Adaptive Impedance Force Control of Robot Manipulators
           

- 指導教授 黃漢邦 博士 研究生 蔡孟學

- Advisor :Dr.Han-Pang Huang Student : Meng-Shyue Tsai

Lab. of Robotics., Department of Mechanical Engineering National Taiwan University Taiwan

Abstract:

Developing control schemes for different tasks that require extensive contact with the environment such as grinding, contour following, deburring, assembling, surface cleaning, and so on, has been the important subject of research in robotics area. The main purpose of this thesis is to design a force controller and achieve good tracking performance when the robot makes in contact with the environment. Impedance control is one of the main force control schemes in literature; however, classical impedance control lacks force tracking capability. Therefore, this thesis proposes a stable adaptive force tracking impedance control scheme and a self-tuning regulator of impedance parameters, which have the capability to track specified desired force under uncertainties in environment position and stiffness. In order to verify the proposed controller, a two link rotary robot manipulator model is constructed in SimMechanics, and the entire control algorithm is built in MATLAB/Simulink. Simulation studies are shown to demonstrate tracking performance of the proposed two adaptive schemes under uncertainties in environment position and stiffness. Experiments are constructed by using the NI sbRIO-9632 and the 6-axis NTU Arm, which is developed by our laboratory.





中文摘要:

開發需要與環境廣泛接觸,例如:研磨、輪廓追蹤、去毛邊、組裝、表面清潔…等等的不同任務控制策略是機器人學的重要課題。本論文的主要目的是設計一個力量控制器以及達到良好的力量和位置追蹤表現。
在文獻中,阻抗控制是力量控制中的一個主要策略;然而,傳統的阻抗控制缺乏力量追蹤的能力。因此,能在環境的位置與剛性不確定性下仍具有追蹤指定力量能力的穩定適應性力量追蹤阻抗控制策略更加重要。本論文及發展穩定適應性力量追蹤控制器和阻抗參數自動調整器策略。


為驗證此控制法則,先在SimMechanics建立二連桿旋轉式的機械手臂模型,而整體的控制演算法在MATLAB/Simulink中建立。最後,我們利用NI sbRIO-9642嵌入式控制與擷取介面卡以及本實驗室所開發的六軸機械手臂來進行實驗