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MSM Actuators: Design Rules and Control Strategies
Authors:Benedikt Holz  Leonardo Riccardi  Hartmut Janocha  David Naso
Affiliation:1. Laboratory of Process Automation (LPA), Saarland University, Campus A5 1, 66123 Saarbrücken, Germany;2. Department of Electronics and Electrical Science (DEE), Politecnico di Bari, via Amendola 126/B – 70126 Bari, Italy
Abstract:Magnetic shape memory (MSM) alloys are comparatively new active materials which can be used for several industrial applications, ranging from precise positioning systems to advanced robotics. Beyond the material research, which deals with the basic thermo‐magneto‐mechanical properties of the crystals, the design as well as the control of the actuators displacement is an essential challenge. This paper addresses those two topics, trying to give to the reader a useful overview of existing results, but also presents new ideas. First, it introduces and discusses in details some possible designs, with a special emphasis on innovative actuator design concepts which are able to exploit the particular potentialities of MSM elements. The second focus of the paper is on the problem of designing a controller, i.e., an algorithm that allows to obtain a required performance from the actuator. The proposed control strategies try to take into account two main characteristics of MSM elements: the hysteresis and the temperature dependence. The effectiveness of the strategies is emphasized by experimental results performed on a commercially available MSM actuator demonstrator.
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