B60W40/1005

DETERMINING AND USING PATH SPECIFIC ROLLING RESISTANCE DATA FOR CONTROLLING VEHICLES
20230087155 · 2023-03-23 · ·

Path specific rolling resistance is determined in a method including: receiving, from a first source, first rolling resistance data of a first set of road surface portions of a corresponding first set of times; receiving, from a second source, second rolling resistance data of a second set of road surface portions of a corresponding second set of times; determining, using any of the first rolling resistance data and the second rolling resistance data, a path specific rolling resistance for a given path including one or more of the road surface portions selected from the first and second set of road surface portions; and providing at least one target vehicle with the path specific rolling resistance or a derivative of the path specific rolling resistance.

VEHICLE CONTROLLER AND VEHICLE CONTROL METHOD

A travel controller executes a first correction process on a request value when the vehicle is traveling on an uphill road, and executes a second correction process on the request value when the vehicle is traveling on a downhill road. The first correction process corrects the request value such that the traveling speed is higher than that in a case in which the first correction process is not executed. The second correction process corrects the request value such that the traveling speed is lower than that in a case in which the second correction process is not executed. If hard braking of the vehicle is requested during execution of the first correction process, the travel controller sets a correction amount of the request value to a lower value than that in a case in which hard braking of the vehicle is not requested.

METHOD AND DEVICE FOR CALCULATING RUNNING RESISTANCE OF VEHICLE

A method for determining running resistance of a vehicle includes receiving, by a controller, a rotation speed of a driving source of the vehicle and an inclination angle of a road on which the vehicle runs; determining a torque of the driving source according to the rotation speed of the driving source and determining the inclination angle of the road according to the torque of the driving source; determining whether the inclination angle exceeds the inclination angle of the road; determining that there is no object towed by the vehicle, and determining the running resistance of the vehicle based on the inclination angle according to the torque of the driving source, when the inclination angle is less than or equal to the inclination angle of the road; and controlling the driving source or a transmission of the vehicle based on the determined running resistance of the vehicle.

INFORMATION PRESENTATION DEVICE, INFORMATION PRESENTING METHOD AND NON-TRANSITORY RECORDING MEDIUM
20230131924 · 2023-04-27 · ·

An information presentation device includes a processor configured to (i) acquire vehicle information relating to a plurality of peripheral vehicles around an own vehicle, (ii) calculate an effect index representing an effect due to follow-up travel of traveling behind each of the plurality of peripheral vehicles based on the vehicle information for each of the plurality of peripheral vehicles, and (iii) cause an output device of the own vehicle to output position information and the effect index relating to at least a portion of the plurality of peripheral vehicles.

CONTROLLING VEHICLE PERFORMANCE BASED ON DATA ASSOCIATED WITH AN ATMOSPHERIC CONDITION
20230066635 · 2023-03-02 ·

Provided are methods for controlling vehicle performance based on data associated with an environmental condition.

Control of hybrid vehicle engine start threshold in congested traffic conditions

A system for controlling an internal combustion engine start threshold in a parallel hybrid-electric vehicle. A predetermined conditions tracking module determines whether or not conditions of a plurality of predetermined conditions exist. Responsive to a determination that the conditions exist, a required power estimation module estimates a next acceleration required by the vehicle and a final power requirement for the next acceleration. A propulsion system control module determines if the estimated final power requirement is between a first amount of electric motor power available at a predetermined base engine start threshold and a second amount of electric motor power available at a predetermined elevated engine start threshold. If the estimated final power requirement is between the first and second amounts of power, operation of the vehicle is controlled so as to ensure that the engine start threshold is at the predetermined elevated threshold.

DRIVING FORCE CONTROL DEVICE

In a driving force control device, a driving force is controlled based on an override driving force characteristic specifying a target acceleration according to a vehicle speed, an accelerator pedal position, and a traveling resistance to a vehicle, a longitudinal acceleration at a fully closed accelerator pedal position is higher in an override driving force characteristic than in a manual-driving-mode driving force characteristic, and a graph representing a relation between the accelerator pedal position and the longitudinal acceleration in the override driving force characteristic and a graph representing a relation between the accelerator pedal position and the longitudinal acceleration in the manual-driving-mode driving force characteristic intersect at a specific accelerator pedal position different from a fully closed position and a fully opened position.

CONTROL DEVICE, VEHICLE, MOBILE TERMINAL, AND DISPLAY DEVICE

A control device that executes display control to perform emphasis display of a preceding vehicle, includes a detection unit that detects a candidate vehicle for a following target from among a plurality of the preceding vehicles; a calculation unit that calculates, a reduction effect of energy consumption to be obtained when traveling following the candidate vehicle; and an emphasis display setting unit that performs setting for performing emphasis display of the candidate vehicle. Further, when the display control is executed, the emphasis display of the candidate vehicle is performed according to a degree of emphasis set by the emphasis display setting unit.

Vehicle control method and device

Embodiments of this application disclose a vehicle control method and device, where the method includes: calculating a longitudinal force interference compensation torque and a lateral force interference compensation torque of a vehicle when a flat tire occurs in the vehicle; calculating a feedback control torque of the vehicle; determining an additional yaw moment based on the longitudinal force interference compensation torque, the feedback control torque, and the lateral force interference compensation torque; and controlling, based on the additional yaw moment, a wheel in which the flat tire occurs.

Trailing vehicle positioning system based on detected pressure zones

A system for controlling platooning by a following vehicle includes a main body of the following vehicle. The system further includes a pressure sensor located in or on the main body and configured to detect a pressure corresponding to a pressure wake from a leading vehicle. The system further includes an electronic control unit (ECU) located in or on the main body, coupled to the pressure sensor, and configured to determine an optimal distance from the following vehicle to the leading vehicle based on the detected pressure. The optimal distance corresponding to a distance at which drag applied to the following vehicle is reduced based on the pressure wake from the leading vehicle.