Patent classifications
B62D5/001
STEER BY WIRE TYPE STEERING APPARATUS
The present embodiments provide a steer by wire type steering apparatus including a screw shaft coupled to the steering shaft to rotate and having an outer circumferential screw portion formed on an outer circumferential surface, a moving member coupled to an outer peripheral side of the screw shaft, an inner circumferential screw portion corresponding to the outer circumferential screw portion being formed on an inner circumferential surface to move in an axial direction when the screw shaft rotates, a housing formed in a cylindrical shape and having the screw shaft and the moving member disposed therein, and at least one guide member provided in the housing to support the outer peripheral side of the moving member and guide the axial movement of the moving member.
Cantilevered worm gear assembly with brake bushing
A steering assembly including an electric motor, and a motor shaft coupled to and extending from the electric motor to an end. The motor shaft is rotatable about a motor shaft axis by the motor. The steering assembly further includes a friction pad at the end of the motor shaft, where the friction pad has a coefficient of friction configured to resist rotation of the motor shaft.
STEERING INPUT DEVICE FOR STEER-BY-WIRE
A steering input device for steer-by-wire, according to the present invention, includes a steering shaft that is mechanically separated from a steered wheel, a reaction force motor that applies a steering load to the steering shaft, a lock mechanism that regulates rotation of the steering shaft, a steering amount sensor that detects an operation amount of the steering shaft and outputs an operation amount signal, and a controller. The controller increases the reaction torque generated by the reaction force motor after the starting switch of the vehicle is switched to an OFF state, and after the reaction torque is increased, switches the lock mechanism to a locked state. Thereby, it is possible to suppress an uncomfortable sensation of the driver in steering, while suppressing occurrence of a phase shift between the steering wheel and the steered wheel when the starting switch of the vehicle is switched to the OFF state.
STEER-BY-WIRE STEERING APPARATUS
According to the embodiments of the present invention, the overall size reduction allows installation space to be advantageously secured, reduction in noise generated during operation improves the comfort of the driver, and the strength and stability of the connective structure between parts can be increased and power transmission can be more effective.
TACTILE DRIVER FEEDBACK VIA THE STEERING WHEEL DURING BRAKE-TO-STEER FALL BACK FOR A STEER-BY-WIRE SYSTEM
A number of illustrative variations may include a system and method of modifying steering wheel effort and end of travel limits dynamically during electronic power steering failure, steer-by-wire failure, or brake-to-steer implementation within a vehicle where steering systems have degraded or failed to provide a driver with a normal or near-normal steering driving experience while brake-to-steer systems are in use.
JOGWHEEL DEVICE AND POWERED FEEDBACK AND CASTER EFFECT FOR DRIVE-BY-WIRE JOGWHEEL DESIGN
A drive-by-wire steering system for a power equipment device is provided. One example embodiment comprises a steering interface system, a power steering system, and a communication link connecting the steering interface system and power steering system. The power steering system can adjust steering angle of wheels of the power equipment device based on inputs received from the steering interface system. The steering interface system can receive user inputs and provide powered feedback and/or a simulated caster effect via a steering interface. Additional embodiments include power equipment devices and steering interface systems.
Control device, steering device, control method, and recording medium
A control device of a steering device, for a vehicle, which includes left and right steering mechanisms not mechanically coupled to each other, and which steers left and right steered wheels individually by driving force of steering actuators, includes: a steered angle determining unit that determines a target steered angle for each of the left and right steering mechanisms; and a steering command unit that generates drive signals corresponding to the target steered angles, and outputs the drive signals to each of the actuators. When an anomaly occurs in one of the left and right steering mechanisms, the steered angle determining unit sets the target steered angle for the steering mechanisms that is normal to be different from the target steered angle when both the left and right steering mechanisms are normal.
Control apparatus and control method for vehicle provided with a steer-by-wire system
A steer-by-wire vehicle includes a steering actuator configured to turn a wheel and a reaction actuator configure to apply a torque to a steering wheel. An electronic control unit of a control apparatus for the vehicle is configured to execute normal steering control for turning the wheel and applying a reaction torque to the steering wheel according to a rotation of the steering wheel, and, when an activation condition including that the normal steering control is not needed is satisfied, execute rotation suppression control for suppressing the rotation of the steeling wheel without prohibiting the rotation of the steering wheel. Specifically, the electronic control unit is configured to, based on a steering speed or a steering torque, determine a rotation suppression torque for suppressing the rotation of the steering wheel, and control the reaction actuator such that the rotation suppression torque is applied to the steering wheel.
STEER-BY-WIRE STEERING APPARATUS
In a steer-by-wire steering apparatus according to embodiments of the present invention, a structure for preventing rotation of a sliding bar in order to allow the sliding bar to slide in the axial direction by the torque of a motor or a structure for determining a position to which the sliding bar moves can be more simply implemented, whereby the number of components can be reduced, the assembly process can be simplified, and the cost can be significantly reduced.
COMPLIANT SHAFT-ROTOR COUPLING FOR IMPROVED END STOP EXIT
A steer-by-wire device for controlling a vehicle includes a housing; an input shaft that is rotatable relative to the housing and is configured to receive a rotary input from an operator of the vehicle at a first end of the input shaft, the first end being located external to the housing; a rotor attached to the input shaft at a second, opposite, end of the input shaft, the second end being located internal to the housing; a sensor for detecting an angular position, an angular velocity, and/or an angular acceleration of the input shaft relative to the housing; and a coil for generating a magnetic field to generate a rotary force or torque in the rotor to resist rotation of the rotor. The rotor is attached to the input shaft to allow a relative movement between at least a portion of the rotor and the input shaft.