B60W2710/207

Lane keep assist device
10640110 · 2020-05-05 · ·

According to a lane keep assist electronic control unit (LKAECU), a lane recognizer recognizes a driving lane in which the own vehicle is traveling. A target trajectory generator, a first adder, a feedforward steering angle calculator, a feedback steering angle calculator, a second adder, a feedforward torque calculator, a feedback torque calculator, and a third adder calculate demanded torque .sub.tgt for controlling steering of the own vehicle so that deviation of the vehicle from the driving lane is suppressed. A road surface camber corrector detects a camber estimated angle .sub.G which is a camber angle of a road surface of the driving lane in which the own vehicle is traveling. The road surface camber corrector detects drift of the own vehicle by calculating a yaw rate difference . The road surface camber corrector corrects the demanded torque .sub.tgt based on the camber estimated angle .sub.G and the yaw rate difference .

Systems and methods for environmental analysis based upon vehicle sensor data

A system for analyzing the environment of a vehicle i) receives a plurality of data from at least one sensor associated with a vehicle, such that the plurality of data includes at least one environmental condition at a location; (ii) analyzes the plurality of data to determine the at least one environmental condition at the location; (iii) determines a condition of a building at the location based upon the at least one environmental condition; (iv) determines an insurance product for the building based upon the determined condition associated with the building; and (v) generates an insurance quote for the insurance product. As a result, the speed and accuracy of insurance providers learning about potential clients and the conditions of the potential client's property and needs is increased.

INTEGRATED CONTROL SYSTEM FOR VEHICLE
20200130660 · 2020-04-30 ·

An integrated control system for a vehicle is provided. The system includes a friction coefficient calculation unit that calculates friction coefficients of left side and right side road surfaces, respectively, based on vehicle wheel state information and a predetermined setting information collected during ABS operation. A feedforward braking pressure calculation unit calculates a feedforward braking pressure of each vehicle wheel using the friction coefficients. An ABS braking pressure calculation unit calculates an ABS braking pressure of the each vehicle wheel based on the feedforward braking pressure and slip rate information. A rear wheel steering control amount calculation unit calculates a rear wheel steering control amount for yaw compensation using the ABS braking pressure of each vehicle wheel and a rear wheel steering controller executes a rear wheel steering control according to the rear wheel steering control amount.

Device and method for estimating slip angle of vehicle wheel

A device of estimating a slip angle of vehicle wheel has an attitude-toward-road surface estimation section that uses a series of distances to measurement points on a road surface to estimate vehicle-body-road-surface coordinate conversion information (VCCI) for conversion from a vehicle-body coordinate system to a road-surface coordinate system, an on-road-surface inertia quantity calculation section that removes a gravity acceleration component from the vehicle-body inertia quantity to obtain inertia quantity caused by motion of a vehicle body and uses the VCCI to convert from the inertia quantity caused by the motion of the vehicle body to the road-surface coordinate system, and a wheel slip angle estimation section that estimates a sideslip angle of the vehicle wheel on the basis of a difference between a wheel acceleration vector and the acceleration vector converted to the road-surface coordinate system.

Driving assistance technique for active vehicle control

The invention relates to a driving assistant adapted for active control of a vehicle based on predictions of a behavior of a detected object. A method aspect of the invention comprises accepting a first prediction of a behavior associated with the detected object from a first prediction subsystem and a second prediction from a second prediction subsystem; determining a control signal based on a combination of the first prediction and the second prediction; and initiating active control of the vehicle based on the control signal.

Anticipatory control system of a motor vehicle

The disclosure relates to a control system and to a device for an ego-vehicle in a vehicle convoy in the case of the avoidance of an obstacle. Before the ego-vehicle follows an adopted avoidance trajectory of a vehicle driving in front, a hazard evaluation of the driving strategy of the vehicle driving in front is performed and the avoidance trajectory is modified on the basis of the result of the hazard evaluation.

METHOD AND APPARATUS FOR CONTROLLING VEHICLE TRAVELLING, AND VEHICLE

Disclosed are a method and an apparatus for controlling vehicle travelling, and a vehicle, wherein the method for controlling vehicle travelling includes: detecting a plurality of travelling states of a vehicle, the plurality of travelling states including a plurality of travelling directions; respectively previewing the vehicle travelling along the plurality of travelling directions from an original position in a lane to obtain a plurality of previewing paths; fitting a plurality of turning paths of the vehicle travelling from the original position to a target path in the lane according to the plurality of previewing paths; using the plurality of turning paths to calculate change information of a steering wheel angle; and adjusting the travelling direction according to the change information of the steering wheel angle, so as to control the vehicle to travel from the original position to the target path along the turning path. The embodiments of the disclosure enable the vehicle to return to the target path of the lane, and avoid adjustments made according to an empirical value, thereby ensuring the stability of travelling, effectively reducing the problems of overshoot and shock, and improving the comfort of drivers.

Auto traveling work vehicle
10602654 · 2020-03-31 · ·

An auto traveling work vehicle includes a first control computation section for outputting a first steering value computed for deviation resolution based on a positional deviation between a target traveling path and a self vehicle position, a second control computation section for outputting a second steering value computed for the deviation resolution based on the positional deviation and a directional deviation which is adjusted with using a weight coefficient which provides a progressively decreasing tendency with increase in the positional deviation, a target steering computation section for outputting a target steering value for traveling along the target traveling path based on the first steering value and the second steering value, a steering driving control section configured to input the target steering value and to output a steering driving signal, and a steering driving section for effecting steering of a steerable wheel based on the steering driving signal.

Deterministic path planning for controlling vehicle movement
20200097014 · 2020-03-26 ·

A system for controlling a movement of a vehicle from an initial state of the vehicle and a target state of the vehicle constructs a graph having multiple nodes defining states of the vehicle and including an initial node defining the initial state of the vehicle and a target node defining the target state of the vehicle and determines a path through the graph connecting the initial node with the target node. The system determines the graph using doubletree construction with an initial tree of nodes originating at the initial node and a target tree of nodes originating at the target node. The doubletree construction is configured to select an expandable node in the initial tree or the target tree based on a cost of the expandable node, and expand the graph by adding a child node connected to the expandable node with an edge defined by a collision free primitive motion, such that a cost of the child node is less than the cost of the expandable node.

Lane change assist device
10600324 · 2020-03-24 · ·

A first limiter limits a first target steering angle correspondence value by a first steering angle correspondence value guard which defines the upper limit value of the steering angle correspondence value and is larger than a steering angle correspondence value guard at lane change time and limits a first target steering angular velocity correspondence value by a first steering angular velocity correspondence value guard which defines the upper limit value of the steering angular velocity correspondence value and is larger than a steering angular velocity correspondence value guard at lane change time. An actuator controller for first yaw angle return control which is configured to control an actuator to operate a steering wheel so that steering angle correspondence value becomes a first target steering angle correspondence value and a steering angular velocity correspondence value becomes a first target steering angular velocity correspondence value.