Autonomous driving paper index

Tri-Perspective View for Vision-Based 3D Semantic Occupancy Prediction

2023-02-15 · Computer Vision and Pattern Recognition · arXiv: 2302.07817

autonomous drivingbevoccupancy predictionoccupancylidarnuscenesperceptionprediction

One-line summary

To address this, we propose a tri-perspective view (TPV) representation which accompanies BEV with two additional perpendicular planes.

Engineering notes

Code: https://github.com/wzzheng/TPVFormer.

Chinese explanation / 中文解读

中文解读待补充:本站会优先为端到端自动驾驶、BEV感知、3D目标检测、轨迹预测、路径规划、LiDAR感知等高价值论文补充中文说明。

Original abstract

Modern methods for vision-centric autonomous driving perception widely adopt the bird's-eye-view (BEV) representation to describe a 3D scene. Despite its better efficiency than voxel representation, it has difficulty describing the fine-grained 3D structure of a scene with a single plane. To address this, we propose a tri-perspective view (TPV) representation which accompanies BEV with two additional perpendicular planes. We model each point in the 3D space by summing its projected features on the three planes. To lift image features to the 3D TPV space, we further propose a transformer-based TPV encoder (TPVFormer) to obtain the TPV features effectively. We employ the attention mechanism to aggregate the image features corresponding to each query in each TPV plane. Experiments show that our model trained with sparse supervision effectively predicts the semantic occupancy for all voxels. We demonstrate for the first time that using only camera inputs can achieve comparable performance with LiDAR-based methods on the LiDAR segmentation task on nuScenes. Code: https://github.com/wzzheng/TPVFormer.

7.0Engineering value
7.0Research novelty
5.0Business relevance

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