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Recent advances in nonlinear control technologies for shape memory alloy actuators
Makaram Singaperumal
Published in
2007
Volume: 8
   
Issue: 5
Pages: 818 - 829
Abstract
This paper reviews recent developments in nonlinear control technologies for shape memory alloy (SMA) actuators in robotics and their related applications. SMA possesses large hysteresis, low bandwidth, slow response, and non-linear behavior, which make them difficult to control. The fast response of the SMA actuator mostly depends upon, (1) type of controller, (2) rate of addition and removal of heat, and (3) shape or form of the actuator. Though linear controllers are more desirable than nonlinear ones, the review of literature shows that the results obtained using nonlinear controllers were far better than the former one. Therefore, more emphasis is made on the nonlinear control technologies taking into account the intelligent controllers. Various forms of SMA actuator along with different heating and cooling methods are presented in this review, followed by the nonlinear control methods and the control problems encountered by the researchers. © Springer-Verlag 2007.
About the journal
JournalJournal of Zhejiang University: Science A
ISSN10093095
Open AccessNo
Concepts (11)
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    Actuators
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    Hysteresis
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    Manipulators
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    Nonlinear control systems
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    Position control
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    Robots
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    Control problems
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    INTELLIGENT CONTROLLERS
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    MICRO ROBOTS
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    Robotic manipulators
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    Shape memory effect