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Semigroup well-posedness of a voltage controlled active constrained layered (ACL) beam with magnetic effects

机译:具有磁效应的压控有源约束层(ACL)光束的半群适定性

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The layered smart composites involving a piezoelectric layer are traditionally activated by a voltage source, and the magnetic effects are totally ignored since these effects are relatively smaller in comparison to electrical and mechanical effects. However, recent results for even a single piezoelectric beam show that ignoring these effects may cause uncontrollable and unstabilizable systems. In this paper, a variational approach is used to derive a voltage-controlled Rao-Nakra type active constrained layer model. All magnetic effects due to the full set of Maxwell's equations are included. It is shown that the proposed model can be put into the semigroup formulation, i.e. ẋ = Ax + Bu; and is well-posed in the corresponding energy space. Moreover, the observed quantity due to the observation operator B* (corresponding to the control operator B with the voltage control) is totally electrical.
机译:传统上,涉及压电层的层状智能复合材料是由电压源激活的,由于与电气和机械效应相比,这些效应相对较小,因此磁性效应被完全忽略了。但是,即使是单个压电梁,最近的结果也表明,忽略这些影响可能会导致系统无法控制和不稳定。在本文中,采用变分方法来推导电压控制的Rao-Nakra型有源约束层模型。由于全套麦克斯韦方程组而产生的所有磁效应都包括在内。结果表明,所提出的模型可以放入半群公式中,即ẋ= Ax + Bu;并且在相应的能量空间中处于适当位置。此外,归因于观察操作者B *的观察量(对应于具有电压控制的控制操作者B)是完全电的。

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