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Zehui Meng

5 accepted papers

2023

Towards Efficient Trajectory Generation for Ground Robots beyond 2D Environment

ICRA 2023poster

With the development of robotics, ground robots are no longer limited to planar motion. Passive height variation due to complex terrain and active height control provided by special structures on robots require a more general navigation planning framework beyond 2D. Existing methods rarely considers…

Cited by 15SourcecodeScholar
2019

Safe Path Planning with Gaussian Process Regulated Risk Map

IROS 2019poster

Government data identifies driver behaviour errors as a factor in 94% of car crashes, and autonomous vehicles (AVs), which avoids risky driver behaviours completely, are expected to reduce the number of road crashes significantly. Thus, one of the central focuses of developing AVs is to ensure safet…

Cited by 15SourceScholar
2018

A 3D Convolutional Neural Network Towards Real-Time Amodal 3D Object Detection

IROS 2018poster

We focus on the task of amodal 3D object detection, which is to predict object locations, dimensions, poses and categories in the real world. We introduce a 3D Convolutional Neural Network that takes a volumetric representation of an indoor scene as input and predicts 3D object bounding boxes, objec…

Cited by 8SourceScholar
2018

Scene Recognition and Object Detection in a Unified Convolutional Neural Network on a Mobile Manipulator

ICRA 2018poster

Environment understanding, object detection and recognition are crucial skills for robots operating in the real world. In this paper, we propose a Convolutional Neural Network with multi-task objectives: object detection and scene classification in one unified architecture. The proposed network reas…

Cited by 29SourceScholar
2017

A Two-Stage Optimized Next-View Planning Framework for 3-D Unknown Environment Exploration, and Structural Reconstruction

RA-L 2017

In this paper, we present a solution for autonomous exploration and reconstruction in 3-D unknown environments without a priori knowledge of the environments. In our framework, a two-stage heuristic information gain-based next-view planning algorithm is performed to dynamically select and update can

Cited by 120SourceScholar