IP Library Granted Patent US 11,225,165
Granted Patent B2
US 11,225,165 · App. 16/572,348 · Granted Jan 18, 2022

Charge related processing for a personal transportation system with removable battery

Inventors: Sebastian Thrun (Los Altos Hills, CA); Damon Vander Lind (Alameda, CA)
Assignee: Kitty Hawk Corporation
B60L58/12B60L58/18B64C29/0091B64D27/24G08G5/0043H01M10/425H01M10/441H01M50/20H02J7/342B60L2200/10H01M2010/4271H01M2220/20
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Quick Facts
Patent No.
US 11,225,165
App. No.
16/572,348
Granted
Jan 18, 2022
Kind
B2
Abstract

A system includes a first battery in a vehicle. The vehicle is capable of being coupled at least temporarily with a second, removable battery and is powered by at least one of the first or the second battery. The system also includes a controller in the vehicle which is configured to estimate an amount of travel-related charge based at least in part on a pickup and drop off location. It is decided whether to charge the first battery using the second battery based at least in part on the amount of travel-related charge and a measured amount of stored charge in the second battery. If it is decided to do so, the first battery is charged using the second battery.

Claims (76)

1. A system, comprising:

a first battery in a vehicle, wherein:

the vehicle is capable of being coupled at least temporarily with a second, removable battery; and

the vehicle is powered by at least one of the first battery or the second, removable battery; and

a controller in the vehicle, wherein the controller is configured to:

estimate an amount of travel-related charge based at least in part on a pickup location and a drop off location;

receive an amount of stored charge in second, removable battery;

decide whether to charge the first battery using the second, removable battery based at least in part on the amount of travel-related charge and the amount of stored charge in the second, removable battery; and

in response to deciding to charge the first battery from the second, removable battery, charge the first battery using the second, removable battery.

2. The system recited in claim 1 , wherein charging the first battery from the second, removable battery includes:

temporarily pausing the charging of the first battery from the second, removable battery during a vertical takeoff; and

temporarily pausing the charging of the first battery from the second, removable battery during a vertical landing.

3. The system recited in claim 1 , further including one or more of the following: a seat, a compartment for an occupant to stand in, a cockpit, a bicycle-style seat, a backless seat, or a saddle.

4. The system recited in claim 1 , further including a seat and the second, removable battery is detachably coupled to the vehicle beneath the seat.

5. The system recited in claim 1 , further including a compartment for an occupant to stand in and the second, removable battery is detachably coupled to the vehicle above the compartment.

6. The system recited in claim 1 , wherein:

the vehicle performs a vertical landing onto a docking station that enforces a single proper landing position for the vehicle; and

the second, removable battery is detachably coupled to the vehicle using the docking station.

7. The system recited in claim 1 , wherein:

the vehicle performs a vertical landing onto a docking station that enforces a single proper landing position for the vehicle and has an inwardly sloping side; and

the second, removable battery is detachably coupled to the vehicle using the docking station.

8. A system, comprising:

a first battery in a vehicle, wherein:

the vehicle is capable of being coupled at least temporarily with a second, removable battery; and

the vehicle is powered by at least one of the first battery or the second, removable battery; and

a controller in the vehicle, wherein the controller is configured to:

receive a travel request which includes a pickup location and a drop off location;

estimate an amount of travel-related charge associated with traveling between the pickup location and the drop off location;

receive an amount of stored charge in the second, removable battery;

determine if the amount of stored charge in the second, removable battery exceeds the amount of travel-related charge so that a trip between the pickup location and the drop off location only consumes power from the second, removable battery and not the first battery; and

in response to determining that the amount of stored charge in the second, removable battery exceeds the amount of travel-related charge, respond to the travel request, including by indicating that the travel request is accepted.

9. The system recited in claim 8 , wherein in response to determining that the amount of stored charge in the second, removable battery does not exceed the amount of travel-related charge, the controller is configured respond to the travel request, including by indicating that the travel request is not accepted.

10. The system recited in claim 8 , wherein in response to determining that the amount of stored charge in the second, removable battery does not exceed the amount of travel-related charge, the controller is configured to:

estimate a second amount of travel-related charge associated with traveling between a starting location and the pickup location;

estimate a third amount of travel-related charge associated with traveling between the drop off location and an ending location;

receive an amount of stored charge in a first battery;

determine if a first sum of the amount of stored charge in the second, removable battery plus the amount of stored charge in the first battery exceeds a second sum of the travel-related charge plus the second amount of travel-related charge plus the third amount of travel-related charge;

in response to determining that the first sum exceeds the second sum, respond to the travel request, indicating that the travel request is accepted; and

in response to determining that the first sum does not exceed the second sum, respond to the travel request, indicating that the travel request is not accepted.

11. The system recited in claim 8 , further including one or more of the following: a seat, a compartment for an occupant to stand in, a cockpit, a bicycle-style seat, a backless seat, or a saddle.

