B60Y2300/181

Trailer-based energy capture and management
10744888 · 2020-08-18 · ·

A through the road (TTR) hybridization strategy is proposed to facilitate introduction of hybrid electric vehicle technology in a significant portion of current and expected trucking fleets. In some cases, the technologies can be retrofitted onto an existing vehicle (e.g., a trailer, a tractor-trailer configuration, etc.). In some cases, the technologies can be built into new vehicles. In some cases, one vehicle may be built or retrofitted to operate in tandem with another and provide the hybridization benefits contemplated herein. By supplementing motive forces delivered through a primary drivetrain and fuel-fed engine with supplemental torque delivered at one or more electrically-powered drive axles, improvements in overall fuel efficiency and performance may be delivered, typically without significant redesign of existing components and systems that have been proven in the trucking industry.

Gradeability control in a hybrid vechicle

Systems and methods for improving gradeability of a hybrid electric vehicle are described. More particularly, an electric motor of the hybrid electric vehicle may be used to augment engine torque generated by an internal combustion engine of the hybrid electric vehicle with motor torque generated by the electric motor during periods when a desired acceleration of the hybrid electric vehicle demands a target driveforce that exceeds a maximum driveforce generated by the internal combustion engine at a particular gear ratio of the transmission of the hybrid electric vehicle. Augmenting the engine torque with the motor torque during such periods of acceleration may delay a downshift of the transmission to a lower gear ratio thereby improving a driver experience.

Trailer-Based Energy Capture and Management
20200215921 · 2020-07-09 ·

A through the road (TTR) hybridization strategy is proposed to facilitate introduction of hybrid electric vehicle technology in a significant portion of current and expected trucking fleets. In some cases, the technologies can be retrofitted onto an existing vehicle (e.g., a trailer, a tractor-trailer configuration, etc.). In some cases, the technologies can be built into new vehicles. In some cases, one vehicle may be built or retrofitted to operate in tandem with another and provide the hybridization benefits contemplated herein. By supplementing motive forces delivered through a primary drivetrain and fuel-fed engine with supplemental torque delivered at one or more electrically-powered drive axles, improvements in overall fuel efficiency and performance may be delivered, typically without significant redesign of existing components and systems that have been proven in the trucking industry.

Motor Vehicle Accessory to Increase Power Supply and Reduce Fuel Requirements
20200171961 · 2020-06-04 ·

A power control system may include at least one of batteries, a motor, and a data logic analyzer that can interpret certain variable conditions of a transport, such as a tractor trailer, moving along a road or highway. The data can be used to determine when to apply supplemental power to the wheels of a trailer to reduce fuel usage. One example device may include at least one of a power source affixed to a trailer to capture energy from movement of an axle of the trailer, and a motor powered by the power source to operate and provide movement assistance to the axle.

Motor vehicle accessory to increase power supply and reduce fuel requirements
10654369 · 2020-05-19 · ·

A power control system may include at least one of batteries, a motor, and a data logic analyzer that can interpret certain variable conditions of a transport, such as a tractor trailer, moving along a road or highway. The data can be used to determine when to apply supplemental power to the wheels of a trailer to reduce fuel usage. One example device may include at least one of: a power creation module that generates electrical power, a battery which store the electrical power, a motor affixed to a trailer axle of a trailer which provides a turning force to the trailer axle when enabled to operate from the stored electrical power of the battery, and a motor controller configured to initiate the motor to operate according to a predefined sensor condition.

VEHICLE DRIVING APPARATUS
20200101975 · 2020-04-02 ·

A vehicle driving apparatus, configured to drive a vehicle including first and second wheels, includes first and second motors, first and second power transmission mechanisms, and a controller. The first motor is configured to generate first driving torque that rotates the first wheel. The second motor is configured to generate second driving torque that rotates the second wheel in a direction same as a direction in which the first wheel is rotated. The first and second power transmission mechanisms are configured to transmit the first and second driving torque from the first and second motors to the first and second wheels, respectively. The controller is configured to perform torque distribution control in a case where a gear rattle occurrence condition is satisfied. The torque distribution control drives the first motor to thereby decrease the first driving torque and drives the second motor to thereby increase the second driving torque.

Trailer-based energy capture and management
10596913 · 2020-03-24 · ·

A through the road (TTR) hybridization strategy is proposed to facilitate introduction of hybrid electric vehicle technology in a significant portion of current and expected trucking fleets. In some cases, the technologies can be retrofitted onto an existing vehicle (e.g., a trailer, a tractor-trailer configuration, etc.). In some cases, the technologies can be built into new vehicles. In some cases, one vehicle may be built or retrofitted to operate in tandem with another and provide the hybridization benefits contemplated herein. By supplementing motive forces delivered through a primary drivetrain and fuel-fed engine with supplemental torque delivered at one or more electrically-powered drive axles, improvements in overall fuel efficiency and performance may be delivered, typically without significant redesign of existing components and systems that have been proven in the trucking industry.

GRADEABILITY CONTROL IN A HYBRID VEHICLE
20200062238 · 2020-02-27 ·

Systems and methods for improving gradeability of a hybrid electric vehicle are described. More particularly, an electric motor of the hybrid electric vehicle may be used to augment engine torque generated by an internal combustion engine of the hybrid electric vehicle with motor torque generated by the electric motor during periods when a desired acceleration of the hybrid electric vehicle demands a target driveforce that exceeds a maximum driveforce generated by the internal combustion engine at a particular gear ratio of the transmission of the hybrid electric vehicle. Augmenting the engine torque with the motor torque during such periods of acceleration may delay a downshift of the transmission to a lower gear ratio thereby improving a driver experience.

Motor vehicle accessory to increase power supply and reduce fuel requirements
10549647 · 2020-02-04 · ·

A power control system may include at least one of batteries, a motor, and a data logic analyzer that can interpret certain variable conditions of a transport, such as a tractor trailer, moving along a road or highway. The data can be used to determine when to apply supplemental power to the wheels of a trailer to reduce fuel usage. One example device may include at least one of a power source affixed to a trailer to capture energy from movement of an axle of the trailer, and a motor powered by the power source to operate and provide movement assistance to the axle.

CONVEYING DEVICE
20200010309 · 2020-01-09 · ·

A conveying device includes: a main movement body; a main conveying mechanism that conveys the main movement body; and a controlling device that controls operation of the main conveying mechanism including a plurality of winches attached to the main movement body and multiple cables one wound around each winch; each winch includes a cylindrical drum rotatable about an axis line thereof and driving device that rotates the drum, and is wound around corresponding one of the drums of the respective corresponding winches helically in an axis direction of the drums multiple times, and have distal ends supported by supporting bodies corresponding to the respective winches; and the controlling device conveys the main movement body to an arbitrary position on a conveying path between the supporting bodies corresponding to the respective winches by controlling operation of a driving device of each winch disposed on the main movement body.