Method for determining a navigation route for an automated driving operation of a vehicle
A navigation route for the automated driving operation is determined in a lane-specific manner. A node list is produced based on a digital attribute-based street map, the node list representing the geographical coordinates of a route determined by a navigation system. The node list is transferred into a digital sensor-based street map containing a surroundings description detected by sensors. Lane-specific driving section candidates being determined in the digital sensor-based street map using the node list. Irrelevant driving section candidates are identified and eliminated. The route is segmented into subgraphs with only one possible lane and subgraphs with multiple possible lanes. Optimal lanes are identified and combined to form the lane-specific navigation route.
1 . A method for determining a lane-specific navigation route for an automated driving operation of a vehicle, the method comprising:
producing, based on a digital attribute-based street map, a node list representing geographical coordinates of a route determined by a navigation system;
transferring the node list into a digital sensor-based street map containing a surroundings description detected by sensors;
determining, using the node list, lane-specific driving section candidates in the digital sensor-based street map;
identifying and discarding irrelevant driving section candidates;
segmenting the route into subgraphs with only one possible lane and subgraphs with multiple possible lanes;
identifying optimal lanes; and
combining the optimal lanes to form the lane-specific navigation route.
2 . The method of claim 1 , wherein sections of the lane-specific navigation route for which no lane-specific driving section candidates could be determined are blocked for the automated driving operation.
3 . The method of claim 1 , wherein sections of the lane-specific navigation route for which lane-specific driving section candidates could be determined are released for the automated driving operation.
4 . The method of claim 3 , wherein the automated driving operation is a highly automated or autonomous driving operation that is only permitted on released sections.
5 . The method of claim 4 , wherein the automated driving operation is a highly automated or autonomous driving operation, the method further comprising:
issuing a takeover request to a vehicle driver of the vehicle before reaching a blocked section of the lane-specific navigation route.
6 . The method of claim 2 , wherein an alternative lane-specific navigation route without blocked sections or with fewer blocked sections is determined if the lane-specific navigation route contains one or more blocked sections.
7 . The method of claim 1 , wherein for the subgraphs with multiple possible lanes, the optimal lanes are identified using a cost function.
8 . The method of claim 1 , wherein depending on the lane-specific navigation route, a lane change recommendation is produced for carrying out a manual or automated lane change to follow the lane-specific navigation route.
9 . A method comprising:
generating, by a navigation system of a vehicle using a digital attribute-based street map, a route between a starting point and a destination;
producing, using the digital attribute-based street map, a node list representing geographical coordinates of the route;
transferring the node list into a digital sensor-based street map containing a surroundings description detected by sensors;
determining, using the node list, lane-specific driving section candidates along the route in the digital sensor-based street map;
identifying and discarding irrelevant driving section candidates from the lane-specific driving section candidates to produce remaining lane-specific driving section candidates;
segmenting the route in the digital sensor-based street map using the remaining lane-specific driving section candidates into subgraphs with only one possible lane and subgraphs with multiple possible lanes;
identifying optimal lanes along the route using the segmented route; and
combining the optimal lanes to form a lane-specific navigation route.
10 . The method of claim 9 , wherein sections of the lane-specific navigation route for which no lane-specific driving section candidates could be determined are blocked for automated driving operation of the vehicle.
11 . The method of claim 10 , wherein sections of the lane-specific navigation route for which lane-specific driving section candidates could be determined are released for automated driving operation of the vehicle.
12 . The method of claim 11 , wherein the automated driving operation is a highly automated or autonomous driving operation that is only permitted on released sections.
13 . The method of claim 12 , wherein the automated driving operation is a highly automated or autonomous driving operation, the method further comprising:
issuing a takeover request to a vehicle driver of the vehicle before reaching a blocked section of the lane-specific navigation route.
14 . The method of claim 10 , wherein an alternative lane-specific navigation route without blocked sections or with fewer blocked sections is determined if the lane-specific navigation route contains one or more blocked sections.
15 . The method of claim 9 , wherein for the subgraphs with multiple possible lanes, the optimal lanes are identified using a cost function.
16 . The method of claim 9 , wherein depending on the lane-specific navigation route, a lane change recommendation is produced for carrying out a manual or automated lane change to follow the lane-specific navigation route.