IP Library Granted Patent US 11,704,749
Granted Patent B2
US 11,704,749 · App. 16/694,225 · Granted Jul 18, 2023

Networked utility services and vehicle charging stations

Inventors: Dinkar Kumar Verma (Bengaluru, IN); Srikanth Kathe (Bangalore, IN); Ratnavel Nambirajan Subramanian (Bengaluru, IN); Badri Narayan Krishnan (Bengaluru, IN); Madhurima Jaiswal (Bengaluru, IN)
Assignee: Itron Global SARL
G06Q50/06B60L53/665G06Q20/085G06Q20/202G06Q20/40
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Quick Facts
Patent No.
US 11,704,749
App. No.
16/694,225
Granted
Jul 18, 2023
Kind
B2
Abstract

Networked utility services handle data-flow in a system to operate electrical vehicle charging stations. In an example, first and second utility companies may operate in first and second respective areas. A user may have a residence in the first area and may have an electric vehicle at a vehicle charging station in the second area. The user may provide identification at the vehicle charging station in the second area, and the user's vehicle may be charged at that location using electricity from the second utility. Data including the user's identification and the electricity consumed in the charging may be sent to the first utility serving the area including the user's residence. The first utility may bill the user for the electricity used to charge the user's vehicle at the remote vehicle charging station. The charging station, both utilities and/or other parties may share in the receipts.

Claims (76)

1. A method of operating a vehicle charging station, the method comprising:

receiving an identification of a user based at least in part on input data from an input device of the vehicle charging station, wherein a first utility provides electricity to an electricity meter at a site of the user, and wherein a second utility provides electricity to the vehicle charging station;

requesting a transaction approval from a remote server, wherein the remote server is a server of the first utility, and wherein the remote server has a trusted-party relationship with a server of the vehicle charging station;

obtaining the transaction approval from the remote server;

charging a battery of a vehicle of the user responsive to the transaction approval;

measuring, by using a metrology unit of the vehicle charging station, a quantity of electricity used in the charging;

transferring data indicating the quantity of electricity from the metrology unit to the server of the vehicle charging station; and

sending transaction information, comprising the data indicating the quantity of electricity and the identification of the user, to the remote server.

2. The method of claim 1 , wherein receiving the identification of the user comprises receiving an alpha-numeric string representing an identity of the first utility and an alpha-numeric string representing an identity of the electricity meter at the site of the user.

3. The method of claim 1 , wherein receiving the identification of the user comprises at least one of:

receiving information from a smartcard of the user;

receiving information from an application running on a vehicle of the user;

receiving information from an application running on a kiosk of the vehicle charging station; and

receiving information from an application running on a cellphone of the user.

4. The method of claim 1 , wherein obtaining the transaction approval from the remote server comprises:

communicating with the remote server to verify an account of the user, wherein the communicating is performed over an advanced metering infrastructure (AMI) network.

5. The method of claim 1 , wherein:

obtaining the transaction approval from the remote server comprises obtaining the transaction approval from the server of the first utility at least in part using an advanced metering infrastructure (AMI) network; and

sending the transaction information comprises sending the transaction information to the server of the first utility at least in part using the AMI network.

6. The method of claim 1 , wherein:

obtaining the transaction approval from the remote server comprises receiving a transaction identifying code from the remote server; and

sending the transaction information comprises sending the transaction identifying code, the identification of the user, and the data indicating the quantity of electricity in an encrypted format.

7. The method of claim 1 , wherein receiving the identification of the user comprises receiving information from at least two of devices comprising:

a cellphone of the user;

a smartcard of the user;

the electricity meter at the site of the user; and

the vehicle of the user.

8. One or more non-transitory computer-readable media storing computer-executable instructions that, when executed by one or more processors, configure a computing device of a vehicle charging station to perform acts comprising:

receiving an identification of a user based at least in part on input data from an input device of the vehicle charging station, wherein a first utility provides electricity to an electricity meter at a site of the user, and wherein a second utility provides electricity to the vehicle charging station;

requesting a transaction approval from a remote server, wherein the remote server is a server of the first utility, and wherein the remote server has a trusted-party relationship with a server of the vehicle charging station;

obtaining the transaction approval from the remote server;

charging a battery of a vehicle of the user responsive to the transaction approval;

measuring, by using a metrology unit of the vehicle charging station, a quantity of electricity used in the charging;

transferring data indicating the quantity of electricity from the metrology unit to the server of the vehicle charging station; and

sending transaction information, comprising the data indicating the quantity of electricity and the identification of the user, to the remote server.

