IP Library › Patent Application 18369542
Patent Application
App. No. 18/369,542

Systems and Methods for Charging Electric Vehicles

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Quick Facts
Patent No.
US None
App. No.
18/369,542
Abstract

A charging system includes a server that receives information from a plurality of charging stations and a plurality of electric vehicles. The server is configured to analyze the information to predict and schedule future charging services for one or more electric vehicles of the plurality of electric vehicles. The server is further configured to predict an amount of electrical energy needed for future charging services for the one or more electric vehicles. The server is further configured to instruct the predicted service stations that will provide the service to store a portion of the predicted required electrical energy in a respective battery bank associated with the service station for delivery to an electric vehicle.

Claims (46)

1 . A system for charging electric vehicles, the system comprising:

a server;

a plurality of charging stations positioned throughout a geographic area, each charging station of the plurality of charging stations includes a battery bank respectively;

a plurality of electric vehicles; wherein, the server is configured to:

receive a first information from each electric vehicle the plurality of electric vehicles;

receive a second information from each charging station of the plurality of charging stations;

analyze the first information and the second information to detect a first pattern of use with respect to a first electric vehicle of the plurality of electric vehicles;

analyze the first information and the second information to detect a second pattern of use with respect to one or more charging stations of the plurality of charging stations;

predict in accordance with the first pattern of use and the second pattern of use, a future time when the first electric vehicle will seek charging services at a first charging station of the plurality of charging stations;

predict a first amount of electrical energy that will be needed by the first electric vehicle; and

transmit an instruction to the first charging station to store a portion of the first amount of electrical energy in the battery bank of the first charging station for delivery to the first electric vehicle at the future time; and

responsive to the instruction, the first charging station is configured to:

receive a second amount of electrical energy from a transmission line; and

steer a portion of the second amount of the electrical energy to the battery bank of the first charging station to store the first amount of electrical energy in the battery bank of the first charging station.

2 . The system of claim 1 wherein the server is further configured to determine the portion of the first amount of electrical energy to store in the battery bank of the first charging station.

3 . The system of claim 1 wherein the future time includes a date and a time of day.

4 . The system of claim 1 wherein the first charging station further comprises a power switch and a processing circuit, wherein responsive to the instruction, the processing circuit controls the power switch to store the portion of the first amount of electrical energy in one or more battery packs of the battery bank of the first charging station.

5 . The system of claim 1 wherein the first charging station is further configured to deliver the portion of the first amount of electrical energy from the battery bank of the first charging station responsive to verifying an identifier of the first electric vehicle.

6 . The system of claim 1 wherein the first charging station is further configured to store the portion of the first amount of electrical energy in the battery bank of the first charging station responsive to a physical act taken by a user of the first electric vehicle to confirm the future time for delivery.

7 . A system for charging electric vehicles, the system comprising:

a server;

a plurality of charging stations positioned throughout a geographic area, each charging station of the plurality of charging stations includes a battery bank respectively;

a plurality of electric vehicles; wherein, the server is configured to:

analyze a first information regarding use of each electric vehicle and a second information regarding use of each charging station to detect a first pattern with respect to charging a first electric vehicle of the plurality of electric vehicles;

predict in accordance with the first pattern, a future time when the first electric vehicle will seek charging services at a first charging station of the plurality of charging stations; and

transmit an instruction to the first charging station to store a first amount of electrical energy in the battery bank of the first charging station for delivery to the first electric vehicle at the future time; and

responsive to the instruction, the first charging station is configured to:

receive a second amount of electrical energy from a transmission line; and

steer a portion of the second amount of the electrical energy to the battery bank of the first charging station to store the first amount of electrical energy in the battery bank of the first charging station.

8 . The system of claim 7 wherein the server is further configured to receive the first information from each electric vehicle the plurality of electric vehicles.

9 . The system of claim 7 wherein the server is further configured to receive the second information from each charging station of the plurality of charging stations.

10 . The system of claim 7 wherein the server is further configured to predict the first amount of electrical energy to store in the battery bank of the first charging station.

11 . The system of claim 7 wherein the future time includes a date and a time of day.

12 . The system of claim 7 wherein the first charging station is further configured to reserve a charger at the first charging station for the future time for delivery of the first amount of electrical energy to the first electric vehicle.

13 . The system of claim 7 wherein the first charging station further comprises a power switch and a processing circuit, wherein responsive to the instruction, the processing circuit controls the power switch to store the first amount of electrical energy in one or more battery packs of the battery bank of the first charging station.

14 . The system of claim 7 wherein the first charging station is further configured to deliver the first amount of electrical energy from the battery bank of the first charging station responsive to verifying an identifier of the first electric vehicle.

15 . The system of claim 7 wherein the first charging station is further configured to store the first amount of electrical energy in the battery bank of the first charging station responsive to a physical act taken by a user of the first electric vehicle to confirm the future time for delivery.

16 . The system of claim 7 wherein the server is further configured to transmit an instruction responsive to a physical act taken by a user of the first electric vehicle to confirm the future time for delivery.

17 . A system for charging electric vehicles, the system comprising:

a server;

a plurality of charging stations positioned throughout a geographic area, each charging station of the plurality of charging stations includes a battery bank respectively;

a plurality of electric vehicles; wherein, the server is configured to:

predict a future time when a first electric vehicle of the plurality of electric vehicles will seek charging services at a first charging station of the plurality of charging stations; and

transmit an instruction to the first charging station to store a first amount of electrical energy in the battery bank of the first charging station for delivery to the first electric vehicle at the future time; and

responsive to the instruction, the first charging station is configured to store the first amount of electrical energy in the battery bank of the first charging station.

18 . The system of claim 17 wherein the first charging station further comprises a power switch and a processing circuit, wherein responsive to the instruction, the processing circuit controls the power switch to store the first amount of electrical energy in one or more battery packs of the battery bank of the first charging station.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2024
From: ATLASMAN, VICTOR; SWEETING, ROSTEN; CLAYTON, LEVI
To: ATLIS MOTOR VEHICLES INC.
Reel/Frame 067231/0684 →