← Search

Zhenwei Miao

11 accepted papers

2025

CarPlanner: Consistent Auto-regressive Trajectory Planning for Large-Scale Reinforcement Learning in Autonomous Driving

CVPR 2025poster

Trajectory planning is vital for autonomous driving, ensuring safe and efficient navigation in complex environments. While recent learning-based methods, particularly reinforcement learning (RL), have shown promise in specific scenarios, RL planners struggle with training inefficiencies and managing…

2024

LASIL: Learner-Aware Supervised Imitation Learning For Long-term Microscopic Traffic Simulation

CVPR 2024poster

Microscopic traffic simulation plays a crucial role in transportation engineering by providing insights into individual vehicle behavior and overall traffic flow. However creating a realistic simulator that accurately replicates human driving behaviors in various traffic conditions presents signific…

2024

PEP: Policy-Embedded Trajectory Planning for Autonomous Driving

RA-L 2024

Autonomous driving demands proficient trajectory planning to ensure safety and comfort. This letter introduces Policy-Embedded Planner (PEP), a novel framework that enhances closed-loop performance of imitation learning (IL) based planners by embedding a neural policy for sequential ego pose generat

Cited by 8SourceScholar
2023

PUPS: Point Cloud Unified Panoptic Segmentation

AAAI 2023technical

Point cloud panoptic segmentation is a challenging task that seeks a holistic solution for both semantic and instance segmentation to predict groupings of coherent points. Previous approaches treat semantic and instance segmentation as surrogate tasks, and they either use clustering methods or bound…

Cited by 25SourcePDFScholar
2023

PolarFormer: Multi-Camera 3D Object Detection with Polar Transformer

AAAI 2023technical

3D object detection in autonomous driving aims to reason “what” and “where” the objects of interest present in a 3D world. Following the conventional wisdom of previous 2D object detection, existing methods often adopt the canonical Cartesian coordinate system with perpendicular axis. However, we co…

2022

DeepInteraction: 3D Object Detection via Modality Interaction

NeurIPS 2022accept

Existing top-performance 3D object detectors typically rely on the multi-modal fusion strategy. This design is however fundamentally restricted due to overlooking the modality-specific useful information and finally hampering the model performance. To address this limitation, in this work we introdu…

2022

INT: Towards Infinite-Frames 3D Detection with an Efficient Framework

ECCV 2022poster

"It is natural to construct a multi-frame instead of a single-frame 3D detector for a continuous-time stream. Although increasing the number of frames might improve performance, previous multi-frame studies only used very limited frames to build their systems due to the dramatically increased comput…

2022

LIFT: Learning 4D LiDAR Image Fusion Transformer for 3D Object Detection

CVPR 2022poster

LiDAR and camera are two common sensors to collect data in time for 3D object detection under the autonomous driving context. Though the complementary information across sensors and time has great potential of benefiting 3D perception, taking full advantage of sequential cross-sensor data still rema…

Cited by 37PDFScholar
2022

SP-Net: Slowly Progressing Dynamic Inference Networks

ECCV 2022poster

"Dynamic inference networks improve computational efficiency by executing a subset of network components, i.e., executing path, conditioned on input sample. Prevalent methods typically assign routers to computational blocks so that a computational block can be skipped or executed. However, such infe…

2021

PVGNet: A Bottom-Up One-Stage 3D Object Detector With Integrated Multi-Level Features

CVPR 2021poster

Quantization-based methods are widely used in LiDAR points 3D object detection for its efficiency in extracting context information. Unlike image where the context information is distributed evenly over the object, most LiDAR points are distributed along the object boundary, which means the boundary…

Cited by 57PDFScholar
2017

Laplace gradient based Discriminative and Contrast Invertible descriptor

ICASSP 2017accepted

The performance of local descriptors such as SIFT drops under severe illumination changes. In this paper, we propose a Discriminative and Contrast Invertible (DCI) local feature descriptor. In order to increase the discriminative ability of the descriptor under illumination changes, a Laplace gradie…

Cited by 0SourceScholar