IP Library Patent Application 16831255
Patent Application
App. No. 16/831,255

HEAVY TRUCK HYBRID POWER SYSTEM AND CONTROL METHOD

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Quick Facts
Patent No.
US None
App. No.
16/831,255
Abstract

A heavy hybrid truck is powered by a non-electric powered medium and an electric powered axle. The electric powered axle assists the non-electric powered medium when load changes are detected. The electric powered axle is sourced by a rechargeable battery. The non-electric powered medium is either a fossil fuel combustion engine, a biofuel engine, a hydrogen engine, or a combination.

Claims (29)

1 . A heavy truck powered by a reduced size engine, comprises:

a steering system coupled to a forward end of a heavy truck chassis to facilitate steering;

a non-electric powered medium truck engine mounted near the forward end of the heavy truck chassis;

a drive axle which is near a rear end of the heavy truck chassis, is coupled to the non-electric powered medium truck engine;

an electric powered axle positioned closer to the rear end of the heavy truck chassis after the drive axle;

a rechargeable battery coupled to and powering the electric powered axle; and

a control system, comprising a processor that executes a program stored in a memory, engages the electric powered axle to supplement power to the non-electric powered medium truck engine and engages the drive axle to recharge the rechargeable battery during vehicle deceleration.

2 . The heavy truck of claim 1 , where the heavy truck is classified as a class 7 or a class 8 commercial truck based on a gross vehicle weight rating.

3 . The heavy truck of claim 1 , wherein the non-electric powered medium truck engine is rated at less than 380 horse power.

4 . The heavy truck of claim 3 , wherein the non-electric powered medium truck engine is powered by a gasoline engine, a diesel engine, a propane engine, a natural gas engine, an ethanol engine, a biofuel engine, or a hydrogen engine.

5 . The heavy truck of claim 1 , wherein the rechargeable battery comprises a battery bank comprising one or a combination of: a Lithium Ion battery, a Molten Salt battery, a Nickel Metal Hydride battery, a Lithium Sulphur battery or a Lead-Acid battery.

6 . The heavy truck of claim 5 , wherein the rechargeable battery has a minimum capacity rating of at least 100 kWh, and the rechargeable battery is rechargeable through a charging station or an in-vehicle regenerative charging system.

7 . The heavy truck of claim 1 , wherein the control system is coupled to a plurality of sensors which detect events that determine when to apply electric current to the electric power axle.

8 . The heavy truck of claim 7 , wherein the plurality of sensors comprises one or more powertrain sensors to monitor one or both of engine torque and revolutions per minute.

9 . The heavy truck of claim 8 , wherein the control system transmits commands that enables the battery to source electric current to the electric powered axle in response to an output of a throttle position sensor and a barometric pressure sensor.

10 . The heavy truck of claim 8 , wherein the control system transmits commands that enables the battery to substantially reduce or completely cut off the electric current sourcing the electric powered axle in response to a change in a load event.

11 . A method that powers a heavy truck, comprising:

enabling a non-electric powered medium truck engine to power a heavy truck, wherein the non-electric powered medium truck engine is mounted near a forward end of a heavy truck chassis, wherein a drive axle which is near a rear end of the heavy truck chassis, is coupled to the non-electric powered medium truck engine;

configuring an electric powered axle to supplement the non-electric powered medium truck engine to power the heavy truck, wherein the electric powered axle is positioned closer to the rear end of the heavy truck chassis after the drive axle, wherein a rechargeable battery is coupled to and powers the electric powered axle; and

enabling by a control system, an electric powered axle to assist the non-electric powered medium truck engine, and engaging the drive axle to recharge the rechargeable battery during vehicle deceleration.

12 . The method of claim 11 , wherein the heavy truck is classified as a class 7 or a class 8 commercial truck based on gross vehicle weight rating.

13 . The method of claim 11 , wherein the non-electric powered medium truck engine is rated at least 380 horse power.

14 . The method of claim 13 , wherein the non-electric powered medium truck engine is powered by a gasoline engine, a diesel engine, a propane engine, a natural gas engine, an ethanol engine, a biofuel engine, or a hydrogen engine.

15 . The method of claim 11 , wherein the rechargeable battery comprises a battery bank comprising one or a combination of: Lithium Ion battery, Molten Salt battery, Nickel Metal Hydride battery, Lithium Sulphur battery or a Lead-Acid battery.

16 . The method of claim 15 , wherein the rechargeable battery has a minimum capacity rating of at least 100 kWh, and the rechargeable battery is rechargeable through a charging station or an in-vehicle regenerative charging system.

17 . The method of claim 11 , further comprising a control system coupled to a plurality of sensors which detect events that determine when to apply electric current to the electric power axle.

18 . The method of claim 17 , wherein the plurality of sensors comprises one or more powertrain sensor that monitors one or both of engine torque and revolutions per minute.

19 . The method of claim 18 , further comprising a control system that transmits commands that enables the battery to source electric current to the electric powered axle in response to an output from a throttle position sensor or an output from a barometric pressure sensor.

20 . The method of claim 18 , wherein the control system transmits commands that enables the battery to substantially reduce or completely cut off the electric current sourcing the electric powered axle in response to a change in a load event.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2023
From: VALVOLINE LICENSING AND INTELLECTUAL PROPERTY LLC
To: VGP IPCO LLC
Reel/Frame 063411/0655 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2023
From: VALVOLINE LICENSING AND INTELLECTUAL PROPERTY LLC
To: VGP IPCO LLC
Reel/Frame 063174/0450 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2022
From: ENGLAND, ROGER D.; LOCKWOOD, FRANCES E.; SWORSKI, ADAM E.; WEDDING, MICHAEL RAY; HEAD, JASON ALAN
To: VALVOLINE LICENSING AND INTELLECTUAL PROPERTY LLC
Reel/Frame 059621/0382 →