processing system, wherein the plurality of fixed RFID interrogators includes a direct wireless connection between respective RFID interrogators for the sharing of certain data, and wherein each of the RFID interrogators is configured to read the unique identifier of the RFID tag associated with each of the plurality of items that are within a defined boundary of at least one scan zone generated by the respective RFID interrogator, and to communicate the unique identifier of the each scanned RFID tag identified within each scan zone of the respective RFID interrogator to the processing system;

at least one mobile RFID interrogator, each RFID interrogators positionable in user selectable geospatial locations in the materials handling facility mounted in respective fixed geospatial locations in the materials handling facility, wherein the geospatial location of each mobile RFID interrogator is stored within the at least one memory of the processing system, and wherein each of the mobile RFID interrogators is configured to read the unique identifier of the RFID tag associated with each of the plurality of items that are within a defined boundary of at least one scan zone generated by the respective mobile RFID interrogator, and to communicate the unique identifier of the each scanned RFID tag identified within each scan zone of the respective mobile RFID interrogator to the processing system;

wherein the at least one memory of the processing system is configured to store program instructions that when executed cause the defined boundaries each scan zone for each RFID interrogators to be selectively configured to effect user desired levels of fidelity and/or resolution with respect to the generated unique identifier of each scanned RFID tag within a defined space of the materials handling facility.

2. The adaptive inventory management system of claim 1 , wherein the defined boundaries each of scan zone for each of the fixed RFID interrogator is configured such that boundaries of the respective RFID interrogators do not overlap.

3. The adaptive inventory management system of claim 1 , wherein the defined boundaries of each scan zone for each RFID interrogator is user configurable such that at least portions of the defined boundaries of the respective RFID interrogators overlap with at least adjacent or otherwise selected RFID interrogators to define at least one overlapping scan zone, wherein each overlapping scan zone and the associated RFID identifier data therefrom are created from RFID identifier data received from each scan of the respective scan zones of the respective selected RFID interrogators, and wherein the RFID identifier data of the each scanned RFID tag identified within overlapping scan zone is communicated to the processing system.

4. The adaptive inventory management system of claim 1 , wherein the scan zones projected by each RFID interrogator are selectively configured to effect user desired levels of fidelity and/or resolution via the use of one or more configurable program options to include at least one of: changing the number of RFID interrogators to change the number of scan zones projected by the RFID interrogators within the defined space of the materials handling facility; changing the use of overlapping scan zones projected by the RFID interrogators within the defined space of the materials handling facility; changing the use of signal strength or phase shifting modalities within respective scan zones projected by the RFID interrogators within the defined space of the materials handling facility; changing the use of steerable antenna technologies in each RFID interrogator to create multiple spaced scan zones generated from each of the RFID interrogators within the defined space of the materials handling facility; or changing the use of steerable antenna technologies in the RFID interrogators within the defined space of the materials handling facility to create multiple overlapping scan zones from each of the RFID interrogators.

5. The adaptive inventory management system of claim 4 , wherein user desired levels of fidelity and/or resolution can be selectively increased via the use of one or more configurable program options to include at least one of: increasing the number of RFID interrogators to increase the number of scan zones projected by the RFID interrogators within the defined space of the materials handling facility; increasing the use of overlapping scan zones projected by the RFID interrogators within the defined space of the materials handling facility; increasing the use of signal strength or phase shifting modalities within respective scan zones projected by the RFID interrogators within the defined space of the materials handling facility; increasing the use of steerable antenna technologies in each RFID interrogator to increase the number of created multiple spaced scan zones generated from each of the RFID interrogators within the defined space of the materials handling facility; or increasing the use of steerable antenna technologies in the RFID interrogators within the defined space of the materials handling facility to increase the number of created multiple overlapping scan zones from each of the RFID interrogators.

