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An impedance control using a Finite Control Set Model Predictive Controller

机译:使用有限控制集模型预测控制器的阻抗控制

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The use of Electro-Mechanical Actuator to impact an environment is often criticized because of its presumably higher wear. This is due to the naturally high stiffness of the mechanical transmission, that leads to a hard-to-hard impact with the environment. This paper proposes a position-based impedance control using a Finite Control Set Model Predictive Control (FCS-MPC) controller to solve this problem. In comparison to a standard impedance controller, it can achieve the same impedance behavior in steady state, but the reduction of the mechanical losses and of the compression of the transmission are better during the transient. Furthermore, the trade-off between the mechanical losses and the transient time can be modified easily by changing the weighting factors of a cost function.
机译:由于其可能更高的磨损,使用机电致动器以冲击环境往往受到批评。这是由于机械透射的自然高刚度,这导致对环境的难以冲击。本文提出了使用有限控制集模型预测控制(FCS-MPC)控制器来解决此问题的位置基阻抗控制。与标准阻抗控制器相比,它可以在稳定状态下实现相同的阻抗行为,但是在瞬态期间,机械损失的减小和变速器的压缩更好。此外,通过改变成本函数的加权因子,可以轻松地修改机械损耗和瞬态时间之间的折衷。

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