Abstract:
System for assisting in driving a bicycle by sending a haptic feedback to a cyclist having means for detecting the current value of a target quantity (q, v); and a memory module configured for supplying an optimal value of the target quantity (qmax; vmax) corresponding to the current spatial position (x) of the bicycle along the predetermined path or corresponding to the current instant (t). A comparator module is configured for determining a quantity representative of the error (eq; ev) between said current value of the target quantity (q, v) and said optimal value of the target quantity (qmax; vmax) supplied by the memory module. An actuator is applicable to a portion of the bicycle (100), suitable for generating vibrations. A control module is configured for determining a vibration frequency (f) of the actuator based on the error (eq; ev), wherein the said vibration implements the haptic feedback to the cyclist.
Abstract:
Embodiments include a vehicle comprising an end facing an external object, at least one vehicle light positioned adjacent to the end and projecting a light pattern onto the object, a window adjacent to the end, and at least one proximity indicator coupled to the window at a predetermined position corresponding to an expected location of the light pattern on the object when the end is located a predetermined distance from the object. The proximity indicator can be removably adhered to the window. The light pattern can be visible through the window from a vehicle interior. In some embodiments, the object is positioned adjacent to a rear end of the vehicle and the at least one vehicle light is a rear vehicle light. In other embodiments, the object is positioned adjacent to a front end of the vehicle and the at least one vehicle light is a front vehicle light.
Abstract:
A vehicle display apparatus that includes: a sensor unit that is configured to obtain a vehicle surrounding image and sense an appearance change of a vehicle; a display unit that is configured to display the vehicle surrounding image that includes a vehicle image showing at least a portion of a vehicle appearance; and a processor that is configured to: obtain, from the sensor unit, information on the appearance change of the vehicle, based on the information on the appearance change of the vehicle, generate the vehicle surrounding image to show the appearance change of the vehicle, and control the display unit to display the vehicle surrounding image is disclosed.
Abstract:
The present disclosure relates to an intuitive haptic alert system that: (1) Identifies a second vehicle; projects a series of virtual waves emanating from the second vehicle at a source frequency, estimates observed frequencies of the virtual waves at the first vehicle according to the Doppler Effect, and generates a sequence of commands for a haptic motor based on the estimated observed frequencies. (2) Projects rumble zone(s) over road; identifies when the vehicle occupies the zone(s); generates a sequence of commands for a haptic motor based on: an identified occupation and received vehicle velocity.
Abstract:
A vehicle parking assistant system which detects and displays a true distance of an object from the vehicle is disclosed. The system includes several vertically stacked LEDs integrated in a window pane of the vehicle. At least one sensor detects the distance between the motor vehicle and an object at a distance from the motor vehicle. A control unit is connected to the sensor and the LEDs. Each of the LEDs has a threshold value of the distance of the object assigned to it, and the control unit is configured to hold each of the LEDs in an inactive state While the distance exceeds the associated threshold value, and to activate the LEDs when the distance drops below the associated threshold value.
Abstract:
Systems, methods and apparatuses are disclosed for assessing whether a vehicle will make contact with an obstacle. The systems, methods, and apparatuses may include an obstacle sensing component configured to determine a location and a dimension of an obstacle, a vehicle sensing component configured to determine a height of a point of the vehicle relative to the ground, and a notification component configured to provide an indication of a presence of the obstacle to assist a human driver or an automated driving system in parking the vehicle without making contact with the obstacle.
Abstract:
A steering wheel includes an indicator. The indicator includes a light source that emits light and a light guide. The light guide includes an outer surface and an end opposing the light source. The light emitted from the light source enters the end of the light guide, and some of the light is emitted from the outer surface.
Abstract:
A rear closure obstacle detection system is provided for a motor vehicle. The rear closure detection system includes an obstacle detector, an indicator and a controller. The controller is configured to activate the rear obstacle detection system and detect an obstacle to the opening of the rear closure while the motor vehicle is actively being parked.
Abstract:
A method and system of providing information and directions to truck drivers in relation to the availability of specifically marked parking places within a certain highway truck stop area is provided. Such a method includes the utilization of properly placed sensors working in combination with a particular algorithm to provide reliable information in terms of actual availability of such spaces as well as indications as to the actual size of the vehicles parked within such spaces at specific times. As such, this system accords a manner of properly notifying truck drivers of the availability of parking spaces along a highway from a distance, as well as the potential to reserve such spaces on demand. Additionally, then, the ability to indicate the presence of a smaller vehicle that attempts to utilize such a parking space in unauthorized fashion may be handled within a remote platform.
Abstract:
A method for detecting a vehicle collision includes a rear sensor provided at a rear of the vehicle figuring out a position of an obstacle, a controller of the vehicle accumulating the position of the obstacle recognized by the rear sensor to generate obstacle map data, and the controller signaling an alarm in the vehicle in the case in which a distance between the obstacle map data and the vehicle is a predetermined distance or less or in the case in which movement of the vehicle is decided through a current position of the vehicle, steering of the driver, a wheel speed, and a gear input and there is a collision risk between the vehicle and the obstacle.