IP Library › Patent Application 18753922
Patent Application
App. No. 18/753,922

Secure Electric Vehicle Charger and System Incorporating Thereof

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Quick Facts
Patent No.
US None
App. No.
18/753,922
Abstract

A secure electric vehicle (EV) charger and system incorporating thereof is provided. One embodiment includes an EV charger. The EV charger includes a processor, a low power short range point-to-point communication system, and a memory containing an authentication software application. The processor is configured by the authentication software application to receive an authentication request from a mobile device via the low power short range point-to-point communication system, send encrypted EV charger access credentials to the mobile device, receive a digital token from the mobile device, verify the digital token, and initiate a charging session based upon a command contained within the digital token. The digital token may be encrypted using a public key and may be self-authenticating without use of an internet connection thus enabling secure charging without the presence of an internet connection.

Claims (56)

1 . An electric vehicle (EV) charger, comprising:

a power management unit;

a processor;

a charger cable; and

a memory containing an authentication software application;

wherein the processor is configured by the authentication software application to:

authenticate a first communication session with an EV through the charger cable;

send, via the first communication session, encrypted EV charger access credentials to the EV;

receive, via the first communication session, a digital token from the EV;

verify the digital token;

end the first communication session with the EV;

after ending the first communication session with the EV, initiate a charging session based upon a command contained within the digital token such that power is provided to the EV via the charger cable;

end the charging session;

store, in the memory, charging session data for the charging session;

authenticate a second communication session with the EV via the charger cable, wherein the second communication session is separate from the first communication session; and

through the second communication session with the EV, transfer the charging session data to the EV, wherein the charging session data is forwarded to a server when an internet connection is available on the EV.

2 . The EV charger of claim 1 , wherein the memory further contains a digital certificate comprising cryptographic information.

3 . The EV charger of claim 2 , wherein the authentication request from the mobile device contains an encrypted challenge.

4 . The EV charger of claim 3 , wherein the encrypted EV charger access credentials comprise charger ID, time of day, and session time.

5 . The EV charger of claim 2 , wherein verifying the digital token is performed by decrypting the digital token using cryptographic information contained within the digital certificate.

6 . The EV charger of claim 1 , wherein the processor is further configured by the authentication software application to collect charging session data.

7 . The EV charger of claim 6 , wherein the processor is further configured by the authentication software application to send the charging session data to the mobile device via the charger cable.

8 . The EV charger of claim 6 , wherein the charging session data comprises duration of the charging session, energy used during the charging session, and a plug-in status.

9 . The EV charger of claim 8 , wherein the charging session data further comprises a status of the EV charger, diagnostics data, temperature data and humidity data.

10 . The EV charger of claim 1 , wherein the digital token is bound to a specific time period.

11 . The EV charger of claim 1 , wherein the processor is further configured by the authentication software application to receive a communication from the mobile device via the charger cable.

12 . The EV charger of claim 11 , wherein the communication comprises an encrypted message to end the charging session.

13 . The EV charger of claim 12 , wherein the processor is further configured by the authentication software application to decrypt the second communication message and to end the charging session.

14 . The EV charger of claim 13 , wherein:

the EV charger further comprises a locking mechanism, and

the processor is further configured by the authentication software application to release the locking mechanism upon ending the charging session.

15 . A system for electric vehicle (EV) charging, the system comprising:

an EV charger, wherein the EV charger comprises:

a power management unit;

a processor;

a charger cable; and

a memory containing an authentication software application;

wherein the processor is configured by the authentication software application to:

authenticate a first communication session with an EV through the charger cable;

send, via the first communication session, encrypted EV charger access credentials to the EV;

receive, via the first communication session, a digital token from the EV;

verify the digital token;

end the first communication session with the EV;

after ending the first communication session with the EV, initiate a charging session based upon a command contained within the digital token such that power is provided to the EV via the charger cable;

end the charging session;

store, in the memory, charging session data for the charging session;

authenticate a second communication session with the EV via the charger cable, wherein the second communication session is separate from the first communication session; and

through the second communication session with the EV, transfer the charging session data to the EV, wherein the charging session data is forwarded to a server when an internet connection is available on the EV,

wherein the EV comprises an EV processor and an EV memory containing an EV authentication software application;

wherein the EV processor is configured by the EV authentication software application to:

send the authentication request to the EV charger via the charger cable;

receive the encrypted EV charger access credentials from the EV charger; and

send the digital token to the EV charger.

16 . The system of claim 15 , wherein the charging session data comprises duration of the charging session, energy used during the charging session; plug-in status, status of the EV charger, diagnostics data, temperature and humidity.

17 . The system of claim 16 , wherein the EV processor is further configured by the mobile device authentication software application to communicate with the server when a network connection with the server is present.

18 . The system of claim 17 , wherein the mobile device processor is further configured by the mobile device authentication software application to send the charging session data to the server.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2024
From: BHARADWAJ, NIKHIL SRINATH
To: EVE ENERGY VENTURES INC.
Reel/Frame 067850/0868 →