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Chengxu Zhou

13 accepted papers

2019

Versatile Reactive Bipedal Locomotion Planning Through Hierarchical Optimization

ICRA 2019poster

When experiencing disturbances during locomotion, human beings use several strategies to maintain balance, e.g. changing posture, modulating step frequency and location. However, when it comes to the gait generation for humanoid robots, modifying step time or body posture in real time introduces non…

Cited by 13SourceScholar
2018

Ctrl-MORE: A Framework to Integrate Controllers of Multi-DoF Robot for Developers and Users

ICRA 2018poster

In recent years, many different feedback controllers for robotic applications have been proposed and implemented. However, the high coupling between the different software modules made their integration into one common architecture difficult. Consequently, this has hindered the ability of a user to…

Cited by 0SourceScholar
2018

Footstep Planning in Rough Terrain for Bipedal Robots Using Curved Contact Patches

ICRA 2018poster

Bipedal robots have gained a lot of locomotion capabilities the past few years, especially in the control level. Navigation over complex and unstructured environments using exteroceptive perception, is still an active research topic. In this paper, we present a footstep planning system to produce fo…

Cited by 33SourceScholar
2018

HERI II: A Robust and Flexible Robotic Hand based on Modular Finger design and Under Actuation Principles

IROS 2018poster

This paper introduces the design of a novel under-actuated hand with highly integrated modular finger units, which can be easily reconfigured in terms of finger arrangement and number to account for the manipulation needs of different applications. Each finger module is powered by a single actuator…

Cited by 30SourceScholar
2018

Neural-Network-Controlled Spring Mass Template for Humanoid Running

IROS 2018poster

To generate dynamic motions such as hopping and running on legged robots, model-based approaches are usually used to embed the well studied spring-loaded inverted pendulum (SLIP) model into the whole-body robot. In producing controlled SLIP-like behaviors, existing methods either suffer from online…

Cited by 8SourceScholar
2017

A torque-controlled humanoid robot riding on a two-wheeled mobile platform

IROS 2017poster

This paper is motivated by the questions: What would happen if a humanoid robot is put on a Segway? Is it possible for the humanoid robot to use this transportation device that is specifically designed for human? Simulation involving a two-wheeled mobile platform (TWMP) and our humanoid robot COMAN…

Cited by 12SourceScholar
2017

HERI hand: A quasi dexterous and powerful hand with asymmetrical finger dimensions and under actuation

IROS 2017poster

In this paper, the Hardware Embedded Reduced Intricacy (HERI) Hand, which is a novel tendon driven three-finger under-actuated hand demonstrating balanced dexterous finger manipulation and powerful grasping of common objects is presented. The third finger of HERI Hand is asymmetrically designed in t…

Cited by 25SourceScholar
2015

A new foot sole design for humanoids robots based on viscous air damping mechanism

IROS 2015poster

The work presents the development and evaluation of a novel foot sole for humanoid robots. For humanoid locomotion the foot sole is important for absorbing impacts. In contrast to the simple planar rubber pad foot sole that is conventionally used in humanoid robots this paper introduces a new foot s…

Cited by 13SourceScholar
2015

Active control of under-actuated foot tilting for humanoid push recovery

IROS 2015poster

We propose a novel control framework to demonstrate a unique foot tilting maneuver based on ankle torque control for humanoid balance recovery. The framework consists of the variable impedance regulation at the center of mass of the robot based on the ankle torque control, the virtual stoppers to pr…

Cited by 11SourceScholar
2015

Exploiting the redundancy for humanoid robots to dynamically step over a large obstacle

IROS 2015poster

In this paper, we resolve the issue of stepping over a large obstacle by exploiting the redundancy of pelvis rotation and the versatility of foot trajectories for the humanoids. The control framework consists of a motion pattern that exploits the redundancy of pelvis rotation to enlarge the kinemati…

Cited by 15SourceScholar
2015

Fall Prediction of legged robots based on energy state and its implication of balance augmentation: A study on the humanoid

ICRA 2015poster

In this paper, we propose an Energy based Fall Prediction (EFP) which observes the real-time balance status of a humanoid robot during standing. The EFP provides an analytic and quantitative measure of the level of balance. Both simulation and experimental studies were conducted and compared with th…

Cited by 35SourceScholar