Patent classifications
B60K2360/172
VEHICLE CONTROL APPARATUS AND DISPIAY CONTROL METHOD
A vehicle control apparatus includes a second display device which is connected to a driving support ECU, and a meter ECU. The driving support ECU performs a plurality of diving support functions by executing a plurality of driving support controls. The meter ECU hides an integrated telltale image in a predetermined area of the second display device when all of a plurality of recommended driving support functions selected among the driving support functions have been set in the valid states. The meter ECU displays the integrated telltale image in the predetermined area of the second display device when at least one of the recommended driving support functions which has been set in the invalid state is present.
Limp home mode for a battery electric vehicle
The disclosure relates to a safety system for a battery electric vehicle (BEV) that comprises one or more electromotors powered by a battery system, wherein the safety system allows a limp home mode to be activated. The disclosure further relates to a battery electric vehicle provided with such a safety system. The battery system of the electric vehicle preferably is the sole power supply of the vehicle for powering the one or more electromotors for a prolonged period of time, e.g. a period of time greater than 10 minutes.
METHOD AND SYSTEM FOR STAGING A CHANGE IN OPERATING MODE OF A TRANSPORTATION VEHICLE
A method and system for enacting a change of operating modalities of a transportation vehicle. The method includes at least one display device, which at least partially includes a screen, operated in the transportation vehicle. The at least one display device has at least two operating modes for operator control by a user. A triggering signal to the at least one display device is automatically provided. The triggering signal is triggered by at least one trigger event, is provided directly or indirectly by the transportation vehicle, and triggers a change from a first operating mode to a second operating mode. The change is at least partially indicated to the user by at least one operator alerting signal.
IN-VEHICLE APPARATUS AND INFORMATION PRESENTATION METHOD
An in-vehicle apparatus mounted in a vehicle includes: an assistance processing unit that executes assistance processing for providing a user with specified information; and a display control unit that performs control to display a list according to a sequential order of the assistance processing executed by the assistance processing unit.
Multi-color illumination device
Multi-color illumination devices that can be used in various indicator-related or ambient lighting applications, particularly for vehicles. In accordance with one embodiment, the multi-color illumination device includes a light guide having a first end and a second end, a first light source located adjacent the first end of the light guide, and a second light source located adjacent the second end of the light guide. The multi-color illumination device is configured for attachment to a controller configured to illuminate the first light source, the second light source, or both the first light source and the second light source in accordance with one or more operation parameters to provide a status indication.
RIDING LAWN EQUIPMENT ENGINE SPEED CONTROL MODULE
A riding lawn equipment engine speed control module has user actuated buttons that may be used to select from a plurality of operating modes, each mode having a different non-overlapping range of engine speeds; specify an engine speed within each mode; and continuously increase or decrease engine speed within each mode.
VEHICLE CONTROL SYSTEM AND VEHICLE
A vehicle control system includes a vehicle, an information terminal apparatus that can provide, on a display unit, a plurality of contents which provide training on an operation method of the vehicle, and a server that can communicate with the vehicle and the information terminal apparatus. The information terminal apparatus includes a display control unit configured to cause the display unit to display a first content that provides training on an operation method including a method to start an operation of a specific function of the vehicle and a second content that provides, to a user of the vehicle who has been trained by the first content and is registered in the server, training on an operation method corresponding to a phenomenon that can occur while the specific function is provided.
System for selecting driving maneuvers of a vehicle for automated driving
A system for selecting driving maneuvers of a vehicle for automated driving comprises a display device for displaying a route of the vehicle in different presentation types, a selection device for selecting one of the presentation types for the route, and a control device for controlling the display device. The control device is designed to present different possible driving maneuvers for selection on the display device on the basis of the presentation type selected for the route. The selection device is designed to select one of the different possible driving maneuvers for performance during automated driving.
Load moment indicator system and method
A method for determining stability of a vehicle having a load suspended from the vehicle is provided. The method can include obtaining measurements from a plurality of sensors positioned on the vehicle, obtaining a measurement from a vehicle accelerometer operative to determine an inclination of the vehicle, determining a position of the load suspended from the vehicle, determining a slung load of the load suspended from the vehicle, using the determined slung load and the determined position of the load suspended from the vehicle, determining tipping moments acting on the vehicle, determining righting moments acting on the vehicle and determining a tipping stability based on the determined tipping moments and determined righting moments.
Vehicle driver nudge system
A driver nudge system is operated within a vehicle to indicate a warning to a driver of the vehicle. The system includes a steering wheel, a vehicle sensor monitoring an operating environment of the vehicle, and an electric motor connected to the steering wheel configured to nudge the steering wheel in an opposite direction to a threat diagnosed according to data from the vehicle sensor.