9. The non-transitory computer-readable media of claim 8 , wherein receiving the identification of the user comprises receiving an alpha-numeric string representing an identity of the first utility and an alpha-numeric string representing an identity of the electricity meter at the site of the user.

10. The non-transitory computer-readable media of claim 8 , wherein receiving the identification of the user comprises:

receiving information from a smartcard of the user or an application running on a cellphone of the user; and

receiving information from an application running on a vehicle of the user.

11. The non-transitory computer-readable media of claim 8 , wherein obtaining the transaction approval from the remote server comprises:

communicating with the remote server to verify an account of the user, wherein the communicating is performed over an advanced metering infrastructure (AMI) network.

12. The non-transitory computer-readable media of claim 8 , wherein:

obtaining the transaction approval from the remote server comprises obtaining the transaction approval from the server of the first utility at least in part using an advanced metering infrastructure (AMI) network; and

sending the transaction information comprises sending the transaction information to the server of the first utility at least in part using the AMI network.

13. The non-transitory computer-readable media of claim 8 , wherein:

obtaining the transaction approval from the remote server comprises receiving a transaction identifying code from the remote server; and

sending the transaction information comprises sending the transaction identifying code, the identification of the user, and the data indicating the quantity of electricity in an encrypted format.

14. The non-transitory computer-readable media of claim 8 , wherein receiving the identification of the user comprises receiving information from at least two of devices comprising:

a cellphone of the user;

a smartcard of the user;

the electricity meter at the site of the user; and

the vehicle of the user.

15. A vehicle charging station, comprising:

a metrology unit; and

a server of the vehicle charging station, configured to perform acts, comprising:

receiving an identification of a user based at least in part on input data from an input device of the vehicle charging station, wherein a first utility provides electricity to an electricity meter at a site of the user, and wherein a second utility provides electricity to the vehicle charging station;

requesting a transaction approval from a remote server, wherein the remote server is a server of the first utility, and wherein the remote server has a trusted-party relationship with a server of the vehicle charging station;

obtaining the transaction approval from the remote server;

charging a battery of a vehicle of the user responsive to the transaction approval;

measuring, by using the metrology unit of the vehicle charging station, a quantity of electricity used in the charging;

transferring data indicating the quantity of electricity from the metrology unit to the server of the vehicle charging station; and

sending transaction information, comprising the data indicating the quantity of electricity and the identification of the user, to the remote server.

16. The vehicle charging station of claim 15 , wherein receiving the identification of the user comprises receiving an alpha-numeric string representing an identity of the first utility and an alpha-numeric string representing an identity of the electricity meter at the site of the user.

17. The vehicle charging station of claim 15 , wherein receiving the identification of the user comprises at least one of:

receiving information from a smartcard of the user;

receiving information from an application running on a vehicle of the user;

receiving information from an application running on a kiosk of the vehicle charging station; and

receiving information from an application running on a cellphone of the user.

18. The vehicle charging station of claim 15 , wherein obtaining the transaction approval from the remote server comprises:

communicating with the remote server to verify an account of the user, wherein the communicating is performed over an advanced metering infrastructure (AMI) network.

19. The vehicle charging station of claim 15 , wherein:

obtaining the transaction approval from the remote server comprises obtaining the transaction approval from the server of the first utility at least in part using an advanced metering infrastructure (AMI) network; and

sending the transaction information comprises sending the transaction information to the server of the first utility at least in part using the AMI network.

20. The vehicle charging station of claim 15 , wherein:

obtaining the transaction approval from the remote server comprises receiving a transaction identifying code from the remote server; and

sending the transaction information comprises sending the transaction identifying code, the identification of the user, and the data indicating the quantity of electricity in an encrypted format.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2020
From: VERMA, DINKAR KUMAR; KATHE, SRIKANTH; SUBRAMANIAN, RATNAVEL NAMBIRAJAN; KRISHNAN, BADRI NARAYAN; JAISWAL, MADHURIMA
To: ITRON GLOBAL SARL
Reel/Frame 051731/0723 →
Continuity (1)
Related Publication 20210158459A1 · May 27, 2021