DocumentCode :
3586965
Title :
Transparency enhanced multirate wave variable control scheme with energy reusage
Author :
Yong Liu ; Xulong Zhang ; Wusheng Chou
Author_Institution :
State Key Lab. of Virtual Reality Technol. & Syst. of China, Beihang Univ., Beijing, China
fYear :
2014
Firstpage :
1645
Lastpage :
1649
Abstract :
This paper presents a newly designed control scheme for haptic interaction with uniform sample rate virtual environment. In most practical application in haptic interaction, we lack the knowledge about the model of the sampling rate. Unfortunately, by using the conventional wave variable method, the impedance parameter should adjust accordingly to guarantee the passivity of the interaction. Considering the inconvenient of the wave variable method, a novel scheme, named multirate wave transformation with energy reusage, is introduced. The proposed control scheme re-harvests the energy leakage caused by sampling rate by an energy observer, and an energy reservoir is formed to accumulate the re-harvested energy. Then, an energy regulator reuses the energy to passify the haptic interaction. Furthermore, we also demonstrated by analysis that the proposed control scheme can achieve a better interactive transparency by comparison with the traditional wave variable method. Finally, the effectiveness and performance of the proposed control scheme are validated with a haptic rendering experimental platform.
Keywords :
energy harvesting; haptic interfaces; sampling methods; transparency; virtual reality; energy leakage; energy observer; energy regulator; energy reservoir; energy reusage; haptic interaction; haptic rendering experimental platform; impedance parameter; multirate wave transformation; sample rate virtual environment; transparency enhanced multirate wave variable control scheme; wave variable method; Force; Haptic interfaces; Impedance; Regulators; Rendering (computer graphics); Reservoirs; Virtual environments;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Robotics and Biomimetics (ROBIO), 2014 IEEE International Conference on
Type :
conf
DOI :
10.1109/ROBIO.2014.7090570
Filename :
7090570
Link To Document :
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