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Modelling and simulation of flight control electromechanical actuators with special focus on model architecting,multidisciplinary effects and power flows
Authors:Fu Jian  Jean-Charles Mar&#;  Fu Yongling
Institution:1. School of Mechanical Engineering and Automation, Beihang University, Beijing 100083, China;Institut Clément Ader (CNRS UMR 5312 , INSA-Toulouse, Toulouse 31077, France;2. Institut Clément Ader (CNRS UMR 5312 , INSA-Toulouse, Toulouse 31077, France;3. School of Mechanical Engineering and Automation, Beihang University, Beijing 100083, China
Abstract:In the aerospace field, electromechanical actuators are increasingly being implemented in place of conventional hydraulic actuators. For safety-critical embedded actuation applications like flight controls, the use of electromechanical actuators introduces specific issues related to thermal balance, reflected inertia, parasitic motion due to compliance and response to failure. Unfortu-nately, the physical effects governing the actuator behaviour are multidisciplinary, coupled and nonlinear. Although numerous multi-domain and system-level simulation packages are now avail-able on the market, these effects are rarely addressed as a whole because of a lack of scientific approaches for model architecting, multi-purpose incremental modelling and judicious model implementation. In this publication, virtual prototyping of electromechanical actuators is addressed using the Bond-Graph formalism. New approaches are proposed to enable incremental modelling, thermal balance analysis, response to free-run or jamming faults, impact of compliance on parasitic motion, and influence of temperature. A special focus is placed on friction and compliance of the mechanical transmission with fault injection and temperature dependence. Aileron actuation is used to highlight the proposals for control design, energy consumption and thermal analysis, power net-work pollution analysis and fault response.
Keywords:Bond Graph  Electro-hydrostatic actuator  Electromechanical actuator  More electric aircraft  Modelling  Power-by-wire  Power loss  Simulation
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