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Mingyang Zhao

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8 papers
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8

AAAI Conference 2024 Conference Paper

CMG-Net: Robust Normal Estimation for Point Clouds via Chamfer Normal Distance and Multi-Scale Geometry

  • Yingrui Wu
  • Mingyang Zhao
  • Keqiang Li
  • Weize Quan
  • Tianqi Yu
  • Jianfeng Yang
  • Xiaohong Jia
  • Dong-Ming Yan

This work presents an accurate and robust method for estimating normals from point clouds. In contrast to predecessor approaches that minimize the deviations between the annotated and the predicted normals directly, leading to direction inconsistency, we first propose a new metric termed Chamfer Normal Distance to address this issue. This not only mitigates the challenge but also facilitates network training and substantially enhances the network robustness against noise. Subsequently, we devise an innovative architecture that encompasses Multi-scale Local Feature Aggregation and Hierarchical Geometric Information Fusion. This design empowers the network to capture intricate geometric details more effectively and alleviate the ambiguity in scale selection. Extensive experiments demonstrate that our method achieves the state-of-the-art performance on both synthetic and real-world datasets, particularly in scenarios contaminated by noise. Our implementation is available at https://github.com/YingruiWoo/CMG-Net_Pytorch.

ICRA Conference 2007 Conference Paper

Singularity Analysis for a 5-DoF Fully-Symmetrical Parallel Manipulator 5-RRR(RR)

  • Si-Jun Zhu
  • Zhen Huang 0009
  • Mingyang Zhao

A 5-DoF 3R2T (three dimensional rotation and two dimensional translation degrees of freedom) fully-symmetrical parallel manipulator can be adopted in many applications such as simulating the motion of spinal column. However, kinematics of this type parallel manipulator has not been studied enough because of short history. The study of kinematics of the manipulators leads inevitably to the problem of singular configuration. Singularity of a 5-DoF 3R2T fully-symmetrical parallel manipulator, 5-RlowbarRI. ubar; RI. ubar; (RR), is illustrated in this study. According to the singularity classification by Fang and Tsai, both limb singularity and actuation singularity are illustrated by screw theory and Grassmann geometry. The result of this study will be helpful for singularity analysis of 5-DoF 3R2T fully-symmetrical parallel manipulators because of their similar constraint property.

IROS Conference 2006 Conference Paper

A Novel Approach to Fault Detection and Identification in Suction Foot Control of a Climbing Robot

  • Yong Jiang
  • Hongguang Wang
  • Lijin Fang
  • Mingyang Zhao

This paper presents a multiple-model and Boolean logic reasoning (MMBLR) approach to detect and identify faults in the suction foot control of a climbing robot. For this control system, some fault models are easily given by kinematics equations. Moreover, the logic relations of the system states have been known in advance. Based on the combination of the multiple-model adaptive estimation (MMAE) algorithm and the Boolean logic reasoning, the MMBLR approach is properly fit for the fault detection and identification (FDI) application to the climbing robot. In the MMBLR architecture, the MMAE algorithm is used to reliably detect and identify the model-known faults. Then based on the robot's states and the results of the MMAE, other faults are detected and identified using the Boolean logic reasoning. Experimental results validated that the faults of the sensors and actuators in the suction foot control of the robot can be readily detected and identified by the MMBLR approach

IROS Conference 2006 Conference Paper

Dual Arms Running Control Method of Inspection Robot Based on Obliquitous Sensor

  • Xinglong Zhu
  • Hongguang Wang
  • Lijin Fang
  • Mingyang Zhao
  • Jiping Zhou

Inspection robot with dual wheels encounters upslope and down slope, when it runs on the overhead ground wires (OGWs) which displays catenary shape. The tilt of the body of inspection robot, which is caused by the angle variation of catenary in different position, will occur during running procedure, and disenable to check vertically the transmission lines by camera. An adjustment method, which can keep the body of inspection robot in horizontal pose, is presented by the obliquitous sensor changing the length of the manipulators in this paper. In order to implement the pose adjustment, the dynamic model is established by Lagrange method. Finally, the simulation and experiment results show that the adjustment method proposed is feasible

IROS Conference 2006 Conference Paper

Static Measuring Model and Deadweight Compensation of a Stewart Platform Based Force/Torque Sensor

  • Chunping Sui
  • Hongguang Wang
  • Lijin Fang
  • Mingyang Zhao

The static measuring model and the deadweight compensation of a Stewart platform based force/torque sensor have been studied in this paper. Firstly, some preliminary kinematics of this sensor is presented. Coordinates attached to every links are established, and the transforming relations between link frames and other frames are derived. Then, the static measuring model and the deadweight compensation of the sensor are produced. In the modeling, forces on links are composed based on an analytic method, and the resultant forces and torques obtained can be used as the measuring model. The weight need to be compensated of the whole mechanism is divided into two parts: links weights and top platform weight. The compensation of the links weights is involved in static modeling. And the top platform weight is compensated, subsequently. Finally, some experiments are carried out, and the results verify the validity of the static measuring model and the deadweight compensation

ICRA Conference 2001 Conference Paper

A Novel 4-DOF Parallel Manipulator And Its Kinematic Modelling

  • Wen-Jia Chen
  • Mingyang Zhao

In this paper, a novel four-degree-of-freedom (4-DOF) hybrid parallel platform manipulator is presented. The movable platform of the parallel manipulator can translate along two directions and rotate around two axes, respectively. The kinematics model is formulated, which describes the inverse kinematic transformation and forward kinematic transformation. A 5-axis parallel machine tool based on the 4-DOF parallel manipulator is presented.

ICRA Conference 2001 Conference Paper

Measuring Data Based Non-linear Error Modeling for Parallel Machine Tool

  • Xiaoliu Yu
  • Mingyang Zhao
  • Lijin Fang
  • Honggua Wang
  • Qiyi Wang

By converting a nonlinear problem to a linear one by means of the least square fit, a nonlinear error modeling method based on measuring data is presented. Combined with an example, some key items are pointed out during modeling. The simulation results on a parallel machine tool show that the model based on the method is of high accuracy and the error modeling method is correct and reliable. No matter what the error parameter of position and orientation is, the ideal error model would be obtained by means of the method. The accuracy of a parallel machine tool can be raised greatly by using the model to compensate the position and orientation.

ICRA Conference 1995 Conference Paper

Development of a Redundant Robot Manipulator Based on Three DOF Parallel Platforms

  • Mingyang Zhao
  • Tong Gui
  • Ge Chao
  • Qunming Li
  • Dalong Tan

In this paper, a ten degrees of freedom (DOF) redundant robot manipulator based on three DOF parallel platforms is introduced. The main contents of the paper include configuration, kinematics, mechanical design and control system. The new robot is a hybrid serial system which is composed of a slide pair and three sections of three DOF parallel platforms. The system is driven by hydraulic cylinders and controlled by electric-hydraulic servo valves and STD Bus. It can sweep large workspace and be used for the operations inside of a large container.

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