AUTONOMOUS DRIVING COLLABORATIVE SENSING
A method of autonomous driving collaborative sensing, including receiving at least one sensor input, determining a pose based on the at least one sensor input, synchronizing the at least one sensor input to the pose, transforming the at least one sensor input, the pose and the synchronization, determining an intermediate representation based on the transform, determining an object extraction based on the transform, aggregating the at least one sensor input, the intermediate representation and the object extraction and determining a birds eye view of the aggregation.
1 . A method of autonomous driving collaborative sensing, comprising:
receiving at least one sensor input;
determining a pose based on the at least one sensor input;
synchronizing the at least one sensor input to the pose;
transforming the at least one sensor input, the pose and the synchronization;
determining an intermediate representation based on the transform;
determining an object extraction based on the transform;
aggregating the at least one sensor input, the intermediate representation and the object extraction; and
determining a birds eye view of the aggregation.
2 . The method of autonomous driving collaborative sensing of claim 1 , further comprising:
encoding the transform;
decoding the transform; and
compressing the transform.
3 . The method of autonomous driving collaborative sensing of claim 1 , wherein the at least one sensor input comprises at least one of a camera signal and a LiDAR signal.
4 . The method of autonomous driving collaborative sensing of claim 1 , further comprising receiving a high definition map of a region where the at least one sensor input is received.
5 . The method of autonomous driving collaborative sensing of claim 1 , further comprising decompressing and interpolating the aggregation.
6 . The method of autonomous driving collaborative sensing of claim 1 , further comprising motion compensating the aggregation, the intermediate representation and the object extraction.
7 . The method of autonomous driving collaborative sensing of claim 1 , wherein the at least one sensor input is received from at least one of a proximate vehicle and a road side sensor.
8 . The method of autonomous driving collaborative sensing of claim 1 , wherein the at least one sensor input is received from at least one of a LiDAR, a wheel encoder, an inertial measurement unit, a GPS and a camera.
9 . A method of autonomous driving collaborative sensing, comprising:
receiving at least one sensor input;
determining a pose based on the at least one sensor input;
synchronizing the at least one sensor input to the pose;
transforming the at least one sensor input, the pose and the synchronization;
determining an object extraction based on the transform;
aggregating the at least one sensor input and the object extraction;
detecting the extracted object;
segmenting the extracted object;
fusing the detected and segmented object; and
determining a birds eye view of the aggregation.
10 . The method of autonomous driving collaborative sensing of claim 9 , further comprising:
encoding the transform;
decoding the transform; and
compressing the transform.
11 . The method of autonomous driving collaborative sensing of claim 9 , wherein the at least one sensor input comprises at least one of a camera signal and a LiDAR signal.
12 . The method of autonomous driving collaborative sensing of claim 9 , further comprising receiving a high definition map of a region where the at least one sensor input is received.
13 . The method of autonomous driving collaborative sensing of claim 9 , further comprising decompressing and interpolating the aggregation.
14 . The method of autonomous driving collaborative sensing of claim 9 , wherein the at least one sensor input is received from at least one of a proximate vehicle and a road side sensor.
15 . The method of autonomous driving collaborative sensing of claim 9 , wherein the at least one sensor input is received from at least one of a LiDAR, a wheel encoder, an inertial measurement unit, a GPS and a camera.