6. The adaptive inventory management system of claim 4 , wherein user desired levels of fidelity and/or resolution can be selectively decreased via the use of one or more configurable program options to include at least one of: decreasing the number of RFID interrogators to decrease the number of scan zones projected by the RFID interrogators within the defined space of the materials handling facility; decreasing the use of overlapping scan zones projected by the RFID interrogators within the defined space of the materials handling facility; decreasing the use of signal strength or phase shifting modalities within respective scan zones projected by the RFID interrogators within the defined space of the materials handling facility; decreasing the use of steerable antenna technologies in each RFID interrogator to decrease the number of created multiple spaced scan zones generated from each of the RFID interrogators within the defined space of the materials handling facility; or decreasing the use of steerable antenna technologies in the RFID interrogators within the defined space of the materials handling facility to decrease the number of created multiple overlapping scan zones from each of the RFID interrogators.

7. The adaptive inventory management system of claim 1 , further comprising a plurality of receptacles configured to receive one or more items of the plurality of items, wherein the geospatial location of each of the plurality of receptacles is stored within the at least one memory of the processing system.

8. The adaptive inventory management system of claim 1 , wherein the at least one mobile RFID interrogator is configured to be operated by a mobile agent of the materials handling facility.

9. The adaptive inventory management system of claim 1 , wherein the at least one mobile RFID interrogator is configured to be mounted to a vehicle of the materials handling facility.

10. The adaptive inventory management system of claim 9 , wherein the at least one mobile RFID interrogator is powered via communication with an electrical system of the vehicle.

11. The adaptive inventory management system of claim 9 , wherein the at least one mobile RFID interrogator is powered via communication with an internal battery.

12. The adaptive inventory management system of claim 9 , wherein the at least one mobile RFID interrogator comprises a plurality of antennas positioned to face in desired directions or orientations.

13. The adaptive inventory management system of claim 12 , wherein the plurality of antenna comprises at least two separate pairs of antenna that can be positioned on opposite sides of the vehicle transverse to the axis of movement of the vehicle.

14. The adaptive inventory management system of claim 13 , wherein each of the pairs of antenna further comprises a first antenna spaced apart from a second antenna.

15. The adaptive inventory management system of claim 12 , wherein the plurality of antenna comprises at least two separate pairs of antenna positioned in opposition that are configured to operatively scan transverse to the axis of movement of the vehicle.

16. The adaptive inventory management system of claim 15 , wherein each of the pairs of antenna further comprises a first antenna spaced apart from a second antenna.

17. The adaptive inventory management system of claim 15 , wherein the first antenna is positioned so that the first antenna is angled with respect to the ground surface, whereby the operational azimuth axis of the first antenna has an upwardly facing orientation, and the second antenna is positioned so that the second antenna is substantially transverse with respect to the ground surface, whereby the operational azimuth axis of the second antenna is substantially horizontal.

18. The adaptive inventory management system of claim 12 , wherein the plurality of antenna can comprise a pair of spaced antenna positioned in opposition that are configured to operatively scan transverse to the axis of movement of the vehicle.

19. The adaptive inventory management system of claim 1 , wherein the at least one mobile RFID interrogator is configured to communicate a real-time geo spatial position of the mobile RFID interrogator to the RFID interrogator subsystem.

20. The adaptive inventory management system of claim 1 , wherein the global inventory database subsystem is configured to activate a scan, or to prevent a scan, on a recurring or otherwise identified timeline or schedule.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2024
From: BUTLER, JONATHAN MICHAEL
To: VENARESOURCES, INC.
Reel/Frame 066158/0425 →
Continuity (7)
Continuation In Part 17972996 · Oct 25, 2022
Continuation 17686776 · Mar 4, 2022
Continuation 17484885 · Sep 24, 2021
Provisional Application 63300365 · Jan 18, 2022
Provisional Application 63219613 · Jul 8, 2021
Provisional Application 63149016 · Feb 12, 2021
Related Publication 20230297952A1 · Sep 21, 2023
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Cited By (1)
US 12,591,851