12. The system recited in claim 8 , further including a seat and the second, removable battery is detachably coupled to the vehicle beneath the seat.

13. The system recited in claim 8 , further including a compartment for an occupant to stand in and the second, removable battery is detachably coupled to the vehicle above the compartment.

14. A system, comprising:

a pool of vehicles, wherein:

each vehicle in the pool of vehicles includes a first battery;

each vehicle in the pool of vehicles is capable of being coupled at least temporarily with a second, removable battery; and

each vehicle in the pool of vehicles is powered by at least one of their first battery or the second, removable battery; and

a server associated with a ride service provider, wherein the server is configured to:

receive a pickup location and a drop off location;

receive a plurality of amounts of stored charge associated with an amount of stored charge in each first battery in each vehicle in the pool of vehicles;

estimate, for each vehicle in the pool of vehicles, a starting-location-to-pickup-location amount of travel-related charge associated with traveling between a starting location and the pickup location, wherein the pool of vehicles would use their first battery to travel between their starting location and the pickup location;

estimate, for each vehicle in the pool of vehicles, a drop-off-location-to-ending-location amount of travel-related charge associated with traveling between the drop off location and an ending location, wherein the pool of vehicles would use their first battery to travel

between the drop off location and the ending location and the pool of vehicles would use the second, removable battery to travel between the pickup location and the drop off location; and

select a vehicle from the pool of vehicles that has a first battery that is capable of providing sufficient charge for travel based at least in part on the plurality of amounts of stored charge, the starting-location-to-pickup-location amount of travel-related charge, and the drop-off-location-to-ending-location amount of travel-related charge.

15. The system recited in claim 14 , wherein:

during a first iteration, the pool of vehicles excludes any vehicles that are in-use; and

during a second iteration, the pool of vehicles include vehicles that are in-use, wherein during the second iteration:

receiving the amount of stored charge includes setting the amount of stored charge in the first battery for an in-use vehicle to be an amount of stored charge after an in-use vehicle travels to an in-use drop off location;

estimating a third amount of travel-related charge includes setting the starting location for the in-use vehicle to be the in-use drop off location;

an amount of waiting time associated with the in-use vehicle is estimated; and

the vehicle that is selected from the pool of vehicles further has a shortest amount of waiting time and the selection is further based at least in part on the amount of waiting time for each vehicle in the pool of vehicles.

16. The system recited in claim 14 , wherein:

during a first iteration, the pool of vehicles excludes any vehicles that are in-use;

during a second iteration, the pool of vehicles include vehicles that are in-use, wherein during the second iteration:

receiving the amount of stored charge includes setting the amount of stored charge in the first battery for an in-use vehicle to be an amount of stored charge after an in-use vehicle travels to an in-use drop off location;

estimating the third amount of travel-related charge includes setting the starting location for the in-use vehicle to be the in-use drop off location;

an amount of waiting time associated with the in-use vehicle is estimated; and

the vehicle that is selected from the pool of vehicles further has a shortest amount of waiting time and the selection is further based at least in part on the amount of waiting time for each vehicle in the pool of vehicles; and

during a third iteration, the pool of vehicles include vehicles that are in-use, wherein during the third iteration:

receiving the amount of stored charge includes setting the amount of stored charge in the first battery for an in-use vehicle to be a predefined amount of stored charge;

estimating the third amount of travel-related charge includes setting the starting location for the in-use vehicle to be a charging location;

an amount of waiting time associated with the in-use vehicle is estimated, including a charging time at the charging location; and

the vehicle that is selected from the pool of vehicles further has a shortest amount of waiting time and the selection is further based at least in part on the amount of waiting time, including the charging time, for each vehicle in the pool of vehicles.

17. The system recited in claim 14 , further including one or more of the following: a seat, a compartment for an occupant to stand in, a cockpit, a bicycle-style seat, a backless seat, or a saddle.

18. The system recited in claim 14 , further including a seat and the second, removable battery is detachably coupled to the vehicle beneath the seat.

19. The system recited in claim 14 , further including a compartment for an occupant to stand in and the second, removable battery is detachably coupled to the vehicle above the compartment.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded May 22, 2023
From: ONE AERO, LLC
To: KITTY HAWK CORPORATION
Reel/Frame 063713/0367 →
SECURITY INTEREST Recorded Mar 25, 2022
From: KITTY HAWK CORPORATION
To: ONE AERO, LLC
Reel/Frame 059503/0382 →
SECURITY INTEREST Recorded Nov 4, 2021
From: KITTY HAWK CORPORATION
To: ONE AERO, LLC
Reel/Frame 058029/0610 →
SECURITY INTEREST Recorded Oct 22, 2020
From: KITTY HAWK CORPORATION
To: ONE AERO, LLC
Reel/Frame 054206/0714 →
Continuity (3)
Continuation 16418184 · May 19, 2019
Provisional Application 62684910 · Jun 14, 2018
Related Publication 20200009986A1 · Jan 9, 2020