IP Library Granted Patent US 10,202,043
Granted Patent B2
US 10,202,043 · App. 15/131,565 · Granted Feb 12, 2019

Structure to optimize electricity generation in a vehicle

Inventor: Alexander Charles Kurple (Casco, MI)
Assignee: Ford Global Technologies, LLC
B60L11/02B60L1/00B60L1/02B60L11/005B60L11/12B60L11/1811B60L11/1861B60L11/1868H02J7/14H02J7/1453H02M3/04B60L2240/36
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Quick Facts
Patent No.
US 10,202,043
App. No.
15/131,565
Granted
Feb 12, 2019
Kind
B2
Abstract

Various embodiments of the present disclosure provide system for optimizing electricity generation in a vehicle by managing temperature in vehicle engine and various components to increase efficiency of the engine and various components. In one embodiment, the electricity management system includes a generator connected to a high-power storage device, such as a battery or a capacitor, and a DC-DC converter which includes multiple voltage set-points.

Claims (42)

1. A vehicle electricity optimization system comprising:

a DC-to-DC converter configured to:

draw power from a high energy storage device and a high power storage in communication with various controllers, which are in communication with various high power loads;

distribute the power to vehicle components through voltage set points, each of the voltage set points set at an optimal operating voltage of each of the vehicle components; and

monitor temperatures of the vehicle components.

2. A vehicle electricity optimization system comprising:

a DC-to-DC converter configured to:

draw power from a high power storage device and a high energy storage device;

distribute the power to a plurality of vehicle components through a plurality of voltage set points, each of the voltage set points set at an optimal operating voltage of each of the plurality of vehicle components; and

monitor temperatures of the plurality of vehicle components; and

a generator configured to output power to the high power storage device,

wherein the generator includes one of a group consisting of: (a) an alternator, (b) a solar panel, (c) a hydraulic pump, (d) an air compressor, and (e) a water pump.

3. The vehicle electricity optimization system of claim 1 , wherein the DC-to-DC converter is configured to convert output power from the high power storage device to lower power for the vehicle components.

4. The vehicle electricity optimization system of claim 1 , wherein the DC-to-DC converter is further configured to distribute the power drawn from the high power storage device and the high energy storage device to start a vehicle engine and manage at least one of the temperatures.

5. A vehicle electricity optimization system comprising:

a DC-to-DC converter configured to:

draw power from a high power storage device and a high energy storage device; and

distribute the power to a plurality of vehicle components through a plurality of voltage set points, each of the voltage set points set at an optimal operating voltage of each of the plurality of vehicle components,

wherein the DC-to-DC converter includes a temperature module configured to monitor temperatures of the plurality of vehicle components, and

wherein the temperature module is in communication with a vehicle cooling and heating system and the temperature module is configured to use the vehicle cooling and heating system to manage at least one of the temperatures.

6. The vehicle electricity optimization system of claim 1 , wherein the high power storage device is one of a group consisting of: (a) a battery, and (b) a capacitor.

7. The vehicle electricity optimization system of claim 1 , wherein the high energy storage device is one of a group consisting of: (a) a battery, and (b) a capacitor.

8. A vehicle electricity optimization system comprising:

a DC-to-DC converter configured to:

draw power from a high power storage device and a high energy storage device, wherein the high power storage device is in communication with various controllers, which are in communication with various high power loads;

distribute the power to a plurality of vehicle components through a plurality of voltage set points, each of the voltage set points set at an optimal operating voltage of each of the plurality of vehicle components;

monitor temperatures of the plurality of vehicle components; and

manage the temperatures based on the monitored temperatures.

9. A vehicle electricity optimization system comprising:

a DC-to-DC converter configured to:

draw power from a high power storage device and a high energy storage device;

distribute the power to a plurality of vehicle components through a plurality of voltage set points, each of the voltage set points set at an optimal operating voltage of each of the plurality of vehicle components;

monitor temperatures of the plurality of vehicle components; and

manage the temperatures based on the monitored temperatures; and

a generator configured to output power to the high power storage device,

wherein the generator includes one or more of a group consisting of: (a) an alternator, (b) a solar panel, (c) a hydraulic pump, (d) an air compressor, and (e) a water pump.

10. The vehicle electricity optimization system of claim 8 , wherein the DC-to-DC converter is configured to convert output power from the high power storage device to lower power for the plurality of vehicle components.

11. The vehicle electricity optimization system of claim 8 , wherein the DC-to-DC converter is further configured to distribute the power drawn from the high power storage device and the high energy storage device to start a vehicle engine.

12. The vehicle electricity optimization system of claim 8 , wherein the DC-to-DC converter further includes a temperature module configured to the temperatures.

13. The vehicle electricity optimization system of claim 12 , wherein the temperature module is in communication with a vehicle cooling and heating system and the temperature module is further configured to use the vehicle cooling and heating system to manage at least one of the temperatures.

14. The vehicle electricity optimization system of claim 8 , wherein the high power storage device is one of a group consisting of: (a) a battery, and (b) a capacitor.

15. The vehicle electricity optimization system of claim 8 , wherein the high energy storage device is one of a group consisting of: (a) a battery, and (b) a capacitor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2017
From: KURPLE, ALEXANDER CHARLES
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 041345/0771 →
Continuity (1)
Related Publication 20170297436A1 · Oct 19, 2017
Cited By (1)
US 12,441,199